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9 5/8" Hydraulic Set Large Bore Retrievable Production Packer
HPL-1 Hydraulic Set Retrievable Production Packer – Large Bore Design for 9 5/8” Casing
The HPL-1 Hydraulic Set Retrievable Production Packer is a large-bore, hydrostatic-set, double-grip packer engineered for 9 5/8” casing, providing enhanced flow capacity and efficient wellbore isolation for production, injection, and zonal isolation applications. Designed to maximize flow efficiency while maintaining well integrity, this packer is set hydraulically by applying tubing pressure, eliminating the need for mechanical tubing manipulation. The expanded internal diameter minimizes flow restrictions, making it an ideal solution for high-rate production and injection wells. Once set, the multiple packing element systemensures a mechanically locked, long-lasting seal, maintaining pack-off force throughout its operational life.
To prevent movement under differential pressure, the hydraulic hold-down pistons engage after setting, while the body lock ring secures the setting force, ensuring bottom-hole pressure variations or tubing contraction do not affect the seal. The large bore design allows for unrestricted flow paths, improving overall reservoir performance and artificial lift system efficiency. This makes it particularly valuable in ESP, gas lift, and other high-flow applications, where maintaining maximum production rates is critical.
For retrieval, operators can use a straight upward pull or an optional right-hand rotational release for controlled removal, reducing the risk of stuck tools and minimizing intervention time. With its high-capacity flow path, secure hydraulic setting, and efficient retrievability, the HPL-1 packer for 9 5/8” casing is an optimal solution for operators looking to enhance well performance, reduce pressure losses, and maintain long-term well integrity.
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Subsurface Safety Valve for Injection Wells 5.4 inch
The WI retrievable injection valve is a high-performance, high-flow rate injection valve. High throughput is achieved by a unique valve configuration that minimizes turbulent and potentially erosive flow. Operation is not dependent on a specific flow rate, pressure, or setting depth, thus negating the need for adjustment over time. The valve incorporates a metal-to-metal valve and seat energized by the combination of an integral spring and well pressure acting from below. The WI injection valve can be deployed on a wireline lock or through-tubing pack-off device, providing flexibility not available with alternative injection valve systems. As a result of the simple design with fewer parts, redress and repair costs are considerably lower than those for other injection valve systems. Applications The WI injection valve is primarily used in water injection applications as an alternative to conventional tubing or wireline-set safety valves. The valve is also commonly used as a retrofit solution in water injectors in which a tubing to annulus leak has occurred. The valve can be deployed below the leak point to eliminate uncontrolled annulus pressure increases when the injection stops. Features » Compatible with all known lock systems » Dedicated designs to suit Halliburton EB0 intervention packers » Enhanced internal flow profile » Simple design and construction » Flow-loop testing performed to establish pressure drop versus pump rate *information referenced from supplier catalog. View Details
Scaffolding for onshore and offshore
Finish the job in any and all conditions since this product is weather-resistant and durable so you can enjoy it for many years to come. Each frame is sold separately. Note that the galvanized cross braces and aluminum platforms with plywood are not included. When assembled, this scaffold has a load capacity of up to 4,960 pounds. View Details
HP-3 Hydraulic Set High Angle 9 5/8" Packer
Ballycatter HP-3 High Angle Packer
Available sizes: 5 1/2”, 6 5/8”, 7”, and 9 5/8”
The Ballycatter HP-3 is a hydraulic-set packer engineered for high-angle and deviated well applications, where conventional mechanical or wireline-set tools are not feasible. This packer is particularly suited for single or multi-zone completions, offering flexible deployment in complex well trajectories.
Unlike mechanical systems, the HP-3 requires no tubing movement to set. This enables full well control throughout the operation, as the tubing can be landed and the wellhead installed prior to circulating or displacing fluids.
Key Features:
• Reliable Setting Mechanism: Utilizes dual balanced pistons—one actuates downward to anchor the bi-directional slips, while the other moves upward to compress a three-element packing system. This simultaneous action ensures a secure set and pack-off.
• Three-Element Seal: The packing system uses dual-durometer rubber elements to ensure long-term sealing integrity across a range of downhole conditions.
• Slips & Housing: One-piece, bi-directional slips are housed in a shear-pinned chamber, protected by a full-diameter guide to prevent damage during deployment.
• Release Options: Features a dual-method release system:
• Straight pull via shearing of pre-set screws.
• Right-hand rotation (approx. 8 turns), followed by straight pull.
• Equalization & Retrieval: Built-in equalizing valve opens automatically during release to balance pressures and enable safe retrieval. A large-diameter bypass within the mandrel allows fluid to flow during retrieval, reducing swab effects on the packing elements.
The HP-3 is engineered for reliability, operational flexibility, and full well control—making it a practical choice for complex wellbore geometries.
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The T5.4 thermocouple is a temperature-sensing probe used in LM2500 gas turbines to measure exhaust gas temperature (EGT). The label T5.4 refers to its specific position in the turbine\'s exhaust thermocouple array—zone T5 (turbine exhaust), sensor 4. These sensors are part of a system that monitors thermal conditions at multiple points in the exhaust stream.
This thermocouple operates in high-temperature environments, withstanding continuous exposure up to approximately 1100°C. It is built to maintain accuracy and reliability under the thermal stress and vibration typical in gas turbine applications.
T5.4 thermocouples are often used with flexible
harness systems. This allows operators to replace individual probes without removing the entire harness, improving maintenance efficiency and reducing downtime.
By providing real-time exhaust temperature data, the T5.4 thermocouple supports engine control, performance optimization, and safety monitoring in industrial gas turbine operations.
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The Single Annular Combustor (SAC) version of the LM2500+G4 is designed for oil and gas applications that prioritize consistent performance, fuel flexibility, and emissions control—such as LNG facilities, gas processing plants, and pipeline compression, both onshore and offshore.
What makes the SAC version different is its simpler combustor design compared to dual annular or premix types. The SAC uses a through-flow, venturi swirler to ensure an even temperature profile at the turbine inlet, helping extend hot section life. It features individually replaceable fuel nozzles, a durable machined-ring liner, and a thermal barrier coating for better resistance to high temperatures and corrosion. This design supports both dry operation (with higher emissions) and water or steam injection to reduce NOx when needed—making it adaptable to site-specific emission regulations.
The LM2500+G4 SAC builds on the proven LM2500+ design, with approximately 10% more power. This gain comes from increased airflow, improved internal cooling, and material upgrades—while keeping the same number of compressor and turbine stages. The 17-stage high-pressure axial compressor and the basic engine layout remain unchanged, making it easy to maintain and service.
The engine can run on a wide range of liquid and gas fuels, allowing flexibility in remote or supply-constrained locations. It achieves up to 40% thermal efficiency in simple cycle mode. Water-injected operation enables NOx emissions as low as 25 ppm (gas) and 42 ppm (liquid).
In short, the LM2500+G4 SAC is well-suited for high-power mechanical drive and power generation in harsh or remote oil and gas environments, offering a balance of power output, fuel versatility, and emissions control.
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Premium All-Function Welding Helmet
Introducing the Canaweld Premium All-Function Welding Helmet Series - Your Ultimate Welding Companion! When it comes to welding, safety is paramount. A high-quality welding helmet is not just a piece of equipment; it's a shield that protects welders from sparks, ultraviolet, and infrared light during the welding process. That's why we've created the Premium All-Function Welding Helmet Series - a state-of-the-art auto-tinting helmet that blends top-notch protection with hands-free ease of use. Experience True Protection - Auto-Tinting Technology: Our Premium All-Function Welding Helmet Series features auto-tinting technology that takes your safety to a whole new level. The photosensitive filter in the helmet automatically adjusts the viewing area to a pre-set shade before the light hits your eyes, offering instant protection. When your weld is complete, the viewing area "un-tints," allowing you to inspect your work without lifting the mask. This innovative design not only protects your eyes but also increases detection time, ensuring you weld with confidence. What Sets Us Apart - Top-Quality Features: When it comes to a high-quality welding helmet, we don't compromise. Here's what makes our Premium All-Function Welding Helmet Series stand out: 1. Lightning Fast Detection: With a detection time (tinting speed) of at least 1/20,000 of a second, your eyes are always shielded promptly. 2. Enhanced Protection: Equipped with four photo-sensitive sensors, our helmet guarantees maximum efficiency and exceptional protection. 3. Versatile Shade Settings: The helmet offers multiple shade settings, allowing you to use it for all welding processes in various light conditions. 4. Wide Viewing Area: The large viewing area ensures ease of use even in confined spaces, giving you an unobstructed view of your work. 5. Featherweight Design: We've crafted our helmet with a lightweight design to reduce neck fatigue during prolonged use, keeping you comfortable and focused. 6. Reliable Power: The solar cell, combined with two replaceable CR2032 lithium batteries, ensures your helmet never runs out of juice. Our Premium All-Function Welding Helmet Series goes above and beyond to deliver top-tier features: • Infinitely adjustable sensitivity control for personalized protection. • Constant UV/IR protection with Shade DIN16 at all times. • External dark to light delay adjustment from 0.1 to 1.0 seconds. • Low amperage TIG welding compatibility for added versatility. • Grinding function and low volume alarm for added convenience. • Superior optical clarity for crystal-clear vision during welding. • ADF self-check ensures the helmet's integrity before use. Built to Last - Certified Excellence: At Canaweld, we take quality seriously. Our Premium All-Function Welding Helmet Series complies with CAN/CSA Z94.3 – 07 (R2014) standards, ensuring you get a product that meets the highest safety and performance requirements. Elevate Your Welding Experience - Choose Canaweld's Premium All-Function Welding Helmet Series! View Details
7 5/8" HP-6 Hydraulic Set High Angle Production Packer for 24-29.7 PPF Casing
Ballycatter HP-6 High Angle Production Packer
Available sizes: 4 1/2”, 5”, 5 1/2”, 6 5/8”, 7”, 7 5/8”, and 9 5/8”
The Ballycatter HP-6 is a compact, hydraulically set production packer designed for low to medium-pressure applications in high-angle and horizontal wells. With a short body length and no tubing movement required for setting, the HP-6 is ideally suited for tight-radius deviations, stacked completions, and coiled tubing operations.
It can be run in single or multiple packer installations with sequential setting in a single trip, reducing rig time and complexity.
Rated to 7,500 psi and tested in Q125 casing, the HP-6 features a straight-pull release mechanism that is fully isolated from hydraulic pressure, allowing low shear-out force even under full differential pressure.
Built-in bypass ports equalize pressure during retrieval, ensuring smooth release and reducing swab risk. The tool can be set using rig pumps, and its economical design allows for easy redress and reuse. Optional rotational release is available for added flexibility in challenging retrieval scenarios.
Engineered with materials and elastomers for hostile environments, the HP-6 delivers dependable performance in offshore operations, high-angle wells, and cost-sensitive completions requiring reliability without unnecessary complexity.
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SCSSSV – 2 3/8” Surface-Controlled Safety Valve
Available sizes: 2 3/8”, 2 7/8”, 3 1/2”, 4”, 4 1/2”, 5”, 5 1/2'” and 7”.
The 2 3/8" Surface-Controlled Subsurface Safety Valve (SCSSSV) is designed to shut in a well in the event of uncontrolled flow caused by equipment failure or damage. Installed in the upper wellbore, it provides emergency closure of the producing conduits to isolate the wellbore if there is a failure or damage to surface production control systems.
This valve uses a self-equalizing, surface-controlled, flapper-type mechanism that closes reliably when hydraulic control pressure is lost. The flapper is made from solid bar stock and has sealing surfaces located outside the flow path when open, which helps reduce erosion and extends the valve’s service life. It is rated for working pressures up to 10,000 psi.
The valve fits 2 3/8" (60.33 mm) tubing and is installed in landing nipples with seal bore options of 1.710" or 1.875". Valve internal diameter options are 0.62" or 0.75", allowing selection based on flow requirements. The wireline retrievable design permits servicing or replacement of major valve components without pulling the entire tubing string, reducing intervention time and operational disruption.
This valve is typically used in wells with smaller tubing sizes that require dependable emergency shut-in capability. Its design balances reliability, durability, and ease of maintenance to provide effective well control in a variety of well conditions.
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Reducing adapters Female to Male NPT are used to connect pipes or instrumentation lines of different diameters in oil and gas systems. They allow a larger pipe or fitting to join with a smaller one without leaking, ensuring the flow of liquids or gases remains safe and controlled. These fittings are especially useful in situations where space is limited or existing piping needs to be adapted to new equipment.
They are made from high-quality materials such as stainless steel, brass, or carbon steel, which can handle pressures up to 10,000 PSI. The female NPT side threads internally to receive a male pipe, while the male NPT side threads externally to connect to a female fitting. This combination provides a secure, leak-resistant connection that is durable even under high pressure, vibration, or temperature changes.
Reducing adapters are widely used in oil and gas production, processing, and distribution systems.
They are ideal for connecting instrumentation, control systems, chemical injection lines, or any piping where size changes are required. Their compact design and simple installation make them a practical choice for engineers and technicians who need reliable connections in complex piping networks.
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Water Injection Well Flow Control Valve 4.31 inch
The WI retrievable injection valve is a high-performance, high-flow rate injection valve. High throughput is achieved by a unique valve configuration that minimizes turbulent and potentially erosive flow. Operation is not dependent on a specific flow rate, pressure, or setting depth, thus negating the need for adjustment over time. The valve incorporates a metal-to-metal valve and seat energized by the combination of an integral spring and well pressure acting from below. The WI injection valve can be deployed on a wireline lock or through-tubing pack-off device, providing flexibility not available with alternative injection valve systems. As a result of the simple design with fewer parts, redress and repair costs are considerably lower than those for other injection valve systems. Applications The WI injection valve is primarily used in water injection applications as an alternative to conventional tubing or wireline-set safety valves. The valve is also commonly used as a retrofit solution in water injectors in which a tubing to annulus leak has occurred. The valve can be deployed below the leak point to eliminate uncontrolled annulus pressure increases when the injection stops. Features » Compatible with all known lock systems » Dedicated designs to suit Halliburton EB0 intervention packers » Enhanced internal flow profile » Simple design and construction » Flow-loop testing performed to establish pressure drop versus pump rate *information referenced from supplier catalog. View Details
Xanthum Gum (Liquid and Powder)
Introducing Xantham Gum from Cleanstream – the versatile solution for your drilling and completion needs. As a leader in providing innovative and environmentally responsible solutions for the oil and gas industry, Cleanstream is proud to offer this unique polymer for rheology modification, hole cleaning, and solids suspension. What sets Xantham Gum apart is its ability to provide excellent friction reduction – a feature that is unmatched by most other polymers in oilfield drilling and completion applications. Additionally, it can be used in most types of water-based fluids, making it an incredibly versatile product for your operations. Our in-house laboratory facilities allow us to determine the right approach to solve your specific problem. And at Cleanstream, we are committed to developing eco-friendly solutions for as many applications as possible. Whether you need Xantham Gum for a specific project or require our personnel and equipment for complete execution, we have you covered. Click on the datasheet for more information or contact us to learn how Xantham Gum can benefit your operations. Trust Cleanstream for innovative and sustainable solutions for your oil and gas needs. View Details
The LM2500 Gas Turbine is a high-efficiency power unit designed for use in industrial, marine, and utility applications. It’s commonly used for grid support, combined heat and power, and in mobile or remote power installations.
The turbine uses a single-rotor gas generator that can be connected to a power turbine. Inside, it includes a 16-stage compressor, an annular combustor, and a two-stage high-pressure turbine—to deliver strong performance in demanding environments.
Built for flexibility, the LM2500 is well-suited for operations that require frequent start-and-stop cycles. It can ramp up from a cold shutdown to full power in under five minutes, making it a reliable option for fast, on-demand power delivery.
Adding to its versatility, the LM2500 supports a wide range of fuels—including natural gas, diesel, aviation fuel, naphtha, LPG, ethane, ethanol, biodiesel, and more. This fuel flexibility makes it easy to integrate into different operating environments.
Its proven adaptability and performance have made the LM2500 the most widely used gas turbine in the 25–37 megawatt range.
In addition to high efficiency and reliability, the LM2500 delivers low emissions—even in challenging environments or when water availability is limited. With control system redundancy and several configuration options, it offers a customizable solution for dependable, efficient power generation.
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5 1/2" HP-6 Hydraulic Set High Angle Production Packer for 13-15.5 PPF Casing
Ballycatter HP-6 High Angle Production Packer
Available sizes: 4 1/2”, 5”, 5 1/2”, 6 5/8”, 7”, 7 5/8”, and 9 5/8”
The Ballycatter HP-6 is a compact, hydraulically set production packer designed for low to medium-pressure applications in high-angle and horizontal wells. With a short body length and no tubing movement required for setting, the HP-6 is ideally suited for tight-radius deviations, stacked completions, and coiled tubing operations.
It can be run in single or multiple packer installations with sequential setting in a single trip, reducing rig time and complexity.
Rated to 7,500 psi and tested in Q125 casing, the HP-6 features a straight-pull release mechanism that is fully isolated from hydraulic pressure, allowing low shear-out force even under full differential pressure.
Built-in bypass ports equalize pressure during retrieval, ensuring smooth release and reducing swab risk. The tool can be set using rig pumps, and its economical design allows for easy redress and reuse. Optional rotational release is available for added flexibility in challenging retrieval scenarios.
Engineered with materials and elastomers for hostile environments, the HP-6 delivers dependable performance in offshore operations, high-angle wells, and cost-sensitive completions requiring reliability without unnecessary complexity.
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Gauge Root Valve – Female x Female – 1/4” NPT – 6000 PSI – ASME B16.34 / ISO 9001 / PED / ATEX
The Gauge Root Valve Female x Female 1/4” NPT is a small but essential valve used to protect and control pressure instruments, like gauges and transmitters, in fluid or gas systems. Its female x female connection allows it to connect directly to two male-threaded fittings, making installation simple and reducing the risk of leaks.
This valve can handle pressures up to 6000 PSI and operates safely across a wide temperature range. The internal stem is designed with a back seat and the packing is placed below the threads, keeping the threads protected from the process media. A self-centering, non-rotating tip ensures a tight seal every time, preventing leaks.
It also features a removable “T” handle for easy turning with low effort, smooth rolled threads for long-lasting use, and a dust cap to prevent dirt or debris from entering the valve. Each valve is factory tested with nitrogen at 1000 PSI to ensure it seals correctly and operates reliably. This type of valve is ideal for isolating and protecting pressure instruments in chemical, oil and gas, and industrial processes.
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LM2500XPRESS+G4 DLE UPT Gas Turbine
The LM2500XPRESS+G4 DLE UPT is a fast-deployable gas turbine system engineered for demanding oil and gas environments—onshore or offshore. It offers a balanced combination of power, efficiency, and installation speed, making it especially suited for upstream, midstream, and LNG operations where reliable electricity and mechanical drive are critical and timelines are tight.
At the core of this system is the LM2500+G4 gas generator, a proven design that delivers higher output and efficiency than earlier models, thanks to improvements in airflow, thermal capability, and cooling. It strikes a solid middle ground in the 20–40 MW class—powerful enough to support heavy oilfield infrastructure but lighter and more flexible than larger industrial turbines.
The Dry Low Emissions (DLE) combustion system helps meet environmental regulations without relying on water or steam injection—a major advantage for remote or offshore sites where water supply is limited or emissions compliance is strict.
The Upgraded Power Turbine (UPT) adds flexibility in terms of shaft speed and load-following, which makes this unit adaptable for various oil and gas power demands—from continuous baseload operation to backup and peaking support.
Its XPRESS configuration emphasizes rapid deployment. The turbine is delivered in a compact, modular format, pre-assembled into a small number of transportable units with simplified electrical and mechanical interconnections. This minimizes site work, shortens commissioning time to a matter of weeks, and reduces exposure to remote-site construction risks.
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HP-3 Hydraulic Set High Angle 6 5/8" 20-24 PPF Packer
Ballycatter HP-3 High Angle Packer
Available sizes: 5 1/2”, 6 5/8”, 7”, and 9 5/8”
The Ballycatter HP-3 is a hydraulic-set packer engineered for high-angle and deviated well applications, where conventional mechanical or wireline-set tools are not feasible. This packer is particularly suited for single or multi-zone completions, offering flexible deployment in complex well trajectories.
Unlike mechanical systems, the HP-3 requires no tubing movement to set. This enables full well control throughout the operation, as the tubing can be landed and the wellhead installed prior to circulating or displacing fluids.
Key Features:
• Reliable Setting Mechanism: Utilizes dual balanced pistons—one actuates downward to anchor the bi-directional slips, while the other moves upward to compress a three-element packing system. This simultaneous action ensures a secure set and pack-off.
• Three-Element Seal: The packing system uses dual-durometer rubber elements to ensure long-term sealing integrity across a range of downhole conditions.
• Slips & Housing: One-piece, bi-directional slips are housed in a shear-pinned chamber, protected by a full-diameter guide to prevent damage during deployment.
• Release Options: Features a dual-method release system:
• Straight pull via shearing of pre-set screws.
• Right-hand rotation (approx. 8 turns), followed by straight pull.
• Equalization & Retrieval: Built-in equalizing valve opens automatically during release to balance pressures and enable safe retrieval. A large-diameter bypass within the mandrel allows fluid to flow during retrieval, reducing swab effects on the packing elements.
The HP-3 is engineered for reliability, operational flexibility, and full well control—making it a practical choice for complex wellbore geometries.
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Oil Only Absorbent Spill Kit - 41 Gallon
The Oil Only Absorbent Spill Kit - 41-Gallon contains, The 41-Gallon Oil Only Absorbent Spill Kit is a comprehensive solution for managing medium-sized spills in marine environments, refineries, and loading docks. Designed for versatility and effectiveness, the kit includes, 50 Absorbent Pads (8” x 11.5”) Versatile pads for quick and efficient absorption of oil-based liquids, ideal for various spill scenarios. 4 Sorbent Socks (3” x 4Ft) Specially designed to contain and absorb spills, particularly in confined or challenging areas. 8 Pillows (18” x 18”) Large pillows for absorbing and retaining significant quantities of oil, enhancing spill response efficiency. 1 Pair of Nitrile Gloves Essential personal protective equipment for safe handling during spill cleanup. 5 Disposal Bags Ensures proper containment and disposal of used absorbent materials, contributing to responsible waste management. 1 Gallon Drum (55) A larger containment option for collecting and managing absorbed liquids. Part Number: OH-OOS-41G The kit is specifically tailored for medium spills in marine environments, refineries, and loading docks, offering a comprehensive and efficient response to oil-based spills. Polypropylene is a preferred material for oil-based cleanup for several reasons, making it an ideal choice for products like the Oil-Only Absorbent Pillow. Hydrophobic Nature Polypropylene is inherently hydrophobic, meaning it repels water. This characteristic is crucial in oil-based cleanup where the goal is to selectively absorb oils while avoiding the absorption of water. The hydrophobic nature of polypropylene ensures that the material remains focused on its primary task—absorbing oil-based liquids. High Affinity for Oil Polypropylene has a high affinity for oil-based substances. When in contact with oils, polypropylene quickly absorbs and retains these liquids. This property enhances the efficiency of cleanup operations, allowing for the rapid containment and absorption of oil spills. Recyclability Polypropylene is recyclable, adding an environmentally conscious aspect to its use in oil-based cleanup products. Inert Nature Polypropylene is inert, meaning it does not react with or alter the composition of the substances it meets. This inert nature is crucial in cleanup situations where the goal is containment and absorption without introducing additional complications or reactions. View Details
The 45° Elbow NPT Thread Tube Fitting is a specialized connector used to change the direction of flow in piping systems by 45 degrees. Manufactured to precise standards, it provides a strong, leak-resistant connection between tubes with NPT threads, ensuring consistent system performance. The fitting is suitable for use in oil, gas, and industrial process systems, where controlling flow direction and minimizing stress on tubing is critical.
Its design allows compact and efficient piping layouts, reducing the need for multiple fittings while maintaining smooth fluid flow. The fitting is machined to ensure tight tolerances, providing reliable sealing even under vibration, thermal expansion, or pressure fluctuations. Case-hardened threads improve durability, while the material selection ensures compatibility with common industrial fluids and gases.
Unique to this fitting is its ability to create a precise 45° angle connection without compromising the integrity of the tubing system, making it ideal for applications where space is limited or exact routing is required. Installation is straightforward: the tube is inserted into the fitting, and the NPT threads create a secure mechanical seal that resists leakage over extended operational periods.
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Thru-Tubing MatrixStixx 2.25 inch
Introducing Thru-Tubing Acid Stimulation by StimStixx Technologies - Revolutionize Your Operations! Are you looking for a quick, efficient, and environmentally friendly acid stimulation solution? Look no further! StimStixx Technologies is proud to present our cutting-edge Thru-Tubing Acid Stimulation system, designed to meet all your needs with ease and precision. Our innovative product offers a hassle-free deployment process via electric wireline, ensuring a seamless integration into your operations. Available in both HCL and HCL/HF acid blends, our solution guarantees the utmost effectiveness in achieving your desired results. At the heart of our Thru-Tubing Acid Stimulation system lies a specially formulated solid acid stick. Whether you're using slickline, wireline, coil tubing, or tractor-conveyed methods, our solid acid stick delivers heated acid vapor with pinpoint accuracy directly to the zone of interest. This groundbreaking approach ensures increased penetration and contact with the formation, thanks to the highly reactive nature of the heated acid vapor. Not only does our system deliver exceptional performance, but it also provides numerous benefits that will enhance your operations in more ways than one. By utilizing our Thru-Tubing Acid Stimulation, you'll experience reduced CO2 emissions, lower downtime, and simplified implementation. The increased precision and fast-acting nature of our solution will save you valuable time and resources, while also reducing manpower, rig, and equipment costs. Additionally, the elimination of contaminated effluent means a reduced risk of spills at the surface and eliminates the need for post-treatment clean-up or disposal. Join the countless businesses already benefiting from our Thru-Tubing Acid Stimulation system. Embrace efficiency, precision, and environmental responsibility with StimStixx Technologies. Contact us today to revolutionize your operations and unlock a new level of success! View Details
Hex Reducing Nipples Male NPT are pipe fittings designed to connect two female-threaded pipes of different diameters while maintaining a secure and leak-resistant seal. The male tapered threads provide a tight connection that prevents fluid leakage, which is especially important in high-pressure systems.
These fittings are widely used in the oil and gas industry, chemical processing, and instrumentation applications where a reduction in pipe size is required without adding extra joints.
They are manufactured from high-quality materials such as stainless steel, brass, and other compatible alloys, ensuring durability and resistance to corrosion. The fittings are precision-machined from bar stock to provide burr-free internal surfaces for smooth flow and to reduce turbulence within the system. Threads are carefully capped and packed to prevent damage during transit.
Hex Reducing Nipples are rated for pressures up to 10,000 PSI and comply with ASME B1.20.1, SAE AS71051, ISO 7-1, and ISO 228 standards. They are designed for reliable performance in ambient temperatures from -28 to 37°C (-20 to 100°F) and support efficient installation with standard wrenches thanks to the hex shape, which allows secure tightening. These features make them suitable for high-pressure and instrumentation piping systems where both reliability and traceability are required.
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9 5/8" HP-6 Hydraulic Set High Angle Production Packer for 40-47 PPF Casing
Ballycatter HP-6 High Angle Production Packer
Available sizes: 4 1/2”, 5”, 5 1/2”, 6 5/8”, 7”, 7 5/8”, and 9 5/8”
The Ballycatter HP-6 is a compact, hydraulically set production packer designed for low to medium-pressure applications in high-angle and horizontal wells. With a short body length and no tubing movement required for setting, the HP-6 is ideally suited for tight-radius deviations, stacked completions, and coiled tubing operations.
It can be run in single or multiple packer installations with sequential setting in a single trip, reducing rig time and complexity.
Rated to 7,500 psi and tested in Q125 casing, the HP-6 features a straight-pull release mechanism that is fully isolated from hydraulic pressure, allowing low shear-out force even under full differential pressure.
Built-in bypass ports equalize pressure during retrieval, ensuring smooth release and reducing swab risk. The tool can be set using rig pumps, and its economical design allows for easy redress and reuse. Optional rotational release is available for added flexibility in challenging retrieval scenarios.
Engineered with materials and elastomers for hostile environments, the HP-6 delivers dependable performance in offshore operations, high-angle wells, and cost-sensitive completions requiring reliability without unnecessary complexity.
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LM2500+G4 SAC 50Hz CC 2x1 Gas Turbine
The LM2500+G4 SAC 50Hz Combined Cycle 2x1 is a high-performance gas turbine system designed for large-scale, high-efficiency power generation, particularly suited to the needs of oil and gas operations. This configuration links two LM2500+G4 gas turbines with a single steam turbine in a combined cycle layout—capturing waste heat from the gas turbines to produce steam and generate additional power. This approach significantly improves overall thermal efficiency while maintaining operational flexibility.
The Single Annular Combustor (SAC) with optional water injection helps the system meet emissions rules while keeping combustion stable and efficient. The LM2500+G4 improves on the previous +G4 model by increasing airflow, using better materials, and adding improved cooling. This allows it to produce about 10% more power without reducing the lifespan of critical hot parts. It can be equipped with either a two-stage or six-stage power turbine to fit different needs. Even with the higher power output, the +G4 keeps its modular, two-spool design, which makes maintenance easier and ensures reliable performance in many environments.
In the 2x1 configuration, the system delivers approximately 41% more power than a single gas turbine unit. The use of combined cycle technology ensures better fuel utilization, helping to reduce overall emissions and lower lifecycle operating costs.
The LM2500+G4 SAC 50Hz Combined Cycle 2x1 offers higher power, improved efficiency, and a flexible design, making it well-suited for large-scale oil and gas operations that demand reliable and efficient power generation. Its “50Hz” designation means the turbine is specifically optimized to supply electricity to grids operating at 50 cycles per second, ensuring seamless integration with regional power systems.
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6 5/8" Mech-1 Single Grip Mechanical Set Packer
Ballycatter Mech-1 Single Grip Mechanical Packer
Available sizes: 5”, 5 1/2”, 6 5/8”, 7”, 9 5/8”, and 10 3/4”
The Ballycatter Mech-1 is a retrievable, compression-set mechanical packer designed for low-pressure production, casing integrity testing, and well intervention operations. Built with a long-stroke mandrel and a large bypass area, it allows unrestricted fluid circulation while running in hole. The bypass is controlled by a face-seal valve that automatically closes during setting, fully isolating the annulus once the packer is engaged.
Setting is achieved via a mechanical J-slot system using standard right-hand (or optional left-hand) rotation. Once the tool is positioned, applying set-down weight activates the slips and compresses the packing elements, sealing off the formation below. Retrieval is straightforward—lifting the tubing string engages the J-slot and reopens the bypass valve for safe circulation and recovery.
The Mech-1 features a rocker-type slip design for positive casing engagement and can be repositioned if required. Its straightforward operation, reliable sealing, and retrievability make it a practical solution for conventional production completions, casing leak diagnostics, and test operations where hydraulic setting is not required.
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This 2-way panel-mounted ball valve with Tube OD connections is designed to control, start, or stop fluid flow in oil and gas tubing systems. Its 2-way configuration allows fluid to flow in either direction between two ports, providing reliable on/off operation for pipelines, sampling lines, injection systems, or bypass lines.
The Tube OD connections allow direct attachment to tubing without additional fittings, simplifying installation and reducing potential leak points. The panel-mounted design enables operation from a control panel, making it suitable for systems where multiple valves are centralized or where physical access to the tubing is limited.
The valve features a floating ball design that ensures leak-proof shut-off under high-pressure conditions. Standard working pressure is 6000 PSI. It is designed and tested to ASME B16.34 for pressure-temperature ratings, and valve ratings follow ASME Process Piping Code B31.3. The valve has been type tested to MSS-SP-99 and offers a temperature range from –40 °F to 450 °F (–40 °C to 232 °C).
Operation is simple with a quarter-turn handle, providing fast, low-torque control. The three-piece construction allows easy installation and maintenance, including replacement of internal components. Each valve is factory tested pneumatically with nitrogen gas at 1000 psig for seat and stem leakage, with a maximum allowable leak rate of 0.1 sec/min. Optional additional tests, such as vibration, temperature, and helium, are available.
The valve is available in a range of corrosion-resistant materials, including SS 316, SS 316L, Duplex, Super Duplex, Hastelloy, Inconel, and Monel. Optional compliance with NACE MR0175 and fire-safe designs makes it suitable for demanding industrial environments. Heat code traceability ensures material verification and quality assurance.
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The Monoflange DBB Double Block & Bleed Valve Flange x Thread with OS&Y and Needle Isolation is designed to provide reliable dual isolation with a controlled bleed in a single assembly. This configuration replaces the need for multiple individual valves, reducing the number of potential leak points and simplifying installation in oil and gas applications. The first isolation is achieved using an OS&Y valve, while the second isolation and the drain function use a needle valve, providing precise control over fluid venting and depressurization.
This valve is suitable for instrument and gauge isolation, chemical injection points, sampling connections, and direct or remote mounting of instruments. It supports high-pressure systems with a range from Class 150 to Class 2500, and accommodates both reduced and full bore options. Constructed from durable materials including SS 316, SS 316L, Duplex, Super Duplex, Hastelloy, Inconel, and Monel, the valve can also be supplied with NACE-compliant materials on request.
Manufactured in accordance with recognized standards such as ASME B16.34, API 6D, and ISO 17292, the Monoflange DBB provides a compact, robust solution for dual isolation with reliable venting. Its integrated design reduces stress on piping systems, minimizes maintenance needs, and ensures consistent performance in critical oil and gas applications.
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MS-32 Multistage Steam Turbine
Unleash Unprecedented Power with the Kessels MS-102 Multistage Steam Turbine: The Apex of Efficiency and Reliability In the oil and gas industry, where power and precision are non-negotiable, Kessels Steam Turbines proudly presents the MS-102 Multistage Steam Turbine – a true marvel of engineering designed to redefine excellence in the world of steam turbines. Mastering Back-Pressure Turbines Back pressure turbines have long been the cornerstone of industrial steam applications, and our MS-102 Multistage Steam Turbine takes their capabilities to an entirely new level. Available in both single-stage and multi-stage configurations, these turbines are the linchpin between boiler units and process steam headers, revolutionizing steam utilization and power generation. Efficiency Beyond Compare At the heart of the MS-102 Multistage Steam Turbine lies the essence of back pressure turbines – the straight-back pressure design. This innovation ensures the seamless utilization of exhaust steam, aligning perfectly with process demands. Every unit of electrical power generated is consumed precisely as per the process steam demand, marking a new pinnacle of efficiency. Applications Without Boundaries Our MS-102 turbine is not merely a machine; it's a versatile powerhouse ready to excel in an array of applications: Drive Applications: Whether in the oil and gas sector, sugar mills, sugar fibrizor systems, shredder drives, pump drives, or beyond, our turbine delivers power where it's needed most. Power Generation Applications: Embrace sustainability by using our turbine to generate electricity, powering generators with clean and efficient steam energy while reducing your carbon footprint. Bleed Back-Pressure Steam Turbines At Kessels, we understand that adaptability is key. Our MS-102 turbine comes equipped with built-in bleed points, enabling uncontrolled extraction of steam within a medium pressure range. This feature is invaluable when low-volume steam demands and high tolerance for pressure variations are essential. Kessels turbines seamlessly combine the best of both bleed and back-pressure mechanisms. Extraction Back-Pressure Steam Turbines For industries with substantial process steam demand volumes and zero tolerance for pressure variations, our steam turbines with controlled extraction vents come to the forefront. Operating efficiently under intermediate pressure levels, these turbines ensure a consistent and reliable steam supply on which your operations can depend. Why Choose Kessels? Choosing Kessels Steam Turbines is more than a business decision; it's a commitment to a legacy of excellence, innovation, and reliability. Our MS-102 Multistage Steam Turbine is the embodiment of these principles, offering you: Unmatched Efficiency: Maximize steam utilization while minimizing waste, resulting in cost savings and increased productivity. Reliability Beyond Question: Built with precision and rigorously tested to ensure uninterrupted operations, even in the most demanding environments. Unparalleled Versatility: Adapt effortlessly to changing needs, be it for drive applications or eco-friendly power generation, knowing that Kessels has you covered. A Sustainable Tomorrow: Harness the power of steam for electricity generation, reduce your environmental impact, and contribute to a greener future. Expert Support: Our team of specialists is at your service, ready to assist with installation, maintenance, and troubleshooting. Empower Your Future with Kessels In the fiercely competitive world of the oil and gas industry, every advantage matters. Step into a future of efficiency, reliability, and sustainability with the Kessels MS-102 Multistage Steam Turbine. Contact us today to discover how our turbine can revolutionize your operations and lead you toward a future of unprecedented success. Kessels Steam Turbines – Powering Progress, Powering You. View Details
The LM2500 SAC Gas Turbine features a Single Annular Combustor (SAC) system—a type of combustion chamber where fuel and air are mixed and burned in a single, annular-shaped chamber. This design allows for efficient combustion with lower emissions and better fuel-air mixing. The turbine also supports dual-fuel capabilities, operating on both gas and diesel, offering greater flexibility in environments where fuel availability may vary.
Its open configuration is designed for accessibility, making maintenance tasks faster and more straightforward. This also allows for quicker engine removal or replacement, helping reduce downtime during service operations.
The LM2500 SAC is widely used across multiple industries, including electrical power generation, mechanical drive systems, and marine propulsion, due to its reliability, fuel flexibility, and proven performance in demanding conditions.
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The L type 2 valve manifold is a compact and reliable solution designed for connecting impulse lines to pressure transmitters or gauges in industrial systems. Its primary purpose is to allow safe and efficient measurement of process pressures while providing the ability to isolate, vent, or calibrate instruments without disrupting the process.
The L type configuration refers to the layout of the two valves, arranged in an L shape, which allows for simple and intuitive operation. This design enables the user to block the process pressure, bleed off trapped pressure, and perform calibration on static pressure transmitters or gauges. The arrangement minimizes installation space while ensuring clear and accessible operation.
Pipe to pipe manifolds are designed to connect directly to process lines using standard piping connections. This allows for straightforward integration with impulse lines and reduces the need for additional fittings. The manifold provides a secure and leak-free connection while maintaining easy access for maintenance, calibration, and testing of instruments. Overall, the L type 2 valve manifold combines compact design, operational simplicity, and high reliability for critical measurement applications.
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Shear Down Pulling Tools for External Fishing Necks
Optimize Your Downhole Retrieval Operations with HOCA Oil Tools' Shear Down External Fishing Neck Pulling Tools In the intricate world of oilfield operations, ensuring seamless downhole tool retrieval is pivotal for maintaining efficiency and minimizing downtime. HOCA Oil Tools, a specialist in crafting superior downhole slick line tools, proudly presents its Shear Down External Fishing Neck Pulling Tools. These tools are engineered with precision to facilitate the secure and efficient retrieval of subsurface equipment, enhancing operational effectiveness and safety. HOCA’s Shear Down External Fishing Neck Pulling Tools: Precision Engineered for Enhanced Retrieval Our Shear Down External Fishing Neck Pulling Tools are designed for operators who demand reliability and precision in their downhole activities. Built to engage and retrieve subsurface equipment with external fishing necks, these tools are essential for operations requiring the removal of downhole instruments. Equipped with a shear-down mechanism, these pulling tools allow for disengagement in scenarios where the retrieved equipment becomes immovably stuck, thereby ensuring the safety and continuity of operations. Experience the Difference with HOCA Oil Tools At HOCA Oil Tools, we are dedicated to providing the oil and gas industry with downhole solutions that meet the demands of modern well operations. Our Shear Down External Fishing Neck Pulling Tools represent our commitment to innovation, quality, and customer satisfaction. Whether you are addressing routine retrieval tasks or facing complex downhole challenges, our tools are designed to enhance the efficiency, safety, and success of your operations. By incorporating our Shear Down External Fishing Neck Pulling Tools into your downhole toolkit, you are choosing a product that delivers on the promise of operational excellence. With HOCA Oil Tools, you gain not just a supplier, but a partner committed to supporting your success with state-of-the-art solutions and expert service. Choose HOCA Oil Tools for your downhole needs and take the first step towards more efficient, safe, and cost-effective retrieval operations. Elevate your downhole performance with HOCA Oil Tools – where innovation, quality, and reliability come together to drive your success. View Details
Upgrade of existing copper DCS network
Upgrading Your Lifeline: Nulux’s Proven Expertise in Copper DCS Network Enhancement Navigating the demands of modern-day industrial operations, particularly in the oil and gas sector, necessitates a robust, dependable, and high-performing Distributed Control System (DCS) network. It's more than an infrastructure; it's the operational lifeline that engineers and professionals in the industry lean on for seamless, uninterrupted, and efficient management of processes. But what happens when this lifeline requires enhancement to meet the escalating demands of your evolving operations? This is where Nulux Network Solutions steps in, fortifying your operational backbone with our unparalleled upgrade services. Elevating Your Operational Efficacy with Upgraded Copper DCS Networks Steeped in two decades of prolific experience, Nulux has pioneered numerous industrial projects in North America, specializing in elevating existing copper networks to meet the next level of operational demands, especially in DCS network upgrades. Our seasoned team, wielding a wealth of knowledge in installing, repairing, and upgrading a myriad of copper cabling systems, ensures your DCS network isn’t merely functional but is a testament to peak performance and reliability. The Nulux Advantage: Upgrading with Precision, Experience, and Technical Mastery When your copper DCS network signals a need for an upgrade, the Nulux team becomes your strategic ally, ensuring the transition is not just seamless but also significantly amplifies your network’s efficiency, reliability, and performance. Here's how we elevate your existing DCS networks: Holistic Network Assessment: Our experts delve deep into your existing network, identifying latent potential and areas necessitating upgrades to ensure that the enhanced network is inherently aligned with your operational demands. Strategic Upgrade Planning: Our plans are carved from a place of operational understanding, ensuring the upgrades augment not just the network’s technical performance but also enhance your process management, control, and data flow. Tailored Solutions: Our upgrade solutions are crafted, ensuring they are inherently in sync with your specific requirements, be it in voice, data, or video services, ensuring the upgraded DCS network is a perfect fit for your operational landscape. Uninterrupted Support: Beyond the upgrade, we stand beside you, offering consistent technical support, ensuring your enhanced network continues to operate at peak performance throughout its lifecycle. Why Copper Remains King: Sustaining Reliability and Performance Copper networks have steadfastly held their ground as a preferred choice for structured cabling due to their high-bandwidth transmission capability, long-term reliability, ease of installation, and cost-effectiveness. Your upgraded DCS network, enriched by the myriad benefits copper brings, becomes a solid, reliable, and efficient operational backbone, ensuring enhanced control, communication, and data management across your industrial processes. Aligning with Nulux: Upgrading Your Network, Upgrading Your Success Choosing Nulux as your copper DCS network upgrade partner translates to aligning with a team that understands networks beyond their technical framework. Our solutions are derived from an innate understanding of what businesses, especially in the oil and gas sector, require to maintain a competitive edge. Our legacy, crafted over 20 years, speaks of our commitment, expertise, and unwavering dedication to delivering high-quality network solutions. It’s not just about staying connected; it’s about ensuring that every pulse of your network propels your operations toward unbridled efficiency and success. Let’s explore how your existing copper DCS network can be transformed into a superior, high-performing asset, driving your operations to new heights of efficiency and control. Connect with Nulux Network Solutions today for a comprehensive consultation and pave the way towards an upgraded operational future. View Details