Hi'/> A numerical simulation of the water vapor bubble rising in ferrofluid by volume of fluid model in the presence of a magnetic field
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A numerical simulation of the water vapor bubble rising in ferrofluid by volume of fluid model in the presence of a magnetic field

机译:磁场作用下流体模型中铁磁流体中水蒸气气泡上升的数值模拟

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HighlightsA water vapor bubble rising in ferrofluid has simulated numerically by VOF model.Uniform magnetic field can affect the related characteristics of multiphase flows.Bubble shape, rising velocity, and stability can be controlled and changed by magnetic field.CPU time has been reduced significantly while the accuracy of results is preserved.AbstractMultiphase flow is one of the most complicated problems, considering the multiplicity of the related parameters, especially the external factors influences. Thus, despite the recent developments more investigations are still required. The effect of a uniform magnetic field on the hydrodynamics behavior of a two-phase flow with different magnetic permeability is presented in this article. A single water vapor bubble which is rising inside a channel filled with ferrofluid has been simulated numerically. To capture the phases interface, the Volume of Fluid (VOF) model, and to solve the governing equations, the finite volume method has been employed. Contrary to the prior anticipations, while the consisting fluids of the flow are dielectric, uniform magnetic field causes a force acting normal to the interface toward to the inside of the bubble. With respect to the applied magnetic field direction, the bubble deformation due to the magnetic force increases the bubble rising velocity. Moreover, the higher values of applied magnetic field strength and magnetic permeability ratio resulted in the further increase of the bubble rising velocity. Also it is indicated that the flow mixing and the heat transfer rate is increased by a bubble injection and applying a magnetic field. The obtained results have been concluded that the presented phenomenon with applying a magnetic field can be used to control the related characteristics of the multiphase flows. Compared to the previous studies, implementing the applicable cases using the common and actual materials and a significant reduction of the CPU time are the most remarkable advantages of the current study.
机译: 突出显示 通过VOF模型对铁磁流体中上升的水蒸气气泡进行了数值模拟。 均匀的磁场会影响多相的相关特性 气泡形状,上升速度和稳定性可以通过磁场来控制和更改。 CPU时间已缩短 摘要

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