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首页> 外文期刊>International Journal of Thermal Sciences >Heat transfer correlation for intermittent spray impingement: A dynamic approach
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Heat transfer correlation for intermittent spray impingement: A dynamic approach

机译:间歇喷雾撞击的传热相关性:一种动态方法

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The work presented here investigates a new approach in the development of heat transfer empirical correlations for intermittent spray impingement, based on simultaneous measurements of the spray droplets characteristics and the surface thermal behavior. Conventionally, heat transfer correlations for spray impingement do not consider the temporal variations of droplets characteristics. However, in applications using intermittent sprays (internal combustion engines, cryogen spray cooling or microprocessor thermal management), the spray transient behavior suggests that heat transfer predictions may be improved using a dynamic approach. Additionally, the impact of multiple consecutive injections on a heated surface implies a certain degree of interaction, depending on the frequency of their intermittency. If the time between consecutive injections is shorten, the result is the formation of a liquid film which mitigates phase-change and privileges a single-phase heat transfer over a two-phase. This suggests that heat transfer correlations for spray impingement should take the spray unsteadiness and the multiple injections interaction degree into account. The dynamic approach here suggested presupposes the identification of systematic periods characterizing the spray dynamic behavior and, once identified, the development of a heat transfer correlation for each period. The analysis ends with a comparison between the dynamic heat transfer correlation with a correlation obtained using the conventional approach and a significant improvement in heat transfer predictions is achieved if the spray dynamic nature is considered.
机译:此处介绍的工作基于对喷雾液滴特性和表面热行为的同时测量,研究了间歇性喷雾撞击传热经验相关性发展的新方法。常规地,用于喷雾撞击的传热相关性不考虑液滴特性的时间变化。但是,在使用间歇喷雾的应用中(内燃机,制冷剂喷雾冷却或微处理器热管理),喷雾的瞬态行为表明可以使用动态方法来改善传热预测。另外,多次连续注射对加热表面的影响取决于一定程度的相互作用,这取决于它们间断的频率。如果缩短连续注射之间的时间,则结果是形成了液膜,该液膜减轻了相变,使单相传热优先于两相。这表明,喷雾冲击的传热相关性应考虑喷雾不稳定和多次喷射的相互作用程度。在此建议采用动态方法,前提是要确定表征喷雾动态行为的系统周期,一旦确定,就应确定每个周期的传热相关性。该分析以动态传热相关性与使用常规方法获得的相关性之间的比较结束,并且如果考虑到喷雾的动态特性,则可以显着改善传热预测。

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