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Thermodynamic (Exergy-energy) Analysis of a Low Pressure Improved Claude Cycle Using Control Volume Technique For Liquefaction of Gases

机译:低压改善克劳德循环的热力学(Defergy-Energy)使用控制体积技术进行液化气体液化

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摘要

Comprehensive energy and exergy study of improved Claude system to liquefy various gases is carried out in this paper. Numerical computational technique is used to find out the effect of various properties variables like temperature, pressure on system performance and exergy destruction in system and their sub-components It was observed that the inlet variables like pressure temperature and intermediate mass ratio respectively are ranges from 3 to 6 bar pressure, 280 to 290 K temperature and 0.5-07 mass ratio respectively desirable for high liquefaction rate and second law efficiency in improved low pressure Claude cycle.
机译:本文进行了改进克劳德系统改进克劳德系统的综合能源和暴力研究。 数值计算技术用于找出像温度,系统性能的各种性变量的效果,系统性能和漏洞破坏的效果,观察到等压力温度和中等质量比的入口变量为3 对于6巴的压力,280至290 k温度和0.5-07质量比,分别是为了高液化率和改善低压克劳德循环的第二律效率。

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