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An experimental study of the influence of orientation on water condensation of a thermoelectric cooling heatsink

机译:取向对热电冷却散热器水冷凝影响的实验研究

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摘要

An experimental investigation of thermoelectric cooling using a Peltier element to dehumidify moist air under controlled, high relative humidity conditions has been conducted. The influence of the cold side heatsink orientation on the water collection rate was experimentally determined. One finned heatsink-fan combination was used on the heat rejection side. On the cold side flat plates, uncoated and Polytetrafluoroethylene (PTFE) coated, a fanned plate with four fins, and a heatsink having 15 fins were used. The PTFE coated plate showed up to a 30% higher water collection rate (expressed in L/kWh) compared to the uncoated flat plate that has the same surface area. Clearing the surfaces—removing all condensate every hour—increased the water collection rate by up to 18% for the flat plates. The finned heatsink and the PTFE coated flat plate were used for the orientation experiments. The finned heatsink was rotated from 0° to 90°, as well as tilted from 0° to 90° (vertical to horizontal). To investigate the effect of surface orientation on a single-side collection surface in isolation, the PTFE coated flat plate was tilted from 15° to 165° in 15° increments. The highest collection rates are found for a rotation angle of 60° and a tilted angle of 75° for the finned heatsink, 0.249 L/kWh and 0.221 L/kWh respectively. The highest measured collection rate for the PTFE coated plate is 0.319 L/kWh at an orientation of 15° from the horizontal. Experiments for the horizontal orientation of the finned heatsink show that once the spaces between the fins are completely filled with water the collection rate drops by an order of magnitude, from 0.203 L/kWh to 0.026 L/kWh. The experiments show that the orientation of a thermoelectric heatsink should be considered when optimizing the water collection rates under high humidity conditions for thermoelectric cooling heatsinks.
机译:已经进行了使用珀尔帖元件对受控的高相对湿度条件下的潮湿空气进行除湿的热电冷却的实验研究。实验确定了冷侧散热器方向对集水率的影响。在散热侧使用了一个翅片散热器-风扇组合。在冷侧平板上,使用未涂覆的和聚四氟乙烯(PTFE)涂覆的,带有四个散热片的扇形板以及具有15个散热片的散热器。与具有相同表面积的未涂层平板相比,PTFE涂层板集水率最高提高了30%(以L / kWh表示)。清理表面(每小时清除所有冷凝水)可使平板的集水率提高多达18%。翅片散热器和PTFE涂层平板用于定向实验。翅片散热器从0°旋转到90°,并从0°倾斜到90°(垂直到水平)。为了单独研究表面取向对单面收集表面的影响,将PTFE涂层平板以15°的增量从15°倾斜到165°。对于翅片散热器,旋转角度为60°时的最高收集率和倾斜角度为75°时的最高收集率分别为0.249 L / kWh和0.221 L / kWh。 PTFE涂层板的最高测量收集率是在与水平面成15°的方向上为0.319 L / kWh。翅片散热器水平方向的实验表明,一旦翅片之间的空间完全充满水,收集率就会下降一个数量级,从0.203 L / kWh下降到0.026 L / kWh。实验表明,在高湿度条件下优化热电冷却散热器的集水率时,应考虑热电散热器的方向。

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