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Is it okay not to have a door at the inlet of the high-pressure heat exchanger? Asked the designer, who replied that the outlet door of the booster is the inlet door – will that work?
Is it a valve? If so, of course it’s necessary; otherwise, how can any problems be repaired? Wouldn’t the entire system have to be shut down?
It’s still necessary to install valves in the high-pressure plate heat exchanger; even manual valves would suffice. However, it’s best to install an automatic regulating valve at the outlet of the booster pump to facilitate the operation of the high-pressure plate heat exchanger
This, I believe, is a must-have. Otherwise, how can it be purged? It should be noted that the pipes must be thoroughly cleaned before the high-pressure plate filter can be purged. We haven’t designed any either; I’ve already discussed this with the design institute, and they agreed to add it.
Ours will experience drift if it’s not there; we’re preparing to make modifications as well
Ours doesn’t have it either; they were all made from the same mold
It should be available, and it allows for adjustment of the high temperature difference for heat exchange. . . . .
In fact, if the high-pressure heat exchanger is thoroughly purged, there won’t be any major problems with it. There is not much room for adjustment in the air valve of high-pressure heat exchangers. The heat exchange in high-pressure heat exchangers occurs as a direct transformation from liquid to gas. Heat exchange occurs quite frequently. In valves for high-pressure air pipelines, the valve disc is generally not complete. Leave 20% space. So even after the valves are fully closed, 20% remains open.
There is a blind flange at the heat exchanger inlet, which facilitates purging; temperature deviations can be adjusted using the backflow nitrogen valve. Thank you all for your help
Constant current valves are commonly used; in some applications, this valve is omitted to reduce resistance