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The effects of ejector geometry parameter and refrigerant charge amount on an ejector-expansion refrigeration system

机译:喷射器几何参数和制冷剂电荷量对喷射器 - 膨胀制冷系统的影响

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摘要

This paper presents an experimental investigation on variations of evaporating temperature (t(e)) with different configuration parameters, including the nozzle throat diameter of ejector (D-t) and the capillary tube length (L-c), in an ejector-expansion refrigeration cycle (ERC) system. In addition, effects of refrigerant charge amount (CA) have been investigated at the different D-t and L-c based on the ERC system. The results show that a reasonable matching between CA and D-t or between CA and L-c can adjust the t(e) while maintaining the mass flow rate of the fluid through the evaporator within an appropriate range. Furthermore, the effects of D-t and L-c on the ejector performances at the different CA have been studied. The results show that the performances of ejector are strongly affected by these parameters. The meaningful results obtained here may serve as good guidelines for developing the ejector expansion refrigeration technologies applied in practical refrigeration systems.
机译:本文提出了一种关于具有不同配置参数的蒸发温度(T(e))的变化的实验研究,包括喷射器(DT)和毛细管长度(LC)的喷嘴喉部直径(ERC ) 系统。 此外,基于ERC系统,已经在不同的D-T和L-C处研究了制冷剂电荷量(CA)的影响。 结果表明,CA和D-T之间或CA和L-C之间的合理匹配可以调节T(e),同时将流体的质量流量通过蒸发器保持在适当的范围内。 此外,研究了D-T和L-C对不同CA的喷射器性能的影响。 结果表明,喷射器的性能受这些参数的强烈影响。 这里获得的有意义的结果可以作为开发在实际制冷系统中应用的喷射器膨胀制冷技术的良好指导。

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