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Duck down. Best Answer: To determine if its a superheated, compressed liquid, etc., you need to search your tables for one your properties given, in this case either pressure, temperature or specific volume. An easier way to do so is by looking at a T-v or P-v diagram but those are usually not readily available, so I'm just going to tell you by the table method.

If you are given a temperature and a pressure (like you are in this example), you will not usually be dealing with a mixture. This is because the temperature of the substance will remain constant under the wet dome (the name for the dome shape in those diagrams) so long as the pressure is also constant as well. Because of this, you have saturation temperatures and pressures. We can still determine what state we are dealing with based on the temperature and pressure.

If they equal the saturation values, we are dealing with a mixture. So to know what state your fluid is in this case, you are just going to look at either the pressure or temperature tables. If, using the pressure tables, the temperature is less than the saturation temperature, the substance is a compressed liquid, and if greater, it is a superheated vapor. If, using the temperature tables, the pressure is greater than the saturation pressure, the substance is a compressed liquid, and if less, it is a superheated vapor.

So, in short: T=Tsat and P=Psat: Saturated Liquid Vapor T Tsat Pressure: Superheated Vapor P > Psat Temperature: Compressed Liquid P y,g: Superheated Vapor y,f. Go to the table for saturated liquid/vapor, look up that temp and see what the pressure is [which is essentially looking up the vapor pressure at that temp]. If pressure > that given, you have a subcooled liquid. For the best answers, search on this site Suppose you have a steam flow exiting a turbine and you know the temperature and enthalpy but not the pressure. Go to your steam tables, find the temperature, look in the H column until you find that H, then read the pressure. However, if that exact H is not there, find where it would be between the two values above and below it.

Then figure out how far from one to the other the exact value would be. Go to the P column and move that far [proportionately] between the P values to find the interpolated P value for the exact H value.

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