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Development of capacity modulation compressor based on a two stage rotary compressor - part I: Modeling and simulation of compressor performance

机译:基于两级旋转压缩机的容量调节压缩机的开发-第一部分:压缩机性能的建模和仿真

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Two-stage rotary compressors are gaining popularity because of their ability to reduce operating and energy costs over the entire compressor life cycle. In this work, a capacity modulation compressor based on a two-stage rotary compressor (CMCTR) is developed to improve the performance of the rotary compressor system. The working principle of the CMCTR is presented and the cycle efficiency of the compressor through two-stage compression is numerically investigated. The CMCTR model considers mass and energy balance for a control volume, the internal leakage condition for all leakage paths, the discharge valve motion, and the force and moment balance. For simulation results, the motor efficiency is estimated with respect to shaft power and the pressure during an entire cycle is obtained with respect to the compression volume for saving mode and power mode. The optimum efficiency of the CMCTR is obtained for the modulation for these modes. (C) 2015 Elsevier Ltd and IIR. All rights reserved.
机译:两级旋转压缩机由于能够在整个压缩机寿命周期内降低运行和能源成本而受到欢迎。在这项工作中,开发了一种基于两级旋转压缩机(CMCTR)的容量调节压缩机,以提高旋转压缩机系统的性能。介绍了CMCTR的工作原理,并通过两级压缩对压缩机的循环效率进行了数值研究。 CMCTR模型考虑控制量的质量和能量平衡,所有泄漏路径的内部泄漏条件,排放阀运动以及力和力矩平衡。对于仿真结果,相对于轴功率估算电动机效率,并相对于节能模式和功率模式的压缩量获得整个周期内的压力。对于这些模式的调制,可以获得CMCTR的最佳效率。 (C)2015 Elsevier Ltd和IIR。版权所有。

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