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Marangoni instability in a liquid layer confined between two concentric spherical surfaces under zero-gravity conditions

机译:零重力条件下限制在两个同心球形表面之间的液体层中的Marangoni不稳定性

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摘要

A liquid layer containing a single solute is bounded on the outside by a rigid spherical surface and on the inside by a concentric gas/liquid interface. The solute evaporates from the liquid to the gas phase and, if the surface tension depends on the solute concentration, surface-tension driven convective flows may arise (Marangoni instability). Assuming zero-gravity conditions and using a normal-mode approach, we study the linear stability of the time-dependent, spherically-symmetric concentration profiles in a motionless liquid. Numerical results are presented for Marangoni numbers and perturbation wave numbers in the case of neutral stability. It turns out that the system's stability properties are strongly dependent on the curvature of the interface and on the mass-transfer Biot number.
机译:包含单一溶质的液体层在外部通过刚性球形表面界定,在内部通过同心的气/液界面界定。溶质从液相蒸发到气相,如果表面张力取决于溶质浓度,则可能会产生表面张力驱动的对流(Marangoni不稳定性)。假设零重力条件并使用法向模式方法,我们研究了在不动的液体中随时间变化的球对称浓度分布的线性稳定性。给出了中性稳定性情况下Marangoni数和摄动波数的数值结果。事实证明,系统的稳定性主要取决于界面的曲率和传质比奥数。

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