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Flow Boiling Instabilities in Microchannels and Means for Mitigation by Reentrant Cavities

机译:微通道中的流动沸腾不稳定性和进入腔的缓解方法

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摘要

The ability of reentrant cavities to suppress flow boiling oscillations and instabilities in microchannels was experimentally studied. Suppression mechanisms were proposed and discussed with respect to various instability modes previously identified in microchannels. It was found that structured surfaces formed inside channel walls can assist mitigating the rapid bubble growth instability, which dominates many systems utilizing flow boiling in microchannels. This, in turn, delayed the parallel channel instability and the critical heat flux (CHF) condition. Experiments were conducted using three types of 200 × 253 μm~2 parallel microchannel devices: with reentrant cavity surface, with interconnected reentrant cavity surface, and with plain surface. The onset of nucleate boiling, CHF condition, and local temperature measurements were obtained and compared in order to study and identify flow boiling instability.
机译:实验研究了凹腔抑制流动沸腾振荡和微通道不稳定性的能力。针对先前在微通道中发现的各种不稳定模式,提出并讨论了抑制机制。已经发现,在通道壁内形成的结构化表面可以帮助减轻气泡快速增长的不稳定性,这在许多利用微通道中的流动沸腾的系统中占主导地位。反过来,这延迟了平行通道的不稳定性和临界热通量(CHF)条件。实验使用三种类型的200×253μm〜2平行微通道设备进行:凹腔表面,互连的凹腔表面和平坦表面。获得并比较了核沸腾的发生,CHF条件和局部温度的测量值,以便研究和确定流沸腾的不稳定性。

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