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首页> 外文期刊>AIChE Journal >What Controls Dynamics of Droplet Shape Evolution upon Impingement on a Solid Surface?
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What Controls Dynamics of Droplet Shape Evolution upon Impingement on a Solid Surface?

机译:是什么控制了固体表面撞击后液滴形状演变的动力学?

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摘要

A shape coefficient is introduced to quantify droplet shape by measuring its similarity to a desired shape to enable the study of droplet shape evolution upon impingement on a solid surface. Parametric simulations are performed with an experimentally validated numerical model to determine the impact conditions to maximize the shape coefficient. Results show that the Weber number is the controlling factor that determines the maximum achievable shape coefficient and the time instant when it is achieved for small Ohnesorge numbers, whereas the Reynolds number becomes the key parameter defining the optimal shape when the Ohnesorge number is large. A regime map is also developed to define the regions where a desired droplet shape can be achieved without splash.
机译:引入形状系数以通过测量液滴与所需形状的相似性来量化液滴形状,从而能够研究撞击固体表面后液滴形状的演变。使用经过实验验证的数值模型执行参数模拟,以确定冲击条件以最大化形状系数。结果表明,韦伯数是决定最大可达到的形状系数和确定较小奥内斯堡数时的时间的控制因素,而雷诺数成为确定奥涅斯堡数较大时最佳形状的关键参数。还开发了一种状态图,以定义可以实现所需液滴形状而不会飞溅的区域。

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