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Optimum design of inhomogeneous non-uniform rotating discs

机译:非均匀旋转盘的优化设计

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摘要

Gas turbine discs work mostly at high temperature gradients and are subjected to high angular velocity. High speed results in large centrifugal forces in discs and simultaneous high temperature reduces disc material strength. Thus, the latter effects increase deformation of the disc automatically. In order to attain a certain and reliable analysis for disc and to derive corresponding stress distribution, solution should consider changes in material specilications caused by temperature. To achieve this goal, an inhomogeneous disc model with variable thickness is considered. Using the variable material properties method [J. Pressure Vessel Technol. 119 (1997) 264; Thermoplastic analysis of inhomogeneous rotating disk with variable thickness, Proceedings of the EMAS Conference of Fatigue, Camdridge, England, April 2000; Int. J. Pressure Vessels Piping 71 (3) (2001) 285] stresses are obtained for a disc under rotation and steady temperature field. Optimization process begins following stress calculation. Inscribed hypersphere method is used to obtain optimized disc profile. Using the above method, the disc profile is optimized and final solutions are obtained. It is also shown that the solutions of optimization process regarding different initial profiles for disc of similar specifications are unique when inscribed hypersphere radii in the last solution stages are equal. Results are compared to published data and are found to be in good agreement with them.
机译:燃气轮机盘主要在高温梯度下工作,并承受较高的角速度。高速会导致圆盘产生较大的离心力,同时高温会降低圆盘的材料强度。因此,后一种效果会自动增加光盘的变形。为了对圆盘进行某种可靠的分析并得出相应的应力分布,解决方案应考虑温度引起的材料规格变化。为了实现这个目标,考虑了具有可变厚度的不均匀盘模型。使用可变材料特性的方法[J.压力容器技术。 119(1997)264;厚度可变的不均匀旋转圆盘的热塑性分析,2000年4月,英国坎德里奇的EMAS疲劳会议论文集;诠释[J.压力容器管道71(3)(2001)285]是在旋转和稳定温度场下获得的圆盘应力。优化过程开始于应力计算之后。内接超球面法用于获得优化的光盘轮廓。使用上述方法,可以优化光盘配置文件并获得最终解决方案。还表明,当最后一个求解阶段的内接超球半径相等时,针对类似规格光盘的关于不同初始轮廓的优化过程的解决方案是唯一的。将结果与发布的数据进行比较,发现结果与它们非常吻合。

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