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Implementation of an Internal Ballistics Model in OpenFOAM

机译:OpenFOAM中内部弹道模型的实现

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A new internal ballistic solver is being developed within the OpenFOAM environment, due to limitations and inflexibility of most commercially available CFD solvers. The first phase in the development of the modules within the framework can capture all expected physical gas dynamic effects associated with the rocket motor. OpenFOam is attractive as it contains a vast library of solvers which can be implemented. The flow solver utilizes the weighted essentially non-oscillatory (WENO) reconstruction method to approximate the numerical fluxes at the boundaries of each cell. This reconstruction method is limited to hexahedral meshes. The internal ballistic model is first implemented in the MATLAB~® environment for the one-dimensional (1D) case to serve as input for the fully three-dimensional case. Thus, for a given time step the flow can be solved by generating the fluid volume and assigning mass fluxes from the grain. The eventual goal is to create a fully coupled grain burn back and flow solver to be able to fully model a rocket motor for the 2D and 3D case in OpenFOAM. The development of the flow solver with WENO will be the focus of this paper.
机译:由于大多数商用CFD求解器的局限性和灵活性,正在OpenFOAM环境中开发一种新的内部弹道求解器。框架内模块开发的第一阶段可以捕获与火箭发动机有关的所有预期的物理气体动力学效应。 OpenFOam包含大量可以实施的求解器库,因此颇具吸引力。流量求解器利用加权的基本非振荡(WENO)重建方法来近似计算每个单元边界处的数值通量。这种重建方法仅限于六面体网格。内部弹道模型首先在MATLAB〜®环境中实现,用于一维(1D)情况,用作全三维情况的输入。因此,对于给定的时间步长,可以通过生成流体体积并分配谷物中的质量通量来解决流量。最终目标是创建一个完全耦合的颗粒回燃和流动求解器,以便能够为OpenFOAM中的2D和3D情况完全模拟火箭发动机。使用WENO开发流量求解器将是本文的重点。

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