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Wet air side performance of louver fin automotive evaporators

机译:百叶窗翅片汽车蒸发器的湿空气侧性能

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Over the course of the past decade, the automotive industry has made efforts to reduce the depth of the brazed aluminum, louver fin evaporators typically used in the air conditioning system for automobiles by increasing their compactness. Increasing fin and louver densities have led to the possibility of condensate affecting the air side performance of automotive evaporators. Condensate can "bridge" the space between two adjacent fins or louvers. Condensate bridging of the fins or louvers can alter the flow of air through the evaporator, causing a change in the heat transfer and friction characteristics. This study attempts to quantify these changes and determine which parameters will have an impact on them. Wind tunnel tests measuring the air side sensible heat transfer coefficient and pressure drop were conducted to examine how the air side heat transfer and friction characteristics of automotive evaporators are changed by the presence of condensate. These tests were performed on evaporators with fully dry and fully wet air side surfaces. It was found that there exists a critical louver pitch at which bridging of the louvers by condensate becomes so severe that the wet hosuffers a significant reduction from the dry value. The value of L{sub}p, crit lies somewhere between 1.1 and 1.3 mm when Θ= 30°. An evaporator with drainage channels on the air side tube surface has a 30% higher wet to dry pressure drop ratio than an evaporator with a smooth air side tube surface, indicating that the drainage channels cause an increase in condensate bridging of the fins. The hydrophilic coating utilized in this study increased h{sub}o,wet by 25% over an uncoated evaporator.
机译:在过去十年的过程中,汽车行业努力减少钎焊铝的深度,百叶窗蒸发器通常在空调系统中用于汽车的压缩性。增加鳍和百叶窗密度导致了影响汽车蒸发器的空气侧性能的凝结物的可能性。冷凝水可以“桥接”两个相邻翅片或百叶窗之间的空间。翅片或百叶窗的冷凝物桥接可以通过蒸发器改变空气流动,从而导致传热和摩擦特性的变化。本研究试图量化这些变化,并确定哪些参数对它们产生影响。进行风隧道测量空气侧的显色传热系数和压降,以检查如何通过凝结物的存在改变汽车蒸发器的空气侧传热和摩擦特性。这些测试在具有完全干燥和完全湿空气侧表面的蒸发器上进行。有发现存在一个临界百叶窗间距,即凝结物的百叶窗的桥接变得如此严重的是,湿呼吸瘤从干价显着降低。 L {Sub} P的值,CRIT在θ= 30°时位于1.1和1.3 mm之间。在空气侧管表面上具有排水通道的蒸发器具有比具有光滑空气侧管表面的蒸发器更高的湿到干压降比,表明排水通道导致鳍片的冷凝水桥接增加。本研究中使用的亲水涂层在未涂覆的蒸发器上增加了25%的H {亚} O,润湿25%。

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