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首页> 外文期刊>International Journal of Heat and Mass Transfer >Modelling of the rise and absorption of a fluid inclusion
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Modelling of the rise and absorption of a fluid inclusion

机译:流体包裹体上升和吸收的建模

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摘要

The buoyancy-driven rise of a small single fluid inclusion in a viscous liquid that is enclosed in a container of the cylindrical shape is numerically modelled. It is additionally assumed that the inclusion is slowly absorbed by the surrounding liquid. The phase-field approach is used as a physics-based model for the description of the thermo- and hydrodynamic evolution of a miscible heterogeneous binary mixture. The interplay of the effects of absorption and inclusion’s motion are investigated. We found that the dissolution of a nearly spherical inclusion does not occur evenly over its surface. The interfacial diffusion is stronger at the inclusion’s top cap. The matter absorbed by the liquid does not quickly penetrate into the bulk of the ambient phase, it accumulates behind the inclusion forming a concentration wake. We found that during the rise the inclusion’s speed grows. The speed and the acceleration of the inclusion strongly depend on the absorption rate, so the inclusion rises faster at the higher absorption rates. This effect is explained by the action of the Marangoni stress that is developed due to non-uniform mixture composition along the inclusion’s surface. We also found that the rise of the inclusion in a closed container is accompanied by the recirculation flow that is developed near the inclusion and that rises upwards with the inclusion. In the limit of negligible absorption (higher Peclet numbers) the convergence to a constant terminal speed of an immiscible inclusion is observed.
机译:数值模拟了单个液体包裹体在粘性液体中的浮力驱动的上升过程,该液体包裹在圆柱形容器中。另外假设夹杂物被周围的液体缓慢吸收。相场方法用作基于物理的模型,用于描述可混溶的异质二元混合物的热力学和流体力学演化。研究了吸收和包裹体运动的相互作用。我们发现,几乎球形的夹杂物在其表面上不会均匀地溶解。界面扩散在夹杂物的上限处更强。被液体吸收的物质不会很快渗透到大部分环境相中,而是会积聚在夹杂物的后面,形成浓缩尾流。我们发现,在上升过程中,包含物的速度在增长。夹杂物的速度和加速度在很大程度上取决于吸收率,因此夹杂物在较高的吸收率下上升更快。这种影响可以通过Marangoni应力的作用来解释,该应力是由于沿夹杂物表面的混合物成分不均匀而产生的。我们还发现,密闭容器中夹杂物的上升伴随着在夹杂物附近形成并随夹杂物向上上升的再循环流。在可忽略的吸收极限(较高的Peclet数)的极限下,观察到收敛到不混溶夹杂物的恒定末端速度。

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