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首页> 外文期刊>Microgravity science and technology >Oscillation Transition Routes of Buoyant-Thermocapillary Convection in Annular Liquid Layers
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Oscillation Transition Routes of Buoyant-Thermocapillary Convection in Annular Liquid Layers

机译:环形液体层中浮力-热毛细对流的振荡跃迁路径

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There are various oscillation transition routes of buoyant-thermocapillary convection in an annular liquid layer. Three types of transition routes including quasi-periodic bifurcation, period-doubling bifurcation and tangent bifurcation have been observed. In our ground experiments, the depth of liquid layer is in a range of 1.6-2.4 mm. The silicone oil with Prandtl number of 28.6 is selected as the liquid medium. The temperature oscillation is detected by a single-point temperature measuring system and the surface oscillation is measured by a laser displacement-sensor with high resolution. The step-heating mode is adopted in the experiments. Transition routes of temperature oscillation and surface oscillation are studied systematically, and the relationship between them is discussed, too.
机译:在环形液体层中存在多种浮力-热毛细对流的振荡转变路径。已经观察到三种类型的过渡路径,包括准周期分叉,周期倍增分叉和切线分叉。在我们的地面实验中,液体层的深度在1.6-2.4毫米范围内。选择Prandtl值为28.6的硅油作为液体介质。通过单点温度测量系统检测温度振荡,并通过高分辨率的激光位移传感器测量表面振荡。实验采用步进加热方式。系统地研究了温度振荡和表面振荡的转变路径,并探讨了它们之间的关系。

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