It is shown that the U-bottom orifice has higher total pressure drop and (thermodynamic) efficiency.
结果表明,U型弧底节流孔具有更大的压降和更高的热力学效率。
However, due to various thermodynamic and practical constraints, the efficiency of the plants is only about 33%.
由于热力学和实际限制,发电的效率只有33%。
The exergy efficiency of indirect evaporative cooler is defined based on analyzing the thermodynamic performance of heat and mass transfer process.
根据间接蒸发冷却过程的热力学特性,定义了间接蒸发冷却器的火用效率计算公式。
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