APV detachable gaskets plate heat exchanger for plasma cooling
specifications: 1 High Heat Exchanging Efficiency 2 More Compact 3 Low Fouling,long life time 4 Easy cleaning,maintenance
A plate heat exchanger is a type of heat exchanger that uses metal plates to transfer heat between two fluids. This has a major advantage over a conventional heat exchanger in that the fluids are exposed to a much larger surface area because the fluids spread out over the plates.
Channels are formed between the plates and the corner ports are arranged so that the two media flow through alternate channels. The heat is transferred through the plate between the channels, and complete counter-current flow is created for highest possible efficiency. The corrugation of the plates provides the passage between the plates, supports each plate against the adjacent one and enhances the turbulence, resulting in efficient heat transfer. Application PHE for HVAC, Marine, Food like Beer, Milk, Juice, Chemical,Mine,Refinery, Power plant
The plate heat exchanger has a variety of specifications. From plate design to plate development, the company has absorbed and adopted advanced technologies and experiences both at home and abroad. VRcooler’s plates feature strong adaptability and superior performance. The gaskets and plates are produced by VRcooler under fine conditions. As a result, the company’s plate heat exchangers can be widely applied in various fields, including heating, petroleum, chemical, food, paper making, pharmaceutical, machinery and metallurgy industries.
High heating transferring coefficient: As the flowing media in the plate pack forms up turbulence at low Re and the smooth plates have little possibility of forming scale, the plate heat exchanger has very high heat transferring coefficient. In the normal water/water heat exchange the plate heat exchanger has a heat transferring coefficient over 5000W/m2k, which is 2-4 times that of the shell-and-tube exchanger. High heat recovery rate: Thanks to the high heat-transferring coefficient, the heat transferring temperature difference can be very low. Therefore, it is very well suited to low energy level heat recovery. Normally heat recovery using a plate heat exchanger can be as high as 90%. Great flexibility: As plates can form up different flow routes plate heat exchangers can have optimum designs and can flexibly suit to the changes in heat load by increasing / decreasing the number of plate without changing the frame to adapt to the new plant conditions. Low flow stagnation: Due to small flow passages and low flow stagnation, plate heat exchanger has good temperature control and is light in weight. Plate heat exchanger has especially great advantage where treating of heat sensitive matter is expected. Compact structure: Of the various kinds of heat exchangers, plate heat exchanger takes the smallest space. With the identical heat exchanging conditions, a plate heat exchanger takes about 1/3 to 1/4 that of a shell-and-tube exchanger. What is more, it needs no extra space for maintenance when begin detached. Easy maintenance: Plate is so designed that it leaves no dead flow area, so site chemical clean up is possible without detaching the plates. Under normal circumstances, single flow passage layout will have the inlet and outlet of the heat exchanging media fixed on the frame plate. This design makes it unnecessary to remove the pipeline when it comes to cleanup or plate maintenance.
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