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MUSE

2009-03-10View Original

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In MULE mode, there is a cold fluid inlet that is in the gas phase (the temperature of these two cold fluid inlets is the lowest); after being heated by the hot fluid in the heat exchanger, it should still remain in the gas phase, but liquefaction occurs instead. I would be greatly grateful if someone could give me some guidance.
Reply #22009-03-10
This post was last edited by jia717 on 2009-7-20 at 21:32. The heat exchange area may be insufficient, or the flow rate of the hot fluid may not be enough; check whether this is the cause of the heat imbalance. If the heat calculation based on the parameters shows that it is balanced and the area is sufficient, then there may be blockages or too much dirt in the heat exchanger, which requires cleaning
Reply #32009-03-10
The type of your heat exchanger – I’m afraid what I know might not be the explanation you need. If it’s the same type as the one I designed, I can offer some suggestions
Reply #42009-07-20
It’s probably a problem with the layer arrangement; are you sure your calculations don’t contain errors such as temperature crossings? ?
Reply #52009-07-21
There is inevitably some discrepancy between theory and practice. Therefore, it’s better to be cautious when making calculations. Since MUSE is being used, it’s probably for a three-fluid heat exchanger, right?
Reply #62009-07-21
The inlet is in the gas phase, while the outlet is in the liquid phase; that’s heating, it’s a process of condensation. Measure the temperature of the hot fluid? See if it’s heating or cooling?

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