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Second-Law Analysis to Improve the Energy Efficiency of Screw Liquid Chillers

机译:二次法分析,以提高螺杆液体冷水机组的能源效率

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This work applies the second-law analysis of thermodynamics to quantify the exergy destruction of the components of screw liquid chiller, and to identify the potential for each component to contribute to improve the overall energy efficiency of the system. Three screw liquid chiller units were built to demonstrate the feasibility of the model presented herein. Unit A was a 100 RT water-cooled screw liquid chiller. Unit B was modified from Unit A by switching the old condenser for a new one with a greater heat transfer, and Unit C was modified from Unit B by exchanging the compressor for a more efficient one. The results indicate that the compressor has the largest potential to improve energy efficiency, followed in order by the condenser, and then the evaporator. The second law analysis may help engineers to focus on the components with higher exergy destruction and quantify the extent to which modifying such components can influence, favorably or unfavorably, the performance of other components of the screw liquid chiller.
机译:这项工作应用了热力学的第二定律分析,以量化螺旋式液体冷却器组件的火用破坏,并确定每个组件潜在的潜力,以提高系统的整体能效。构建了三个螺杆式液体冷却器单元,以证明本文介绍的模型的可行性。单元A是100RT水冷螺杆液体冷却器。通过将旧冷凝器换成传热效率更高的新冷凝器,从单元A改造了单元B,通过将压缩机换成更高效的压缩机,从单元B改造了单元C。结果表明,压缩机具有最大的潜力来提高能源效率,其次是冷凝器,然后是蒸发器。第二定律分析可以帮助工程师将精力集中在具有较高火用破坏性的组件上,并量化修改此类组件可以有利或不利地影响螺杆式液体冷却器其他组件的性能的程度。

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