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Considerations about evaporator thermal design in a vapour compression liquid chiller, Experimental analysis with HFC fluids (R134a and R407C)

机译:关于蒸气压缩式液体冷却器中蒸发器热设计的考虑,使用HFC流体(R134a和R407C)的实验分析

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摘要

In this paper, the predicted performance of a shell-and-tube (1-2) evaporator installed in a vapour compression liquid chiller is analysed. The classical thermal design methods are applied to the evaporator performance with two HFC refrigerants, a pure fluid (R134a) and a zeotropic blend with an appreciable glide (R407C). From the experimental results obtained it is possible to discuss the validation of the simplificatory assumptions usually taken, evaluating the resulting error introduced due to the no consideration of pressure drops and temperature glide (in the case of zeotropic blends) at the evaporator. Concluding that is not possible to consider the behaviour of a zeotropic refrigerant as a pure refrigerant, rejecting the glide. Whereas the assumption of no pressure drops in evaporator, leads to an error of about 5% in cooling capacity calculation.
机译:本文分析了安装在蒸气压缩式液体冷却器中的管壳式(1-2)蒸发器的预测性能。经典的热设计方法适用于两种HFC制冷剂,纯流体(R134a)和具有明显滑移的共沸混合物(R407C)的蒸发器性能。从获得的实验结果中,有可能讨论通常采用的简化假设的验证,评估由于不考虑蒸发器的压降和温度滑移(在共沸混合物的情况下)而引入的结果误差。结论是,不可能考虑共沸制冷剂作为纯制冷剂的行为,拒绝滑行。假设蒸发器中没有压降,则在制冷量计算中会导致约5%的误差。

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