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CBW-1500 Diesel Engine Pump For Pipeline Booster

CBW-1500 Diesel Engine Pump For Pipeline Booster

The CBW-1500 crude oil transfer pump is a diesel engine triplex reciprocating single acting plunger pump featuring five-stage flow rate adjustment.
  • Model :

    CBW-1500
  • Type :

    Diesel Engine Pump
  • Stroke :

    150
  • Cylinder Diameter :

    135
  • Flow :

    373-1500 L/min
  • Pressure :

    5-15 Mpa
  • Shipping Port :

    Shanghai Port, China
  • Warranty :

    12 Months

The CBW-1500 pipeline booster pump is a triplex reciprocating single-acting plunger pump driven by a diesel engine, featuring five-stage flow regulation.

 

Its unique triplex reciprocating design minimizes flow pulsation, ensuring smoother fluid delivery. The five-stage flow adjustment is achieved through a precision gearbox, offering simple operation and rapid adaptation to varying flow demands across different operating conditions. Transitions between settings are seamless and shock-free. Additionally, the pump assembly incorporates a complete cooling and lubrication system. The cooling fan operates synchronously with the engine, while the forced lubrication system precisely lubricates moving components, reducing wear and extending equipment lifespan.

 

This equipment demonstrates outstanding operational efficiency, maintaining stable performance output across diverse operating conditions. Whether in large-scale industrial pipeline systems requiring prolonged continuous operation or in small-to-medium-sized boosting applications with intermittent start-stop cycles, this unit consistently delivers reliable performance output through its optimized power matching and structural design. It ensures stable fluid flow within pipelines at set pressure ranges, meeting the stringent demands for efficient and stable pressure boosting in complex operating environments.

 

Technical Parameters and Specifications

Type Horizontal Triplex Reciprocating Single Acting Plunger Pump
Stroke (mm) 150
Cyclinder Diameter (mm) 135
Flow (L/min) 1500      979      728      557      373
Pressure (Mpa)   5          7.5       10        13        15
Input Speed (r/min) 160
Dimensions (mm) 4500*2096*2100
Weight (kg) 5980
Diesel Model QSC8.3-C260
Diesel Engine Power (KW) 194
Rated Speed (r/min) 1700

 

 

Functions  

The pipeline booster pump plays a central role in various fluid conveyance systems. It resolves pressure decay issues within pipelines caused by friction losses, elevation differences, or insufficient initial pressure. Through the periodic reciprocating motion of pistons/plungers within the cylinder, it converts the mechanical energy from the prime mover into fluid pressure energy, elevating the fluid pressure within the pipeline. This ensures the fluid is delivered stably to the target location at the set pressure and flow rate. In industrial production, they provide the driving force for long-distance pipeline transportation and maintain process pressure. In oilfield development, mining engineering, and other fields, they are used for boosting water supply pressure, deep well pumping, high pressure cleaning, or formation grouting. With their powerful pressure-boosting capability, stable flow output, and adaptability to complex operating conditions, they have become critical equipment for ensuring the efficient, safe, and reliable operation of fluid transportation systems. 

Application

Pipeline booster pumps, with their unique pressure-boosting capabilities and operational characteristics, serve as indispensable equipment across multiple industries. In the oil and chemical sector, they are commonly employed for the pipeline transportation of crude oil, refined petroleum products, and various chemical media. These pumps effectively overcome pressure losses during long-distance pipeline transport, ensuring stable flow of media between process stages such as reaction, separation, and storage. In the energy sector, pipeline booster pumps play a vital role in both power plant boiler feedwater pressurization and high-temperature fluid transportation for geothermal development, leveraging their resistance to extreme temperatures and pressures. Within mining and metallurgical industries, they facilitate slurry conveyance, hydraulic transmission systems, and circulation pressurization for diverse cooling systems, ensuring continuous and stable production processes.

 

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