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INFLUENCE OF HEAT DEFECT ON THE CHARACTERISTICS OF A TWO-LAYER FLOW WITH THE HIEMENZ-TYPE VELOCITY

机译:热缺陷对HIEMENZ型速度的两层流动的特性的影响

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摘要

An exact solution is derived in the frame of the creeping flow model to describe thermocapillary convection in a twolayer system with heat defect when the heat is transferred through the interface. The solution is characterized by the Hiemenz-type velocity and temperature distribution which is quadratic in the longitudinal coordinate. The heat defect is connected with changes in the internal energy of the interface caused by the action of thermocapillary forces on the transformation of the area and shape of the surface. A model linear problem is studied to estimate the impact of this effect on the formation of typical flow regimes and stability of these regimes. There is only a nonlinear term in the energy balance condition at the interface corresponding to the heat defect in the model problem. Depending on the values of a parameter defining the character of thermal load on the lower boundary of the system this problem may not have any solution, or it may have one or two exact solutions obtained in an explicit form. In the frame of the linear theory the stability of one of these exact solutions is investigated both taking into account the heat defect and under classical condition of heat balance at the interface setting an equality of heat fluxes on this surface. The interface position and velocity and temperature perturbation fields are calculated. With the decrease of the liquid layer thickness the changes in the internal energy of the interface can result in oscillations of the surface and saw-shaped deformations. Such behavior of the interface does not appear in the system without the heat defect.
机译:在爬行流模型的框架中得出了精确的溶液,以描述当热缺陷通过界面传输热时的Twolayer系统中的热毛细血管对流。该溶液的特征是Hiemenz型速度和温度分布,该速度和温度分布在纵向坐标中是二次的。热缺陷与热毛细力对面积和表面形状转化的作用引起的界面内部能量的变化有关。研究了一个模型线性问题,以估计这种影响对这些制度的典型流程和稳定性的形成的影响。在能量平衡条件下,在与模型问题中的热缺陷相对应的界面处只有一个非线性项。根据定义系统下边界上热负载特征的参数的值,此问题可能没有任何解决方案,或者它可能具有明确形式的一个或两个精确解决方案。在线性理论的框架中,研究了这些精确溶液之一的稳定性既考虑了热缺陷,又要考虑到界面处的热量平衡的经典条件,从而在该表面上设定了热通量的平等性。计算界面位置以及速度和温度扰动场。随着液体厚度的减小,界面的内部能量的变化会导致表面和锯状变形的振荡。没有热缺陷,该界面的这种行为不会出现在系统中。

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