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Validation of a Three-Dimensional Ablation and Thermal Response Simulation Code

机译:三维消融和热响应仿真代码的验证

摘要

The 3dFIAT code simulates pyrolysis, ablation, and shape change of thermal protection materials and systems in three dimensions. The governing equations, which include energy conservation, a three-component decomposition model, and a surface energy balance, are solved with a moving grid system to simulate the shape change due to surface recession. This work is the first part of a code validation study for new capabilities that were added to 3dFIAT. These expanded capabilities include a multi-block moving grid system and an orthotropic thermal conductivity model. This paper focuses on conditions with minimal shape change in which the fluid/solid coupling is not necessary. Two groups of test cases of 3dFIAT analyses of Phenolic Impregnated Carbon Ablator in an arc-jet are presented. In the first group, axisymmetric iso-q shaped models are studied to check the accuracy of three-dimensional multi-block grid system. In the second group, similar models with various through-the-thickness conductivity directions are examined. In this group, the material thermal response is three-dimensional, because of the carbon fiber orientation. Predictions from 3dFIAT are presented and compared with arcjet test data. The 3dFIAT predictions agree very well with thermocouple data for both groups of test cases.
机译:3dFIAT代码可在三个维度上模拟热防护材料和系统的热解,烧蚀和形状变化。用移动网格系统求解控制方程,包括能量守恒,三组分分解模型和表面能平衡,以模拟由于表面凹陷而引起的形状变化。这项工作是针对3dFIAT中新增功能的代码验证研究的第一部分。这些扩展的功能包括多块移动网格系统和正交各向异性导热系数模型。本文关注的是形状变化最小的情况,在这些情况下不需要进行流固耦合。介绍了两组在电弧喷射器中对酚醛浸渍碳烧蚀剂进行3dFIAT分析的测试案例。在第一组中,研究了轴对称iso-q形状的模型,以检查三维多块网格系统的准确性。在第二组中,研究了具有各种厚度方向电导率方向的相似模型。在这一组中,由于碳纤维的取向,材料的热响应是三维的。呈现了来自3dFIAT的预测,并将其与arcjet测试数据进行了比较。 3dFIAT预测与两组测试用例的热电偶数据非常吻合。

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