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Structural reliability analysis and uncertainties-based collaborative design and optimization of turbine blades using surrogate model

机译:基于替代模型的结构可靠性分析和不确定性协同设计与优化

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摘要

In power and energy systems, both the aerodynamic performance and the structure reliability of turbine equipment are affected by utilized blades. In general, the design process of blade is high dimensional and nonlinear. Different coupled disciplines are also involved during this process. Moreover, unavoidable uncertainties are transported and accumulated between these coupled disciplines, which may cause turbine equipment to be unsafe. In this study, a saddlepoint approximation reliability analysis method is introduced and combined with collaborative optimization method to address the above challenge. During the above reliability analysis and design optimization process, surrogate models are utilized to alleviate the computational burden for uncertainties-based multidisciplinary design and optimization problems. Smooth response surfaces of the performance of turbine blades are constructed instead of expensively time-consuming simulations. A turbine blade design problem is solved here to validate the effectiveness and show the utilization of the given approach.
机译:在电力和能源系统中,涡轮设备的空气动力性能和结构可靠性均受所用叶片的影响。通常,叶片的设计过程是高维且非线性的。在此过程中还涉及不同的耦合学科。此外,不可避免的不确定性在这些相互关联的规范之间传输和积累,这可能导致涡轮机设备不安全。在这项研究中,引入了鞍点近似可靠性分析方法,并与协同优化方法相结合来解决上述挑战。在上述可靠性分析和设计优化过程中,使用代理模型减​​轻了基于不确定性的多学科设计和优化问题的计算负担。构建了涡轮叶片性能的平滑响应面,而不是花费大量时间进行仿真。这里解决了涡轮叶片设计问题,以验证有效性并显示给定方法的利用。

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