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Performance evaluation and parametric studies on variable nozzle ejector using R134A

机译:使用R134A的可变喷嘴喷射器的性能评估和参数研究

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Computational fluid dynamics of variable nozzle ejector has been studied to determine the optimum nozzle exit position for reliable ejector cooling cycle operations. The flow rates of primary and secondary stream were varied to obtain the optimum entrainment ratio under different ranges of operating conditions.The refrigerant R134a was chosen based on the merit of its environmental and performance characteristics, the refrigerant was chosen because currently is used widely in air conditioning system. It was found that the computational fluid dynamics showed that the optimum positioning of nozzle exit position, which was based on the parameters such as pressure inlet variation the temperature inlet. The results obtained after the optimization of the results showed that the optimum nozzle exit position was found at 3?mm from the mixing chamber inlet when the operating conditions pressure inlet, secondary pressure inlet, primary temperature inlet and outlet pressure were at (18bar,6bar,373K,and5.6bar) respectively. Similarly, the range of entrainment ratio was varied between0.24?1.283at a constant area ratio, and at varied operating conditions.
机译:已经对可变喷嘴喷射器的计算流体动力学进行了研究,以确定可靠的喷射器冷却循环操作的最佳喷嘴出口位置。在不同的工况范围内,改变一次和二次流的流速以获得最佳的夹带率。基于环境和性能特点的优点选择制冷剂R134a,之所以选择该制冷剂是因为它目前在空气中得到了广泛使用调节系统。发现计算流体动力学表明,喷嘴出口位置的最佳定位是基于压力入口变化,温度入口等参数的。优化结果后的结果表明,当工作条件压力入口,二次压力入口,一次温度入口和出口压力为(18bar,6bar)时,最佳喷嘴出口位置位于距混合室入口3?mm处。 ,373K和5.6bar)。类似地,在恒定的面积比下和在变化的操作条件下,夹带比的范围在0.24〜1.283之间变化。

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