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Real-Time Measurements of Aft Dome Insulation Erosion on Space Shuttle Reusable Solid Rocket Motor

机译:航天飞机可重复使用的固体火箭发动机后穹顶绝缘侵蚀的实时测量

摘要

Real-time erosion of aft dome internal insulation was measured with internal instrumentation on a static test of a lengthened version of the Space Shuffle Reusable Solid Rocket Motor (RSRM). This effort marks the first time that real-time aft dome insulation erosion (Le., erosion due to the combined effects of thermochemical ablation and mechanical abrasion) was measured in this kind of large motor static test [designated as Engineering Test Motor number 3 (ETM3)I. This paper presents data plots of the erosion depth versus time. The data indicates general erosion versus time behavior that is in contrast to what would be expected from earlier analyses. Engineers have long known that the thermal environment in the aft dome is severe and that the resulting aft dome insulation erosion is significant. Models of aft dome erosion involve a two-step process of computational fluid dynamics (CFD) modeling and material ablation modeling. This modeling effort is complex. The time- dependent effects are difficult to verify with only prefire and postfire insulation measurements. Nozzle vectoring, slag accumulation, and changing boundary conditions will affect the time dependence of aft dome erosion. Further study of this data and continued measurements on future motors will increase our understanding of the aft dome flow and erosion environment.
机译:使用内部仪器在加长版的“太空改组可重复使用的固体火箭发动机”(RSRM)的静态测试中测量了后穹顶内部绝缘的实时腐蚀。这项工作标志着在这种大型电动机静态测试中将实时后穹顶绝缘腐蚀(例如,由于热化学烧蚀和机械磨损的综合作用而引起的腐蚀)测量为首次[指定为3号工程测试电动机( ETM3)I。本文介绍了侵蚀深度与时间的关系图。数据表明总体侵蚀与时间行为的关系与早期分析的预期相反。工程师早就知道后穹顶中的热环境很严峻,并且所产生的后穹顶绝缘腐蚀非常严重。后穹顶侵蚀模型涉及计算流体力学(CFD)建模和材料烧蚀建模的两步过程。这种建模工作很复杂。仅使用预火和后火绝缘测量难以验证时间相关的影响。喷嘴的引导,炉渣的积累以及边界条件的变化都会影响后穹顶侵蚀的时间依赖性。对该数据的进一步研究以及对未来电机的持续测量将增加我们对后圆顶流和侵蚀环境的了解。

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