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首页> 外文期刊>International Journal of Heat and Mass Transfer >Transition to chaotic thermocapillary convection in a half zone liquid bridge
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Transition to chaotic thermocapillary convection in a half zone liquid bridge

机译:过渡到半区液桥中的混沌热毛细管对流

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摘要

A series of fluid physics microgravity experiments with an enough long run time were performed in the "KIBO," the Japanese Experiment Module aboard the International Space Station, to examine the transition to chaos of the thermocapillary convection in a half zone liquid bridge of silicone oil with a Prandtl number of 112. The temperature difference between the coaxial disks induced the thermocapillary-driven flow, and we experimentally demonstrated that the flow fields underwent a transition from steady flow to oscillatory flow, and finally to chaotic flow with increasing temperature difference. We obtained the surface temperature time series at the middle of the liquid bridge to quantitatively evaluate the transition process of the flow fields. By Fourier analysis, we further confirmed that the flow fields changed from a periodic, to a quasi-periodic, and finally to a chaotic state. The increasing nonlin-earity with the development of the flow fields was confirmed by time-series chaos analysis. The determined Lyapunov exponent and the translation error indicated that the flow fields made transition to the chaotic field with the increasing temperature difference.
机译:在国际空间站上的日本实验模块“ KIBO”中进行了一系列具有足够长运行时间的流体物理微重力实验,以研究硅油半区液桥中热毛细管对流的过渡过程。 Prandtl数为112。同轴圆盘之间的温差引起热毛细管驱动的流动,并且我们通过实验证明流场经历了从稳定流到振荡流的转变,最后随着温度差的增加而转变为混沌流。我们获得了液桥中间的表面温度时间序列,以定量评估流场的过渡过程。通过傅立叶分析,我们进一步证实了流场从周期性变为准周期性,最后变为混沌状态。时间序列混沌分析证实了随着流场的发展非线性的增加。确定的李雅普诺夫指数和平移误差表明,随着温度差的增加,流场转变为混沌场。

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