Brief: This video demonstrates the setup, operation, and key moments during typical use of the Thermostatic Water Separator. You will see how this 2-inch carbon steel, ANSI 150LB flange type separator efficiently removes water droplets from steam, enhancing equipment thermal efficiency and preventing water hammer. Watch as we explain its working principle and structural design based on international standards.
Related Product Features:
Utilizes sudden steam flow direction change to separate water droplets for high dryness steam.
Enhances thermal efficiency of steam equipment and prevents water hammer in pipelines.
Designed to standards including GB/T12250-2005, ISO 6948, and GB/T22654-2008.
Constructed with durable materials like A216 WCB or A351 CF8 carbon steel valve body.
Features flange connections for secure and standardized installation.
Separated condensate is efficiently discharged through a lower drain valve.
Available in multiple sizes from DN65 to DN200 to suit various system requirements.
Supports pressure ratings up to 150LB for reliable performance in industrial settings.
Câu hỏi thường gặp:
What is the working principle of this thermostatic water separator?
It utilizes a sudden change in the direction of steam flow to separate steam from suspended water droplets, providing high dryness steam to equipment and preventing water hammer.
What design standards does this water separator comply with?
It complies with GB/T12250-2005, GB/T22654-2008, GB/T12251-2005, and ISO 6948 standards, with a valve body made from A216 WCB or A351 CF8 and flange connections.
How is the condensate water discharged from the separator?
The separated condensate water is discharged through the drain valve located at the lower part of the separator.
What materials are used in the construction of the valve body?
The valve body is constructed from durable materials such as A216 WCB or A351 CF8 carbon steel, ensuring longevity and reliability.