NOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for saleNOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for sale
    NOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for saleNOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for sale
    NOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for saleNOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for sale
    NOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for saleNOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for sale
    NOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for saleNOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for sale
    NOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for saleNOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for sale
    NOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for saleNOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for sale
    NOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for saleNOT SPECIFIED NOT SPECIFIED Used Support Equipment Oilfield Equipment for sale
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    Support Equipment Oilfield Equipment
    EUR € 47.724 
    Price entered as: USD $49,950

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    Contact:Will Veasey

    Austin, Texas, USA 78746

    General

    Stock Number
    87198315
    Condition
    Used
    Description
    36 X 10 1440 psi Test Separator Type: Used Condition: Excellent Location: Midland, TX 36 X 10 1440 psi Test Separator Description Size: The 36in x 10ft specification indicates the size of the test separator. In this case, the vessel has a diameter of 36 inches and a length of 10 feet. The larger diameter provides a larger internal volume for fluid separation and testing. Pressure Rating: The 1440 psi designation refers to the maximum pressure rating of the test separator. This means that the separator is designed to handle well fluids and test samples with pressures up to 1440 pounds per square inch (psi). The pressure rating is an important consideration to ensure safe and reliable operation under high-pressure conditions. Construction: Test separators are typically constructed from steel to withstand the high pressures and harsh conditions encountered in oil and gas operations. The vessel is designed to contain the fluids being tested safely and effectively. It may have additional features such as internal baffles or mist eliminators to enhance separation efficiency. Function: A test separator is used to separate and measure the flow rates and properties of well fluids during testing operations. It allows for the separation of oil, gas, and water, providing accurate measurements of each component's flow rates, pressures, and volumes. Test separators are essential for assessing well productivity, fluid characteristics, and reservoir performance. Testing and Sampling: Test separators enable the collection of representative fluid samples for analysis, such as determining the composition, density, viscosity, and gas-oil ratio. These samples can be used to evaluate reservoir properties, assess production potential, and optimize production strategies. Instrumentation and Controls: Test separators are typically equipped with instrumentation and controls to monitor and regulate the separation process. This may include pressure gauges, temperature sensors, level indicators, flow meters, and control valves. The instrumentation helps ensure accurate measurements and control over the test conditions. Safety Considerations: Safety features are incorporated into test separators to protect personnel and equipment. These may include pressure relief devices, safety interlocks, and emergency shutdown systems. Compliance with industry standards and regulations is crucial to ensure safe operation during testing procedures. Portable and Modular Design: Test separators are often designed to be portable and modular, allowing for easy transportation and installation at various well sites. This flexibility enables efficient testing and monitoring of multiple wells without the need for permanent infrastructure.