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首页> 外文期刊>Atomization and Sprays: Journal of the International Institutes for Liquid Atomization and Spray Systems >THEORETICAL MODELING OF SPRAY DROP DEFORMATION AND BREAKUP IN THE MULTIMODE BREAKUP REGIME
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THEORETICAL MODELING OF SPRAY DROP DEFORMATION AND BREAKUP IN THE MULTIMODE BREAKUP REGIME

机译:多模式分解模型中喷滴变形和分解的理论模型

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Drop multimode breakup is more complex than the bag and shear breakup regimes, and modeling drop breakup in the multimode breakup regime is less reported. In this article, a theoretical model is developed to predict the drop breakup properties in the multimode regime in a more accurate manner. In the present model, the process of the drop deformation and breakup are regarded as the movement of the center of the mass along the cross-stream and streamwise directions, respectively. The displacement of the center of the mass is obtained by solving a pressure balance equation and a mechanical analog model equation. Drop breakup occurs when the displacement of the mass center is out of the scale defined by the threshold function of Weber number. The characteristics of the proposed model as well as the breakup properties of the drops in the multimode regime are addressed by comparing the predicted results with the experimental data in the open published literature.
机译:液滴多模破碎比袋子和剪切破碎方案更复杂,在多模破碎方案中模拟液滴破碎的报道较少。在本文中,开发了一种理论模型以更精确的方式预测多模态下的液滴破裂特性。在本模型中,液滴变形和破裂的过程分别被认为是质心沿着横流和顺流方向的运动。通过求解压力平衡方程和机械模拟模型方程来获得质心的位移。当质心的位移超出韦伯数阈值函数定义的比例时,会发生液滴破裂。通过将预测结果与公开出版物中的实验数据进行比较,可以解决所提出模型的特性以及多模态下液滴的破裂特性。

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