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Optimization of injection holes in symmetric and asymmetric scroll compressors with vapor injection

机译:通过蒸汽喷射优化对称和非对称涡旋压缩机的喷孔

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摘要

A simplified numerical model was developed to analyze the optimum injection-hole diameter and angle for symmetric and asymmetric scroll compressors with vapor injection. The present numerical model was validated by comparing the predictions with the measured data for a water-to-water heat pump. The optimized injection-hole angle in the symmetric scroll compressor was much lower than the intuitively observed optimal value of 360° because late injection caused significant backward flow to the injection port. The asymmetric scroll compressor showed a relatively short injection period compared with the symmetric scroll compressor, yielding an unfavorable effect on system performance due to the lower injection mass flow rate. Therefore, in the asymmetric scroll compressor, an increase in the total injection-hole area is a good solution to overcome the performance degradation from short injection periods by increasing the injection-hole diameter and the number of injection holes as well.
机译:建立了简化的数值模型,以分析带有蒸汽喷射的对称和不对称涡旋压缩机的最佳喷射孔直径和角度。通过将预测与水对水热泵的测量数据进行比较,验证了本数值模型的有效性。对称涡旋压缩机中的最佳喷射孔角远低于直观观察到的360°最佳值,因为后期喷射会导致大量逆流流向喷射口。与对称涡旋压缩机相比,非对称涡旋压缩机显示出相对较短的喷射时间,由于较低的喷射质量流量,对系统性能产生不利影响。因此,在非对称涡旋压缩机中,增加总喷射孔面积是克服由于短喷射周期而通过增加喷射孔直径和喷射孔数量而导致的性能下降的良好解决方案。

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