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首页> 外文期刊>International Journal of Heat and Mass Transfer >An improved categorization of vapor bubble collapse: Explaining the coupled nature of hydrodynamic and thermal mechanisms
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An improved categorization of vapor bubble collapse: Explaining the coupled nature of hydrodynamic and thermal mechanisms

机译:改进的气泡破裂分类:解释流体动力和热力机理的耦合性质

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This work presents a numerical and theoretical analysis of the intermediate bubble collapse, where in contrast to the thermally-induced or inertia dominated collapse, both the effects of liquid-vapor interfacial heat transfer and the advection of the surrounding liquid play an important role. A key distinguishing characteristic of this type of collapse is that the interfacial temperature and bubble pressure are continuously changing throughout the collapse process. This behavior is caused by a non-negligible value for the interfacial vapor velocity, which is characterized by a magnitude of the same order as the bubble surface regression rate. This behavior is in contrast to the inertial or thermal collapse, where, in these regimes, the vapor velocity is essentially zero. Incorporating the rate of change of background system pressure, a regime map for bubble collapse is also presented where the parameter space is defined by B-sat and xi and extends the previous categorization of Florschuetz and Chao (1965) where only B-eff was used. Specifically, the present work quantitatively shows that the collapse behavior changes when the process is initiated by a gradual rate of pressurization in the surrounding liquid phase instead of the often used approximation of a step change. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作提供了对中间气泡破裂的数值和理论分析,与热诱导或惯性主导的破裂相反,液-汽界面传热的影响和周围液体的平流都起着重要的作用。这种塌陷的主要区别特征是在整个塌陷过程中,界面温度和气泡压力不断变化。此行为是由界面蒸气速度的不可忽略的值引起的,该值的特征是与气泡表面回归速率的数量级相同。该行为与惯性或热塌陷相反,在这些情况下,惯性或热塌陷的蒸汽速度基本上为零。结合背景系统压力的变化率,还给出了气泡破裂的状态图,其中参数空间由B-sat和xi定义,并扩展了以前使用的B-eff的Florschuetz和Chao(1965)的分类。 。具体地,本发明工作定量地表明,当该过程由周围液相中逐渐的增压速率而不是通常使用的逐步变化逼近而引发时,塌陷行为发生变化。 (C)2019 Elsevier Ltd.保留所有权利。

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