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首页> 外文期刊>Journal of Electronic Materials >Comparison of two-phase electronic cooling using free jets and sprays
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Comparison of two-phase electronic cooling using free jets and sprays

机译:使用自由射流和喷雾进行两相电子冷却的比较

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摘要

The performances of free jets and sprays were compared experimentally in cooling a 12.7× 12.7 mm{sup}2 chip in order to ascertain the effects of key parameters on cooling performance and to develop correlations for critical heat flux (CHF) whichare applicable to dielectric coolants. Increasing liquid flow rate and subcooling increased CHF for both cooling schemes. At high subcooling, comparable CHF values were attained with both for equal flow rates. However, spray cooling produced much greaterCHF at low subcooling than did jet cooling. This phenomenon was found to be closely related to the hydrodynamic structure of the liquid film deposited upon the chip surface. In jet cooling, the film (wall jet), being anchored to the surface only at theimpingement zone, was separated from the surface during vigorous boiling due to the momentum of vapor normal to the surface. The individual spray drops were more effective at securing liquid film contact with the surface at low subcooling, which delayedCHF relative to jet cooling with the same flow rate. This paper also discusses practical concerns associated with implementation of each cooling scheme including system reliability and the risk associated with premature CHF during chip power transients.
机译:为了确定关键参数对冷却性能的影响并建立适用于电介质冷却剂的临界热通量(CHF)的相关性,在冷却12.7×12.7 mm {sup} 2芯片时,对自由射流和喷雾的性能进行了实验比较。 。对于两种冷却方案,增加液体流速和过冷都会增加CHF。在较高的过冷度下,在相同的流速下,两者均可获得可比的CHF值。但是,喷雾冷却在低过冷度下产生的CHF比喷射冷却大得多。发现该现象与沉积在芯片表面上的液膜的流体动力学结构密切相关。在喷射冷却中,仅在冲击区域处锚定在表面上的薄膜(壁喷射)在剧烈沸腾期间由于垂直于表面的蒸气动量而从表面分离。各个喷雾液滴在低过冷度下确保液膜与表面的接触更有效,相对于相同流速的射流冷却,CHF延迟了。本文还讨论了与每种冷却方案的实施相关的实际问题,包括系统可靠性以及芯片功率瞬变期间与过早CHF相关的风险。

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