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Influence of Configuration on Materials Selection for Actively Cooled Combustors

机译:构型对主动冷却燃烧室材料选择的影响

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摘要

The influence of combustor size and shape on material feasibility is explored using (structural and fuel) weight, as well as fuel economy as metrics. A materials selection methodology developed for actively cooled rectangular panels has been embellished to include cylindrical/annular configurations. The procedure incorporates an analytical model for temperature and stress distributions subject to thermomechanical loads representative of hypersonic flight conditions. The model has been numerically verified using finite element simulations. By combining the model with optimization routines, materials robustness maps have been produced, depicting the range of thermal loads and fuel flow rates that satisfy all design constraints. A wide selection of high-temperature materials has been investigated. Comparisons of cylindrical and rectangular combustors are made for the leading candidates. It is established that the cylindrical designs allow both lighter optimal structures as well as greater robustness and fuel economy.
机译:使用(结构和燃料)重量以及燃料经济性来衡量燃烧室尺寸和形状对材料可行性的影响。为主动冷却的矩形面板开发的材料选择方法已经点缀成包括圆柱/环形配置。该程序结合了代表高超声速飞行条件的热机械载荷作用下温度和应力分布的分析模型。该模型已使用有限元模拟进行了数值验证。通过将模型与优化例程相结合,已生成了材料鲁棒性图,该图描述了满足所有设计约束的热负荷和燃油流速范围。已经研究了多种高温材料。圆柱燃烧器和矩形燃烧器的比较是针对主要候选者的。可以确定的是,圆柱形设计既可以实现更轻的最佳结构,又可以实现更高的耐用性和燃油经济性。

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