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Decoupled Method for Reconstruction of Surface Conditions From Internal Temperatures On Ablative Materials With Uncertain Recession Model

机译:与不确定衰退模型的烧蚀材料的内部温度从内部温度重建的去耦方法

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Obtaining measurements of flight environments on ablative heatshields is both critical for spacecraft development and extremely challenging due to the harsh heating environment and surface recession. Thermocouples installed several millimeters below the surface are commonly used to measure the heatshield temperature response, but an ill-posed inverse heat conduction problem must be solved to reconstruct the surface heating environment from these measurements. Ablation can contribute substantially to the measurement response making solutions to the inverse problem strongly dependent on the recession model, which is often poorly characterized. To enable efficient surface reconstruction for recession model sensitivity analysis, a method for decoupling the surface recession evaluation from the inverse heat conduction problem is presented. The decoupled method is shown to provide reconstructions of equivalent accuracy to the traditional coupled method but with substantially reduced computational effort. These methods are applied to reconstruct the environments on the Mars Science Laboratory heatshield using diffusion limit and kinetically limited recession models.
机译:获得融合壳体的飞行环境测量对于航天器开发至关重要,并且由于苛刻的加热环境和表面衰退而极其挑战。在表面下方安装的热电偶通常用于测量热屏蔽温度响应,但必须求解不存在的反热导热问题以从这些测量中重建表面加热环境。消融可以基本上贡献到测量响应,使解决方案对逆问题强烈依赖于衰退模型,这通常是较差的。为了使衰退模型灵敏度分析能够实现高效的表面重建,提出了一种解耦与逆热传导问题的表面衰退评估的方法。分离方法被示出为传统耦合方法提供等效精度的重建,而是基本上减少了计算工作。应用这些方法以使用扩散极限和动力学衰退模型重建MARS科学实验室热屏幕上的环境。

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