2W.W Twin Screw Pump: High-Performance Solution for Marine and Industrial Fluid Fuel Transfer
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Place of Origin: Made In China
Delivery Time: 15-30 days
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Please Note: The description might be incorrect, please contact us for confirmation.
Tag: Our other products
Click here to send inquiry via whatsapp
The Marine Fuel Transfer Pump 2W.W Twin Screw Pump is a versatile and robust pump designed specifically for marine loading applications, bottom storehouse operations, and sewage treatment systems. It excels in handling a variety of fluids, including lubricants and fuel oils, making it an ideal choice for the maritime and industrial sectors.
Key Features:
Main Specifications:
The performance of the 2W.W Twin Screw Pump varies based on the rotational speed and the viscosity of the medium. Below is a detailed table showcasing the pump’s capabilities at different speeds (1450 r/min, 950 r/min, and 720 r/min) and viscosities (ranging from 30 cSt to 2500 cSt):
(Note: The table above includes a selection of models; a comprehensive list is available upon request.)
Ideal Applications:
Frequently Asked Questions (FAQs):
Q1: What is the maximum pressure the Marine Fuel Transfer Pump can handle?
A1: The 2W.W Twin Screw Pump can achieve a maximum pressure of 4.0 MPa, making it suitable for high-pressure fluid transfer applications.
Q2: Can the pump handle fluids with high viscosities?
A2: Yes, the pump is designed to handle fluids with viscosities ranging from 1 to 3000 mm²/s, and up to 10⁶ mm²/s at reduced rotational speeds.
Q3: What industries can benefit from using the Marine Fuel Transfer Pump?
A3: Industries such as maritime, sewage treatment, lubrication, and fuel oil transfer can benefit from the pump’s versatility and efficiency.
Q4: Is the 2W.W Twin Screw Pump suitable for both high and low-temperature environments?
A4: Absolutely, the pump operates effectively within a temperature range of -20℃ to 120℃, ensuring reliable performance in various climates.
Q5: How does the pump ensure energy efficiency?
A5: The pump’s design minimizes energy consumption while maintaining high efficiency, resulting in lower operational costs and reduced environmental impact.