首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Issues affecting the reliability of dynamic dip testing as a method to assess the condensate drainage behavior from the air-side surface of dehumidifying heat exchangers
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Issues affecting the reliability of dynamic dip testing as a method to assess the condensate drainage behavior from the air-side surface of dehumidifying heat exchangers

机译:影响动态浸入测试作为评估除湿热交换器空气侧冷凝水排放行为方法的可靠性的问题

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For years dynamic dip testing has been working as a simple, fast, and easy method to assess the condensate drainage behavior for dehumidifying heat exchangers, because it was found that a heat exchanger holding more water in a dip test also tends to hold more condensate in a wind-tunnel experiment. This work addresses several issues which can affect the reliability of this method but have been previously overlooked. Dip test results as well as retention visualization for 22 heat exchanger specimens with different configurations and surface wettability are reported and discussed with relevant dip test and wind-tunnel experimental data available in the literature. The data demonstrate that when dealing with round-tube heat exchangers with unusual wettability, dip test can sometimes give an evaluation which is counter to the results in the wind-tunnel. In terms of surface wettability, receding contact angle (0(R)) is found to be the primary factor affecting a dip test, while the contact angle hysteresis (0(A) - 0(R)) becomes more important in a condensing environment. It has also been observed that dip test measurement is very sensitive to the "dipping rate", or the speed at which a specimen is withdrawn from the water reservoir. The differences in condensation and drainage mechanisms between wind-tunnel experiments and dip tests are elaborated in this paper, and a proper and effective use of dynamic dip testing is recommended. (C) 2008 Elsevier Inc. All rights reserved.
机译:多年来,动态浸入测试一直是评估除湿换热器冷凝水排放行为的一种简单,快速,简便的方法,因为发现在浸入测试中容纳更多水的换热器也趋向于容纳更多的冷凝水。风洞实验。这项工作解决了一些可能影响此方法可靠性的问题,但先前已被忽略。报告并讨论了22种具有不同配置和表面润湿性的热交换器样品的浸入测试结果以及保留率的可视化,并与文献中提供的相关浸入测试和风洞实验数据进行了讨论。数据表明,当处理具有异常润湿性的圆管热交换器时,浸入试验有时会给出与风洞中的结果相反的评估结果。就表面润湿性而言,发现接触角后退(0(R))是影响浸入测试的主要因素,而接触角滞后(0(A)-0(R))在冷凝环境中变得更加重要。还已经观察到,浸入测试的测量对“浸入速率”或从水箱中取出样品的速度非常敏感。阐述了风洞试验与倾角试验在凝结和排水机理上的差异,并建议正确有效地使用动态倾角试验。 (C)2008 Elsevier Inc.保留所有权利。

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