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首页> 外文期刊>High temperature: English translation of teplofizika vysokikh temperatur >A Model of a Liquid Droplet Impinging on a High-Temperature Solid Surface
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A Model of a Liquid Droplet Impinging on a High-Temperature Solid Surface

机译:液滴撞击高温固体表面的模型

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摘要

The paper deals with a model of a liquid droplet vertically impinging on a heated solid surface. The model uses the following assumptions. The value of the wall temperature is taken to be such that the droplet-wall interaction would proceed via gas-vapor interlayer (T ≥ 400℃). The droplet liquid is incompressible and nonviscous. The droplet surface is taken to be free, with its deformation caused by the effect of external pressure distributed over the droplet surface. The pressure is made up by two components, of which the first one is the surface tension pressure due to the curvature of the droplet surface; the second component is the pressure of vapor between the droplet and wall, which is determined by analyzing the process of vapor escape from the vapor interlayer. The motion of liquid within the droplet is taken to be potential and axisymmetric. The equations of droplet motion are solved relative to the potential of the vector field of velocity. The suggested model is used to perform numerical calculations of the droplet collision process, and the obtained results are compared with the data of other authors.
机译:本文研究了垂直撞击在加热的固体表面上的液滴的模型。该模型使用以下假设。壁温的取值应使液滴与壁之间的相互作用将通过气-气中间层(T≥400℃)进行。液滴液体不可压缩且无粘性。液滴表面被认为是自由的,其变形是由分布在液滴表面上的外部压力的作用引起的。压力由两部分组成,第一部分是由于液滴表面的曲率引起的表面张力压力。第二个成分是液滴与壁之间的蒸汽压力,该压力是通过分析蒸汽从蒸汽夹层逸出的过程确定的。液滴内液体的运动被认为是电势的并且是轴对称的。相对于速度矢量场的势来求解液滴运动方程。该建议模型用于液滴碰撞过程的数值计算,并将获得的结果与其他作者的数据进行比较。

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