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Performance investigation of plain and finned tube evaporatively cooled heat exchangers

机译:翅片管和翅片管蒸发冷却换热器的性能研究

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摘要

The performance of two evaporatively cooled heat exchangers is investigated under similar operating conditions of air flow rates and inlet hot water temperatures. The heat exchangers are plain and plate-finned circular tube types which occupy the same volume. Spray water, which is circulated in a closed circuit, is injected onto the exposed surfaces of the tubes and fins. The contact between air and spray water results in evaporative heat transfer. The tubes are copper, 10 mm o.d. The finned configuration is constructed by introducing 0.5 mm thick copper plates between the tubes, with a total area ratio of four. A substantial increase in heat transfer takes place for the plate-finned tubes. The increase is 92-140% for air velocities from 1.66 to 3.57 m s~(-1). A model is used to calculate the thermal performance of the plain and finned tubes assuming a constant spray water temperature in the heat exchanger. The we-finned surfaces show low fin efficiency compared with dry surfaces. An energy index defined as the ratio of volumetric thermal conductance to air pressure drop per unit length is found to be close for the two heat exchangers. This reveals higher thermal utilisation of the occupied volume by the finned tubes with the same energy index.
机译:在空气流量和入口热水温度相似的工作条件下,研究了两个蒸发冷却的热交换器的性能。热交换器为平面翅片式和板翅式圆形管,占据相同的体积。在封闭回路中循环的喷雾水被注入到管子和散热片的裸露表面上。空气和喷水之间的接触会导致蒸发传热。管是外径为10毫米的铜。通过在管之间引入0.5 mm厚的铜板来构造翅片结构,总面积比为4。板翅管的传热大大增加。从1.66到3.57 m s〜(-1)的空气速度增加92-140%。假设热交换器中的喷水温度恒定,将使用一个模型来计算普通管和翅片管的热性能。与干燥表面相比,我们翅片表面显示出较低的翅片效率。发现两个热交换器的能量指数定义为每单位长度的体积热导与空气压降之比。这表明具有相同能量指数的翅片管对占用体积的热利用率更高。

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