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STABILITY ANALYSIS AND NETWORK DESIGN OF EVAPORATIVE MICRO- CHANNELS

机译:蒸发微通道的稳定性分析和网络设计

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During the operation of evaporative micro-channels, flow instability could be encountered. This phenomenon usually occurs when the Bond number of the fluid in the micro-channels is less than unity, so that a growing bubble is severely squeezed in the narrow channel and expands towards both upstream and downstream simultaneously. To reduce the flow instability, installation of an inlet orifice at the upstream, or making the micro-channel expanding at the downstream are found to be effective. An instability model for micro-channels was established, which takes into account the effects of both the inlet orifice and the channel expansion. Experiments of evaporating water micro system of 48 parallel micro-channels with 353 μm hydraulic diameter were conducted. The instability criterion of evaporative micro-channels with the effects of inlet orifice and expanding channel area are validated. Furthermore, to assist the general design of complex micro-channel network systems, a computational scheme is developed.
机译:在蒸发微通道的操作过程中,可能会遇到流动不稳定性。当微通道中的流体的键数小于1时,通常会发生这种现象,从而使正在生长的气泡在狭窄的通道中被严重挤压,并同时向上游和下游膨胀。为了减少流动的不稳定性,发现在上游安装进口孔或使微通道在下游扩展是有效的。建立了微通道的不稳定性模型,该模型考虑了入口孔和通道扩展的影响。进行了48条水力直径为353μm的平行微通道蒸发水微系统的实验。验证了蒸发微通道的失稳准则,其受入口孔和扩大的通道面积的影响。此外,为了协助复杂的微通道网络系统的总体设计,开发了一种计算方案。

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