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Spray cooling with HFC-134a and HFO-1234yf for thermal management of automotive power electronics.

机译:使用HFC-134a和HFO-1234yf进行喷雾冷却,用于汽车电力电子设备的热管理。

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摘要

This study aims to experimentally investigate the spray cooling characteristics for active two-phase cooling of automotive power electronics. Tests are conducted on a small-scale, closed loop spray cooling system featuring a pressure atomized spray nozzle. Two types of refrigerants, HFC-134a (R-134a) and HFO-1234yf, are selected as the working fluids. The test section (heater), made out of oxygen-free copper, has a 1-cm2 plain, smooth surface prepared following a consistent procedure, and would serve as a baseline case. Matching size thick film resistors, attached onto the copper heaters, generate heat and simulate high heat flux power electronics devices. The tests are conducted by controlling the heat flux in increasing steps, and recording the corresponding steady-state temperatures to obtain cooling curves. The working fluid is kept at room temperature level (22°C). Performance comparisons are made based on heat transfer coefficient (HTC) and critical heat flux (CHF) values. Effects of spray characteristics and liquid flow rates on the cooling performance are investigated with the selected coolants. Three types of commercially available nozzles that generate full-cone sprays with fine droplets are utilized in the tests. Effect of liquid flow rate is evaluated varying flow rates at 2, 3, 4 ml/s. The experimental results obtained from this study provide a framework for spray cooling performance with the current and next-generation refrigerants aimed for advanced thermal management of automotive power electronics.
机译:这项研究旨在通过实验研究汽车功率电子器件主动两相冷却的喷雾冷却特性。测试是在具有压力雾化喷嘴的小规模,闭环喷雾冷却系统上进行的。选择两种制冷剂HFC-134a(R-134a)和HFO-1234yf作为工作流体。由无氧铜制成的测试部分(加热器)具有1平方厘米的平整光滑表面,该表面按照一致的程序进行制备,可以作为基准案例。匹配大小的厚膜电阻器连接到铜加热器上,会产生热量并模拟高热通量电力电子设备。通过逐步控制热通量并记录相应的稳态温度以获得冷却曲线来进行测试。工作流体保持在室温水平(22℃)。根据传热系数(HTC)和临界热通量(CHF)值进行性能比较。使用所选的冷却剂研究了喷雾特性和液体流速对冷却性能的影响。在测试中使用了三种可产生带有细小液滴的全圆锥形喷雾的商用喷嘴。评估液体流速的影响,以2、3、4 ml / s的流速变化。从这项研究中获得的实验结果为当前和下一代制冷剂的喷雾冷却性能提供了框架,这些制冷剂旨在实现汽车电力电子设备的高级热管理。

著录项

  • 作者单位

    University of North Texas.;

  • 授予单位 University of North Texas.;
  • 学科 Educational technology.
  • 学位 M.S.
  • 年度 2015
  • 页码 73 p.
  • 总页数 73
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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