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Simulation of Two Moving Fronts Ablation in a Composite Thermal Protection System Via an Interface Tracking Method

机译:通过接口跟踪方法模拟复合热保护系统中的两个移动前线消融

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In this work, the two-dimensional computational simulation of the ablative process in composites used in rocket thermal protection systems via an interface tracking method is presented. The ablative model considers the presence of two simultaneous moving fronts, the pyrolisis and char fronts. A complementary model, that considers temperature dependence for the reaction rate in the pyrolisis, is also tested. The results are compared with some experimental data, showing better agreement than the one-front model. Such procedure will allow a more accurate dimensioning of rocket thermal protection systems, contributing for project optimization.
机译:在这项工作中,提出了通过接口跟踪方法的火箭热保护系统中使用的复合材料中使用的复合材料的二维计算模拟。烧蚀模型考虑了两个同时移动前线,焦耳和焦点前线的存在。还测试了一种互补模型,其考虑了焦化率的反应速率的温度依赖性。结果与一些实验数据进行比较,显示比一端模型更好的协议。此类程序将允许Rocket热保护系统更准确的尺寸,有助于项目优化。

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