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EXPERIMENTAL AND CFD INVESTIGATION OF R410A DISTRIBUTORS FOR AIR CONDITIONER

机译:R410A空调器分配器的实验和CFD研究

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摘要

In order to obtain a higher heat transfer coefficient of refrigerant flow, the diameter of tubes tends to be smaller and smaller, which leads to large pressure drop of the refrigerant flow. Therefore, multiple numbers of parallel refrigerant passages are employed by using distributors. It is very important to distribute the two-phase refrigerant evenly into each tube, otherwise the thermal performance is significantly deteriorated. The performance reduction by flow mal-distribution could be as large as 20-25%. The goal of this paper is to investigate the influence of different configurations to the performance of refrigerant distributors by experiments and computational fluid dynamic code. The effects of mass flow rate and quality of distributor inlet on the characteristics were also quantitatively considered. In this study, an experiment test rig was built to measure the mass flow rate and quality of four circuits after using distributors under different conditions respectively. Refrigerant R410A was used as working fluids. Three classic types (jet, cyclone and reservoir) of distributors with four paths were manufactured and tested under relevant operating conditions. The inlet temperature was 4°C, mass flow rate range was 50-100 kg/h and the quality range was 0.1-0.3. Experimental results show that the maximum deviation of mass flow rate for jet, cyclone and reservoir type is 13.0%, 21.6% and 10.9%, respectively; the maximum deviation of quality was 0.08, 0.10 and 0.05, respectively. In addition, the standard deviation of mass flow rate and quality over four paths were selected to evaluate the performance of different type distributors. The results show that the performance of jet and reservoir are better than cyclone. The flow behavior of two-phase refrigerant such as phase distribution and separation phenomena was studied by Computational Fluid Dynamics (CFD). The flow pattern of inlet for R410A was investigated and used in the present model. The results in the present model show good and reasonable approximation with experimental data which validate the CFD simulation. CFD simulation analysis elucidates the mechanics which shows how the configuration and operation conditions affect the refrigerant distribution.
机译:为了获得更高的制冷剂流的热传递系数,管的直径趋于越来越小,这导致制冷剂流的压降大。因此,通过使用分配器采用了多个平行的制冷剂通道。将两相制冷剂均匀分配到每个管中非常重要,否则热性能会大大降低。由于流量分布不均而导致的性能下降可能高达20-25%。本文的目的是通过实验和计算流体动力学代码研究不同配置对制冷剂分配器性能的影响。还定量考虑了质量流量和分配器入口质量对特性的影响。在这项研究中,建立了一个实验测试台,以分别在不同条件下使用分配器后测量四个回路的质量流量和质量。制冷剂R410A用作工作流体。在相关的工作条件下,制造并测试了具有四个路径的三种经典类型(喷射,旋风和储罐)分配器。入口温度为4℃,质量流量范围为50-100kg / h,质量范围为0.1-0.3。实验结果表明,射流,旋风分离器和储层类型的质量流量最大偏差分别为13.0%,21.6%和10.9%。质量的最大偏差分别为0.08、0.10和0.05。此外,选择了四个路径上质量流量和质量的标准偏差,以评估不同类型分配器的性能。结果表明,射流和储层的性能优于旋风分离器。通过计算流体动力学(CFD)研究了两相制冷剂的流动行为,例如相分布和分离现象。研究了R410A的进口流型并在本模型中使用。在本模型中的结果显示出与实验数据良好且合理的近似值,这些数据验证了CFD模拟。 CFD仿真分析阐明了力学原理,该力学原理说明了配置和运行条件如何影响制冷剂分配。

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  • 来源
    《International journal of air-conditioning and refrigeration》 |2014年第2期|1440002.1-1440002.11|共11页
  • 作者单位

    Institute of Refrigeration and Cryogenics Shanghai Jiaotong University, No. 800 DongChuan Road Shanghai 200240, P. R. China;

    Institute of Refrigeration and Cryogenics Shanghai Jiaotong University, No. 800 DongChuan Road Shanghai 200240, P. R. China;

    Institute of Refrigeration and Cryogenics Shanghai Jiaotong University, No. 800 DongChuan Road Shanghai 200240, P. R. China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Distributor; two-phase; experiment; CFD; R410A;

    机译:发行人;两相实验;差价合约R410A;

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