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A Simplified Approach for the Rapid Generation of Transient Heat-Shield Environments

机译:快速生成瞬态热屏环境的简化方法

摘要

A simplified approach has been developed whereby transient entry heating environments are reliably predicted based upon a limited set of benchmark radiative and convective solutions. Heating, pressure and shear-stress levels, non-dimensionalized by an appropriate parameter at each benchmark condition are applied throughout the entry profile. This approach was shown to be valid based on the observation that the fully catalytic, laminar distributions examined were relatively insensitive to altitude as well as velocity throughout the regime of significant heating. In order to establish a best prediction by which to judge the results that can be obtained using a very limited benchmark set, predictions based on a series of benchmark cases along a trajectory are used. Solutions which rely only on the limited benchmark set, ideally in the neighborhood of peak heating, are compared against the resultant transient heating rates and total heat loads from the best prediction. Predictions based on using two or fewer benchmark cases at or near the trajectory peak heating condition, yielded results to within 5-10 percent of the best predictions. Thus, the method provides transient heating environments over the heat-shield face with sufficient resolution and accuracy for thermal protection system design and also offers a significant capability to perform rapid trade studies such as the effect of different trajectories, atmospheres, or trim angle of attack, on convective and radiative heating rates and loads, pressure, and shear-stress levels.
机译:已经开发出一种简化的方法,从而可以基于一组有限的基准辐射和对流解决方案可靠地预测瞬态进入加热环境。在每个基准条件下均采用在每个基准条件下未通过适当参数进行度量的加热,压力和切应力水平。根据以下观察结果,该方法是有效的:观察到的是,在充分加热的整个过程中,所检查的完全催化的层流分布对高度和速度相对不敏感。为了建立最佳的预测,以判断可以使用非常有限的基准集获得的结果,使用了基于沿轨迹的一系列基准案例的预测。将仅依赖于有限基准集的解决方案(最好是在峰值加热附近)与最佳预测得出的瞬态加热速率和总热负荷进行比较。基于在轨迹峰值加热条件下或附近使用两个或更少基准案例的预测,得出的结果在最佳预测的5-10%之内。因此,该方法为热保护系统设计提供了足够的分辨率和精度的热屏蔽面上的瞬态加热环境,并且还提供了进行快速贸易研究(例如不同轨迹,大气或修整攻角的影响)的重要能力。 ,包括对流和辐射加热速率和负载,压力和剪切应力水平。

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