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Application of interleaved circuitry to improve evaporator effectiveness and COP of a packaged AC system

机译:交错电路在提高储存AC系统的蒸发器效能和COP中的应用

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摘要

Highly constrained air flow pathways as experienced in tightly packaged air conditioning systems result in air flow maldistribution problems in the evaporators. The interleaved circuitry method, where the refrigerant from a circuit with high air flow is routed to a circuit with low air flow and vice-versa, has been investigated to passively reduce the air maldistribution effect. Air velocity measurements have been conducted in psychrometric chambers and the measurement locations have been defined by the log-Tchebycheff rule. The velocity profile was obtained by Lagrange Interpolation method as percentage values. The performance of the interleaved circuitry method was compared to the baseline circuitry at different operating conditions. The results show that the interleaved circuitry method uniforms the superheat of the individual circuits and improves the cooling capacity and COP by up to 16.6% and 12.4%, respectively. Furthermore, the tuned model predicted the evaporator cooling capacity within a mean absolute error of approximately 10%. (C) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:在紧密包装的空调系统中经验丰富的气流途径产生高度约束的空气流动途径导致蒸发器中的空气流动法分布问题。已经研究了从具有高空气流量的电路的制冷剂的交织电路方法,并研究了具有低空气流动的电路,并反应地被研究过,以便被动减少空气发出效果。在心理仪腔室中进行了空气速度测量,并通过Log-Tchebycheff规则定义了测量位置。通过拉格朗日插值方法获得速度曲线作为百分比值。将交织电路方法的性能与不同操作条件的基线电路进行比较。结果表明,交错电路方法均匀地均匀,分别将冷却能力和COP的冷却能力提高至多16.6%和12.4%。此外,调谐模型预测了大约10%的平均绝对误差内的蒸发器冷却能力。 (c)2017年Elsevier Ltd和IIR。版权所有。

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