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Towards direct numerical simulations of low-Mach number turbulent reacting and two-phase flows using immersed boundaries

机译:利用浸没边界实现低马赫数湍流反应和两相流的直接数值模拟

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Most reacting and two-phase flows of practical interest are turbulent but take place at low Mach numbers or under incompressible conditions. In order to investigate the properties of such complex flows with high accuracy but acceptable computing times, a suitable tool for Direct Numerical Simulations (DNS), called DINOSOARS, has been developed. The present article describes the numerical components and methods implemented in this code, together with a detailed verification and validation phase, and finishes with two examples of full-scale simulations. We hope it might be useful as a "verification and validation guideline" for other researchers working on DNS of reacting flows. Since applications of growing complexity are considered by DNS, a Direct Boundary Immersed Boundary Method (DB-IBM) has been implemented, allowing a description of arbitrary geometries on a fixed, but possibly refined, Cartesian mesh. A direct force IBM is implemented as well in DINOSOARS in order to resolve large moving spherical particles (much larger than the Kolmogorov scale) on the grid. Particles below the Kolmogorov scale are treated as point particles, taking into account additionally heat and mass transfer with the continuous flow. The efficient parallelization of the code relies on the open-source library 2DECOMP&FFT. The underlying Poisson equation is solved in a fast and accurate manner by FFT, even for non-periodic boundary conditions. The flexibility of DINOSOARS makes it a very promising tool for analyzing a variety of problems and applications involving turbulent reacting and/or two-phase flows. (C) 2016 Elsevier Ltd. All rights reserved.
机译:实际感兴趣的大多数反应流和两相流都是湍流,但发生在低马赫数或不可压缩条件下。为了以高精度但可以接受的计算时间研究这种复杂流的特性,已经开发了一种称为DINOSOARS的合适的直接数值模拟(DNS)工具。本文介绍了此代码中实现的数值组件和方法,以及详细的验证和确认阶段,并以两个完整的模拟示例结束。我们希望它可能对其他从事DNS响应流研究的研究人员有用,作为“验证和验证指南”。由于DNS考虑了越来越复杂的应用程序,因此已经实现了直接边界浸入边界方法(DB-IBM),从而可以在固定的但可能精炼的笛卡尔网格上描述任意几何形状。为了解决网格上较大的运动球形颗粒(比Kolmogorov标尺大得多),在DINOSOARS中也采用了直接作用力IBM。低于Kolmogorov标度的粒子被视为点粒子,并考虑到连续流中的热量和质量传递。代码的有效并行化依赖于开源库2DECOMP&FFT。即使在非周期性边界条件下,潜在的泊松方程也可以通过FFT快速准确地求解。 DINOSOARS的灵活性使其成为用于分析涉及湍流和/或两相流的各种问题和应用的非常有前途的工具。 (C)2016 Elsevier Ltd.保留所有权利。

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