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Rough wall heat flux augmentation analysis in the framework of the ExoMars project

机译:ExoMars项目框架中的粗糙壁热通量增加分析

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Surface roughness, especially if enhanced due to ablative form change, increases skin friction drag and convective heat transfer over re-entry vehicles. Although the corresponding heat flux augmentation is usually lower compared to increased friction, careful consideration in the prediction of the resulting heat load levels is required. Within the European Mars mission ExoMars, the potential roughness impact on the thermal protection system of the descent module has been analyzed based on analytical predictions, numerical calculations and dedicated experimental campaigns. This paper describes the experimental efforts in the compressible flow regime to study the impact of roughness at representative conditions. The data is discussed based on comparisons with prediction methods and results of other investigators. Based on this data the numerical predictive capabilities within the ExoMars program is characterized and validated.
机译:表面粗糙度,特别是如果由于烧蚀形式变化而提高时,会增加折返车辆的皮肤摩擦阻力和对流热传递。尽管与增加的摩擦相比,相应的热通量增加通常较低,但在预测最终的热负荷水平时仍需要仔细考虑。在欧洲火星飞行任务ExoMars中,已经根据分析预测,数值计算和专门的实验活动对下降模块的热保护系统的潜在粗糙度影响进行了分析。本文介绍了可压缩流态下的实验工作,以研究代表性条件下粗糙度的影响。基于与预测方法的比较以及其他研究者的结果,对数据进行了讨论。基于此数据,对ExoMars程序中的数字预测功能进行了表征和验证。

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