首页> 外文会议>ASME Heat Transfer Conference >EFFECTS OF FORCED WALL VIBRATION ON THE ONSET OF FLOW INSTABILITY AND CRITICAL HEAT FLUX IN UNIFORMLY-HEATED MICROCHANNELS
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EFFECTS OF FORCED WALL VIBRATION ON THE ONSET OF FLOW INSTABILITY AND CRITICAL HEAT FLUX IN UNIFORMLY-HEATED MICROCHANNELS

机译:强制壁振动对均匀微通道致态稳定性和临界热通量发作的影响

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Forced convection using single-phase liquid water is a common cooling mechanism utilized in high power density engineering applications. Typically, design specifications require the coolant to remain subcooled throughout the heat transfer channel to ensure adequate cooling of the heated surfaces. Despite these planned steady state parameters, accident or transient conditions can cause boiling to take place within the channels. For this reason, it is important in the design and operation of heated channels to understand and predict the onset of boiling and two-phase flow instabilities that can lead to channel dryout and potential overheating and/or burnout of the heat transfer system.
机译:使用单相液体水的强制对流是在高功率密度工程应用中使用的常见冷却机制。通常,设计规范要求冷却剂在整个传热通道中保持过冷却,以确保加热表面的充分冷却。尽管有这些计划稳态参数,但事故或瞬态条件可能导致沸腾发生在通道内。因此,在加热通道的设计和运行中重要的是理解和预测沸腾和两相流动不稳定性的开始,这可以导致通道干扰和传热系统的潜在过热和/或烧坏。

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