Kang Changwoo, Yoshikawa Harunori N, Ntarmouchant Ziad, Prigent Arnaud, Mutabazi Innocent
Normandie Université, UNIHAVRE, Laboratoire Ondes et Milieux Complexes (LOMC), UMR CNRS 6294, 53 rue de Prony, CS 80540, 76058 Le Havre Cedex, France.
Department of Mechanical Engineering, Jeonbuk National University, 567 Baekje-daero, Deokjin-gu, Jeonju-si, Jeollabuk-do 54896, Republic of Korea.
Philos Trans A Math Phys Eng Sci. 2023 Mar 20;381(2243):20220117. doi: 10.1098/rsta.2022.0117. Epub 2023 Jan 30.
We have performed numerical and experimental studies of the flow in a large aspect ratio Couette-Taylor system with a rotating inner cylinder and a fixed radial temperature gradient. The base flow state is a superposition of an azimuthal flow induced by rotation and an axial large convective cell induced by the temperature gradient. For a relatively large temperature gradient, the rotation rate of the inner cylinder destabilizes the convective cell to give rise to travelling wave pattern through a subcritical bifurcation. This wave pattern is associated with a temperature mode and it consists of helical vortices travelling in the annulus. In a small range of the rotation rate, helical vortices have longitudinal meandering leading to the formation of kinks randomly distributed, leading to spatio-temporal disordered patterns. The flow becomes regular for a large interval of rotation rate. The friction, the momentum and the heat transfer coefficients are computed and found to be independent of the heating direction. This article is part of the theme issue 'Taylor-Couette and related flows on the centennial of Taylor's seminal paper (part 1)'.
我们对具有旋转内筒和固定径向温度梯度的大长宽比库埃特 - 泰勒系统中的流动进行了数值和实验研究。基本流动状态是由旋转引起的方位角流动和由温度梯度引起的轴向大对流单元的叠加。对于相对较大的温度梯度,内筒的旋转速率会使对流单元失稳,通过亚临界分岔产生行波模式。这种波模式与一种温度模式相关,它由在环形空间中传播的螺旋涡旋组成。在较小的旋转速率范围内,螺旋涡旋有纵向蜿蜒,导致形成随机分布的扭结,从而产生时空无序模式。在较大的旋转速率区间内,流动变得规则。计算了摩擦系数、动量系数和传热系数,发现它们与加热方向无关。本文是主题特刊“泰勒开创性论文发表一百周年之际的泰勒 - 库埃特及相关流动(第1部分)”的一部分。