Material: | Stainless Steel | Use Temperature: | 0 ℃-170 ℃ |
---|---|---|---|
Stainless Steel Max Design Pressure: | 0.5 Mpa | Connection Mode: | Male Thread , Female Thvead, Flange, SAE Flange, Soldering |
Warranty Period: | One Year | Structure: | Plate Heat Exchanger |
HS CODE: | 8419500090 | Application: | Renewable Energy |
Highlight: | Fusion Welded Plate Heat Exchanger,Geothermal Welded Plate Heat Exchanger |
Fusion Welded Plate Heat Exchanger Used In Solar Thermal Systems, Geothermal Applications
TYPE | B(mm) | C(mm) | D(mm) | E(mm) | THICKNESS(mm) | WEIGHT(Kg) | MAX FLOW m3/h) | DESIGN PRESSURE (Mpa) |
BT350BR | 318 | 160 | 1060 | 912 | 44+2.23N |
79.3+1.31N(N<132) 82.23+1.404N(N≥132) |
50 | 0.5 |
|
welded stainless steel plate heat exchanger combine the properties of corrugation with high corrosion resistance. They represent a cost-effective and compact alternative to shell & tube heat exchangers where optimal heat transfer is required when using corrosive media.
The design, which has been optimized for heating and cooling systems, ensures efficiency and compactness. High turbulence is achieved in the individual channels due to the arrangement of concave/convex turbulence cells. This results in excellent distribution of the medium over the plate width, ensuring improved heat transfer. These thermodynamic flow properties lead to low pressure losses, reduced media filling and thus lower operating costs compared to herringbone corrugation heat exchangers.
These stainless steel heat exchangers meet the highest requirements for potable water applications and industrial processes,the material that is free of non-ferrous metal and enables a solid connection between the stainless steel plates. Therefore, this heat exchangers used in a broad temperature range of 0 °C to +170 °C and at pressures up to 5 bar. With its wide range of available sizes, it is perfect for applications such as:
potable water heating;
district heating systems;
laser cooling;
and as an evaporator and condenser for ammonia cooling systems.