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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Bubble flow simulations using the intersection marker (ISM) interface tracking method
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Bubble flow simulations using the intersection marker (ISM) interface tracking method

机译:使用相交标记(ISM)界面跟踪方法进行气泡流动模拟

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摘要

Purpose - Interface distinct two-phase computational fluid dynamics (CFD) simulations require accurate tracking in surface curvature, surface area and volume fraction data to precisely calculate effects such as surface tension, interphase momentum and interphase heat and mass transfer exchanges. To attain a higher level of accuracy in two-phase flow CFD simulations, the intersection marker (ISM) method was developed. The ISM method has cell-by-cell remeshing capability that is volume conservative, maintains surface continuity and is suited for the tracking of interface deformation in transient two-phase flow simulations. Studies of isothermal single bubbles rising in quiescent water were carried out to test the ISM method for two-phase flow simulations. Design/methodology/approach - The ISM method is a hybrid Lagrangian-Eulerian front tracking algorithm which can model an arbitrary three-dimensional surface within an array of cubic control volumes. Fortran95 was used to implement the ISM method, which resulted in approximately 25,000+ lines of written code and comments. To demonstrate the feasibility of the ISM algorithm for two-phase flow simulations, the ISM algorithm was coupled with an in-house CFD code, which was modified to simulate two-phase flows using a single fluid formulation. The constitutional equations incorporated terms of variable density and viscosity. In addition, body force source terms were included in the momentum equation to account for surface tension and buoyancy effects. Findings - The performance of two-phase flow simulations was benchmarked against experimental data for four air/water bubbles with 1, 2.5, 5 and 10 mm of diameter rising in quiescent fluid. A variety of bubble sizes were tested to demonstrate the accuracy of the ISM interface tracking method. The results attained were in close agreement with experimental observations. Practical implications - The results obtained show that the ISM method is a viable means for interface tracking of two-phase flow CFD simulations. Other applications of the ISM method include simulations of solid-fluid interaction and other immersed boundary flow problems. Originality/value - The ISM method is a novel approach to front tracking, and the results shown are original in content.
机译:目的-界面不同的两相计算流体动力学(CFD)模拟需要精确跟踪表面曲率,表面积和体积分数数据,以精确计算诸如表面张力,相间动量以及相间热与质量交换等影响。为了在两相流CFD模拟中获得更高的准确性,开发了交叉标记(ISM)方法。 ISM方法具有逐个单元重新网格化的功能,该功能是体积保守的,可以保持表面连续性,并且适合在瞬态两相流模拟中跟踪界面变形。研究了在静止水中上升的等温单气泡,以测试用于两相流模拟的ISM方法。设计/方法/方法-ISM方法是拉格朗日-欧拉混合式前跟踪算法,可以对一组立方控制体积内的任意三维表面进行建模。 Fortran95用于实施ISM方法,该方法导致大约25,000多行书面代码和注释。为了证明ISM算法在两相流模拟中的可行性,将ISM算法与内部CFD代码结合使用,将其修改为使用单一流体配方来模拟两相流的方法。组成方程包含可变密度和粘度的术语。此外,动量方程中还包括了体力源项,以说明表面张力和浮力效应。研究结果-两相流动模拟的性能以相对于静止状态流体中直径分别为1、2.5、5和10毫米的四个气泡的实验数据为基准。测试了各种气泡大小,以证明ISM接口跟踪方法的准确性。获得的结果与实验观察结果非常吻合。实际意义-获得的结果表明,ISM方法是用于两相流CFD模拟界面跟踪的可行方法。 ISM方法的其他应用包括固液相互作用和其他沉浸边界流问题的模拟。原创性/价值-ISM方法是一种新颖的前端跟踪方法,显示的结果具有原创性。

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