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Optimization of the injection-port geometries of a vapor injection scroll compressor based on SCOP under various climatic conditions

机译:在不同气候条件下基于SCOP的蒸汽喷射涡旋压缩机喷射端口几何形状的优化

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An analytical study is conducted to optimize the injection-port geometries of a vapor injection asymmetric scroll compressor operating under various climatic conditions. A numerical model was developed to predict the performance of the vapor injection asymmetric scroll compressor in the heating mode according to various operating parameters, and this numerical model was validated using data measured in a vapor injection heat pump. The effects of the location and number of injection ports on the performance of the asymmetric scroll compressor were analyzed using the numerical model. Both the optimal injection-port angle and required injection-port area increased as the outdoor temperature decreased in order to increase the injection mass flow rate. The optimized injection port designs were then proposed for the asymmetric scroll compressor in order to achieve the maximum SCOP (seasonal coefficient of performance) under various climatic conditions, improving the SCOP by 2%-6% relative to the baseline injection compressor. (C) 2017 Elsevier Ltd. All rights reserved.
机译:进行了分析研究,以优化在各种气候条件下运行的蒸汽喷射不对称涡旋压缩机的喷射端口几何形状。开发了一个数值模型,以根据各种运行参数预测加热模式下的蒸气喷射不对称涡旋压缩机的性能,并使用在蒸气喷射热泵中测量的数据验证了该数值模型。使用数值模型分析了注入口的位置和数量对不对称涡旋压缩机性能的影响。随着室外温度的降低,最佳的喷射口角度和所需的喷射口面积都会增加,以增加喷射质量流量。然后针对非对称涡旋压缩机提出了优化的注入口设计,以便在各种气候条件下获得最大的SCOP(性能季节性系数),相对于基线注入压缩机,SCOP提高了2%-6%。 (C)2017 Elsevier Ltd.保留所有权利。

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