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CFD-Based Optimization of Fluid Flow Product Aided by Artificial Intelligence and Design Space Validation

机译:人工智能辅助的基于CFD的流体流产品优化和设计空间验证

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摘要

Computational fluid dynamics (CFD) plays an important role in investigating the flow in products. With the help of optimization algorithms, CFD-based optimization is increasingly applied in product development to improve the product design. Even though this approach is becoming increasingly mature, it is faced with the problem that the CFD solver is not able to correctly respond to the design changes under the batch mode, leading to incorrect simulation and optimization results. Besides, there is no work dedicated to dealing with the design points which are physically invalid during the optimization process. In this paper, the intelligent CFD solver is employed to analyze the flow at each design point and to set up the solver with the best fit simulation models. Based on correct simulation results, the physically invalid design points are automatically removed from the design space. Metamodeling is used to process the valid design space with simulation results provided by the intelligent solver and derive the optimum. A prototype system is developed incorporating ANSYS, Python, and MATLAB. The design optimization of a steam control valve is used as the case study to demonstrate how the proposed system works. The optimization is conducted based on the metamodel built by response surface model and radial basis function to verify the effectiveness of the proposed method.
机译:计算流体动力学(CFD)在研究产品流动方面起着重要作用。借助优化算法,基于CFD的优化已越来越多地应用于产品开发中,以改善产品设计。尽管这种方法变得越来越成熟,但仍面临CFD求解器无法在批处理模式下正确响应设计更改的问题,从而导致错误的仿真和优化结果。此外,没有工作致力于处理在优化过程中物理上无效的设计点。在本文中,智能CFD求解器用于分析每个设计点的流量,并建立具有最佳拟合仿真模型的求解器。根据正确的仿真结果,从设计空间中自动删除物理上无效的设计点。元模型用于利用智能求解器提供的仿真结果来处理有效的设计空间,并得出最优值。开发了包含ANSYS,Python和MATLAB的原型系统。案例研究以蒸汽控制阀的设计优化为例,以说明所提出的系统如何工作。基于响应面模型和径向基函数建立的元模型进行优化,以验证该方法的有效性。

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  • 来源
    《Mathematical Problems in Engineering》 |2018年第14期|8465020.1-8465020.14|共14页
  • 作者单位

    Univ Alberta, Dept Mech Engn, Edmonton, AB T6G 1H9, Canada;

    Univ Alberta, Dept Mech Engn, Edmonton, AB T6G 1H9, Canada;

    Univ Alberta, Dept Mech Engn, Edmonton, AB T6G 1H9, Canada;

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