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Characters of surface deformation and surface wave in thermal capillary convection

机译:热毛细管对流中的表面变形和表面波特征

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In the field of fluid mechanics, free surface phenomena is one of the most important physical processes. In the present research work, the surface deformation and surface wave caused by temperature difference of sidewalls in a rectangular cavity have been investigated. The horizontal cross-section of the container is 52 mmx42 mm, and there is a silicon oil layer of height 3.5 mm in the experimental cavity. Temperature difference between the two side walls of the cavity is increased gradually, and the flow on the liquid layer will develop from stable convection to un-stable convection. An optical diagnostic system consisting of a modified Michelson interferometer and image processor has been developed for study of the surface deformation and surface wave of thermal capillary convection. The Fourier transformation method is used to interferometer fringe analysis. The quantitative results of surface deformation and surface wave have been calculated from a serial of the interference fringe patterns. The characters of surface deformation and surface wave have been obtained. They are related with temperature gradient and surface tension. Surface deformation is fluctuant with time, which shows the character of surface wave. The cycle period of the wave is 4.8 s, and the amplitudes are from 0 to 0.55 mu m The phase of the wave near the cool side of the cavity is opposite and correlative to that near the hot side. The present experiment proves that the surface wave of thermal capillary convection exists on liquid free surface, and it is wrapped in surface deformation.
机译:在流体力学领域,自由表面现象是最重要的物理过程之一。在目前的研究工作中,已经研究了矩形腔中侧壁温度差异引起的表面变形和表面波。容器的水平横截面为52 mm x 42 mm,并且在实验腔中有一个高度为3.5 mm的硅油层。空腔的两个侧壁之间的温差逐渐增加,液体层上的流动将从稳定的对流发展到不稳定的对流。已经开发了由改进的迈克尔逊干涉仪和图像处理器组成的光学诊断系统,用于研究热毛细管对流的表面变形和表面波。傅里叶变换法用于干涉仪条纹分析。表面变形和表面波的定量结果已经从一系列干涉条纹图案中计算得出。获得了表面变形和表面波的特征。它们与温度梯度和表面张力有关。表面变形随时间而变化,这表明了表面波的特性。波的周期为4.8 s,振幅为0到0.55μm。腔的冷端附近的波相位与热端附近的波相反且相关。本实验证明,热毛细管对流的表面波存在于自由液体表面,并包裹在表面变形中。

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