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Optimization of an internal blade cooling passage configuration using a Chimera approach and parallel computing

机译:利用嵌合方法和平行计算优化内叶片冷却通道配置

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摘要

Improving gas turbine performance depends almost exclusively on the maximum temperature of the combustion gases. This temperature is limited by the thermomechanical strength of the turbine vanes. In this work, a Chimera approach for overlapping grids in the finite element method (FEM) context is proposed to optimize the arrangement of several cooling passages within the vane to minimize its average temperature, thereby improving the thermal transfer efficiency. The scheme is based on a fixed background mesh covering the entire domain, while finer meshes surrounding the coolant passages can move around over the airfoil while searching for the best configuration of the cooling system. Information is exchanged between meshes through a high-order interpolation algorithm. The optimization strategy is developed based on the use of the population-based augmented Lagrangian particle swarm optimizer (ALPSO) to approach a probable global minimum, and then a refinement of the solution is performed using the gradient-based sequential least squares quadratic programming (SLSQP) algorithm. Both the gradient, for the gradient-based optimizer, and the function evaluations, for the population-based optimizer, are solved in parallel to speed up the solution.
机译:提高燃气轮机性能几乎完全取决于燃烧气体的最高温度。该温度受到涡轮机叶片的热机械强度的限制。在这项工作中,提出了一种用于在有限元方法(FEM)上下文中的重叠网格的嵌合方法,以优化叶片内的多个冷却通道的布置,以最小化其平均温度,从而提高热传递效率。该方案基于覆盖整个域的固定背景网格,而围绕冷却剂通道的细细网格可以在翼型上移动,同时搜索冷却系统的最佳配置。信息通过高阶插值算法在网格之间交换。优化策略是基于使用基于人口的增强拉格朗日粒子群综合优化器(ALPSO)来实现可能的全局最小值,然后使用基于梯度的序列最小二乘二次编程(SLSQP)来执行解决方案的改进(SLSQP ) 算法。对于基于群体的优化器的梯度,基于梯度的优化器和函数评估的梯度都是并行解决的,以加快解决方案。

著录项

  • 来源
    《Finite Elements in Analysis and Design》 |2020年第9期|103423.1-103423.17|共17页
  • 作者单位

    CONICET UNL Ctr Invest Metodos Computac CIMEC Colectora Ruta 168 S-N RA-3000 Santa Fe Argentina;

    CONICET UNL Ctr Invest Metodos Computac CIMEC Colectora Ruta 168 S-N RA-3000 Santa Fe Argentina;

    CONICET UNL Ctr Invest Metodos Computac CIMEC Colectora Ruta 168 S-N RA-3000 Santa Fe Argentina;

    CONICET UNL Ctr Invest Metodos Computac CIMEC Colectora Ruta 168 S-N RA-3000 Santa Fe Argentina;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chimera method; Overlapping grids; Parallel optimization; Turbine vane;

    机译:嵌合方法;重叠网格;并联优化;涡轮叶片;

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