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Physics of the Interaction of Ultrasonic Excitation With Nucleate Boiling

机译:超声激发与核沸腾相互作用的物理学

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摘要

Physics of ultrasound-assisted augmentation of saturated nucleate boiling through the interaction of multiphase fluid flow is revealed in the present work. Different regimes of influence of ultrasound, ranging from augmentation to deterioration and even no effect, as reported in literature in a contradictory fashion, have been observed. However unlike the previous studies, here it has been clearly demonstrated that this apparent anomaly lies in the different natures of interactions between the influencing parameters like heat flux, ultrasonic frequency, and pressure amplitude. The present results clearly bring out an interactive effect of these operating parameters with surface parameter like surface roughness. A mechanistic model unifying all these parameters has been presented to explain quantitatively the physics of the interaction. The model-based predictions match experimental results quite well suggesting the validity of the hypothesis on liquid-vapor-surface interaction through the process of nucleation and its site density, on which the model is built, and thus revealing the underlying physics.
机译:在本工作中揭示了通过多相流体流的相互作用超声辅助增加饱和核沸腾的物理学。正如文献以矛盾的方式报道的那样,已经观察到超声波的不同影响范围,从增强到恶化甚至没有影响。但是,与以前的研究不同,这里已经清楚地表明,这种明显的异常在于影响参数(如热通量,超声频率和压力幅度)之间相互作用的不同性质。本结果清楚地表明了这些操作参数与表面参数(如表面粗糙度)的交互作用。提出了统一所有这些参数的机械模型,以定量地解释相互作用的物理过程。基于模型的预测与实验结果非常吻合,表明通过成核过程及其在其上建立模型的位点密度对液-气-表面相互作用的假设的有效性,从而揭示了潜在的物理原理。

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