A heat engine takes heat from a source with a temperature of 1500 K and leaves it to an environment with a temperature of 320 K. The heat transferred from the hot source to the machine is 700 KJ /...

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A heat engine takes heat from a<br>source with a temperature of<br>1500 K and leaves it to an<br>environment with a temperature<br>of 320 K. The heat transferred<br>from the hot source to the<br>machine is 700 KJ / sec. The<br>power of the heat machine has<br>been measured as 320 Kw. Since<br>the most natural ambient<br>temperature is 25 ° C, calculate<br>the reversible work that can be<br>obtained per unit time and the<br>irreversibility that occurs per unit<br>time and the second-law<br>efficiency of this heat machine.<br>

Extracted text: A heat engine takes heat from a source with a temperature of 1500 K and leaves it to an environment with a temperature of 320 K. The heat transferred from the hot source to the machine is 700 KJ / sec. The power of the heat machine has been measured as 320 Kw. Since the most natural ambient temperature is 25 ° C, calculate the reversible work that can be obtained per unit time and the irreversibility that occurs per unit time and the second-law efficiency of this heat machine.

Jun 11, 2022
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