表面老化对饱和池沸腾换热重复性影响的研究

A. Elkholy, R. Kempers
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引用次数: 1

摘要

表面条件是影响池沸腾换热性能的主要参数,即传热系数(HTC)和临界热流密度(CHF)。许多表面改性方法已经被开发和研究,通过创建纳米/微尺度的表面拓扑来诱导更多可以在下壁过热时激活的成核位点,从而改善沸腾传热性能,从而改善HTC。本研究通过可重复性研究,探讨了沸腾表面老化对池沸腾性能提高的影响。首先,详细介绍了一种具有较大沸腾表面积的高精度池沸腾装置的设计、研制和标定。该装置随后用于研究表面氧化和污染对裸铜表面池沸腾性能的影响。试验在饱和条件下使用常压去离子水进行。这些表面测试了7次,总共测试了40个小时。实验结果表明,表面老化对HTC有显著的影响,与新鲜制备的表面相比,HTC提高了22%。然而,它对CHF的影响很小,需要至少25小时的测试才能获得5%以内的可重复结果。
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Investigation of Surface Aging Effects on the Repeatability of Saturated Pool Boiling Heat Transfer
Surface condition has been shown to be the main parameter impacting pool boiling heat transfer performance, namely heat transfer coefficient (HTC) and the critical heat flux (CHF). Many surface modification methods have been developed and studied to improve boiling heat transfer performance by creating nano/micro-scale surface topologies to induce more nucleation sites that can be activated at lower wall superheat, hence improving the HTC.In the current work, the effect of the boiling surface aging on pool boiling performance enhancement is investigated through a repeatability study. First, the design, development, and calibration of a high-accuracy pool boiling apparatus with a relatively large boiling surface area is detailed. This apparatus was subsequently used to investigate the effect of the surface oxidation and contamination on the pool boiling performance for bare copper surfaces. Tests were performed at the saturated conditions using deionized water at atmospheric pressure. The surfaces were tested seven times which amounted to 40 hours of testing. The experiment results demonstrated that the surface aging had a significant effect on the HTC, which reached up to 22% of improvement compared to the freshly prepared surface. However, its effect on CHF is minimal with at least 25 hours of tests are required to get repeatable results within 5%.
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