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A Boundary Condition Relaxation Algorithm for Strongly Coupled, Ablating Flows Including Shape Change

机译:包含形状变化的强耦合消融流的边界条件松弛算法

摘要

Implementations of a model for equilibrium, steady-state ablation boundary conditions are tested for the purpose of providing strong coupling with a hypersonic flow solver. The objective is to remove correction factors or film cooling approximations that are usually applied in coupled implementations of the flow solver and the ablation response. Three test cases are considered - the IRV-2, the Galileo probe, and a notional slender, blunted cone launched at 10 km/s from the Earth's surface. A successive substitution is employed and the order of succession is varied as a function of surface temperature to obtain converged solutions. The implementation is tested on a specified trajectory for the IRV-2 to compute shape change under the approximation of steady-state ablation. Issues associated with stability of the shape change algorithm caused by explicit time step limits are also discussed.
机译:测试了用于平衡,稳态消融边界条件的模型的实现,目的是提供与高超声速流动求解器的强耦合。目的是消除通常在流动求解器和消融响应的耦合实现中应用的校正因子或膜冷却近似值。考虑了三个测试用例-IRV-2,伽利略探测器和一个假想的细长钝锥,以离地球表面10 km / s的速度发射。采用连续替换,并且连续的顺序随表面温度变化而变化,以获得收敛解。在IRV-2的指定轨迹上对实现进行了测试,以计算稳态消融近似下的形状变化。还讨论了由明确的时间步长限制引起的与形状更改算法的稳定性相关的问题。

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