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Experimental investigations on flow boiling heat transfer in plate heat exchanger at low mass flux condition

机译:低通量条件下板式换热器内流沸腾换热的实验研究

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In this paper, flow boiling heat transfer in a plate heat exchanger at the low mass flux condition was investigated for low temperature lift heat pump applications. The effects of vapor quality, heat flux, evaporation pressure, and mass flux were studied. The current study shows that the influence of convective boiling heat transfer is suppressed under given test conditions, and the effect of boiling heat transfer was dominant. This is evident from the insignificant effect of vapor quality on flow boiling heat transfer coefficient. It showed a dominant effect of nucleate boiling heat transfer. When heat flux was increased, the flow boiling heat transfer coefficient increased which is an indication of nucleate boiling heat transfer. Excess temperature was also studied, which closely relates to nucleate boiling regime. As evaporation pressure was decreased, it became easier for vapor bubbles to generate, which can be explained with a lower excess temperature. Furthermore, a more rigorous bubble movement at a low excess temperature range involved in this study enhanced heat transfer across the surface, so that flow boiling heat transfer coefficient increased. For the effect of mass flux, the flow boiling heat transfer coefficient increased slightly as the mass flux was increased. This means that convective boiling heat transfer is present, but it just played a minor role in the evaporation heat transfer because of a low fluid mass flux.
机译:在本文中,针对低温提升热泵应用,研究了在低质量通量条件下板式换热器中的沸腾传热。研究了蒸汽质量,热通量,蒸发压力和质量通量的影响。当前的研究表明,在给定的测试条件下,对流沸腾传热的影响得到抑制,而沸腾传热的影响最为明显。从蒸汽质量对流动沸腾传热系数的微不足道的影响中可以明显看出这一点。它显示了核沸腾传热的主要作用。当热通量增加时,流动沸腾传热系数增加,这是核沸腾传热的指示。还研究了温度过高,其与成核沸腾状态密切相关。随着蒸发压力的降低,气泡变得更容易产生,这可以用较低的过高温度来解释。此外,在这项研究中,在较低的过低温度范围内更严格的气泡运动增强了整个表面的热传递,从而使流动沸腾的热传递系数增加。对于质量通量的影响,随着质量通量的增加,沸腾沸腾换热系数略有增加。这意味着存在对流沸腾传热,但由于流体质量通量较低,因此在蒸发传热中仅扮演了次要角色。

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