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Mechanical nonequilibrium considerations in homogeneous bubble nucleation for unsteady-state boiling

机译:非稳态沸腾的均匀气泡成核中的机械非平衡考虑

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With thermal and mechanical nonequilbrium taken into consideration, the classical kinetic theory of boiling is modified to study unsteady-state homogeneous nucleation processes. Based on this newly developed model, the degree of superheat and the maximum nucleation rate corresponding to different rates of temperature rise in water are calculated and presented. For the first time, the initial nonequilibrium vapor pressure and the initial growth rate of bubble nuclei with different initial embryo sizes and different rates of temperature rise are accurately modeled. The resulting algorithm provides a method by which the details of bubble nucleation in a superheated liquid can be predicted, leading to a better understanding of the kinetics of boiling. Model validation, accuracy and application are also presented and discussed.
机译:考虑到热和机械的非制冷,对经典的沸腾动力学理论进行了修改,以研究非稳态均相成核过程。基于此新开发的模型,计算并给出了与水温升高速率不同相对应的过热度和最大成核速率。首次准确地模拟了具有不同初始胚胎大小和不同升温速率的初始非平衡蒸气压和气泡核的初始生长速率。所得算法提供了一种方法,通过该方法可以预测过热液体中气泡成核的细节,从而更好地了解沸腾动力学。还介绍并讨论了模型验证,准确性和应用。

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