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Experimental Analysis of the Effects of Particulate Fouling on Heat Exchanger Heat Transfer and Air-Side Pressure Drop for a Hybrid Dry Cooler

机译:混合式干冷器颗粒结垢对换热器传热及空侧压降影响的实验分析

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摘要

It is well known that significant fouling by particulate matter can have a deleterious effect on the performance of enhanced surface heat exchangers, and the same is true for hybrid heat exchangers. Hybrid heat exchangers are heat exchangers which are typically run in dry mode to reject heat. When the ambient conditions require more heat rejection than can be provided by sensible heat transfer a water pump is turned on and water flows over the fins and the evaporation of water provides a further cooling effect. Fouling in dry mode operation is physically similar to that of air-cooled heat exchangers, but in evaporative mode the flow of the water over the coil eliminates the impact of fouling. A hybrid dry cooler heat exchanger of 60 cm x 60 cm frontal area has been installed in a well-instrumented wind tunnel to measure the heat exchanger’s performance. Hot water flows through the coil to provide the load, and air flows over the coil to provide cooling. During evaporative mode operation another stream of water flows over the outside face of the coil, adhering mainly to the louvered fins. The louvered fins are specially designed for optimized water flow during wetting mode. The fins are made of aluminum, the tubes are copper, and protection against corrosion is realized by a special E-coating. This coil has been tested clean and fouled with ASHRAE standard dust, for both dry and wet operation. Results are presented for the air side pressure drop and overall heat transfer conductance of the coil under all conditions for which 50% increases in air-side pressure drop are found under heavy fouling. The influence of fouling on heat transfer is small. Also, using the wetting water to wash the fouling off the coil is investigated, and found to be of some limited utility.
机译:众所周知,颗粒物质造成的大量污垢可能对增强型表面热交换器的性能产生不利影响,混合型热交换器也是如此。混合热交换器是通常以干燥模式运行以排出热量的热交换器。当环境条件要求的散热量超过显热传递所能提供的散热能力时,打开水泵,水流过散热片,水的蒸发会提供进一步的冷却效果。干式运行中的结垢在物理上类似于风冷热交换器的结垢,但在蒸发模式下,盘管上的水流消除了结垢的影响。在仪表良好的风洞中安装了一个正面面积为60 cm x 60 cm的混合式干冷器热交换器,以测量热交换器的性能。热水流过盘管以提供负载,空气流过盘管以提供冷却。在蒸发模式操作期间,另一股水流流过盘管的外表面,主要附着在百叶窗式散热片上。百叶窗式散热片专门设计用于在润湿模式下优化水流。散热片由铝制成,管子由铜制成,并通过特殊的E涂层实现防腐蚀保护。该线圈已经过清洁测试,并被ASHRAE标准粉尘污染,适用于干式和湿式操作。给出了在严重结垢时空气侧压降增加50%的所有条件下,空气侧压降和盘管的整体传热传导率的结果。结垢对热传递的影响很小。另外,还研究了使用润湿水将线圈上的污垢冲洗掉,发现其用途有限。

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