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首页> 外文期刊>Progress in Nuclear Energy >Comparison of Reduced-Basis techniques for the model order reduction of parametric incompressible fluid flows
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Comparison of Reduced-Basis techniques for the model order reduction of parametric incompressible fluid flows

机译:参数化不可压缩流体流动模型顺序减少基础技术的比较

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The applicability of two Reduced-Basis techniques to parametric laminar and turbulent incompressible fluid flow problems in nuclear engineering is studied in this work. The Reduced-Basis methods are used to generate Reduced-Order Models (ROMs) that can accelerate multi-query problems often encountered in design optimization and uncertainty quantification. Both approaches are intrusive and utilize Proper Orthogonal Decomposition (POD) for data compression. The accuracy of the two methods for reconstructing the velocity, pressure, and turbulent eddy viscosity fields is assessed. The methods are classified based on how many reduced equations are involved. The first approach, often referred to as POD-FV-ROM, only solves one equation with additional physics-based approximations to relate the reduced pressure, velocity, and eddy viscosity fields. The second approach solves two equations and relies on a supremizer stabilization technique. Both methods are reviewed in the finite volume setting and are tested using transient problems: a backward facing step case with an inlet and outlet and a molten-salt closed-loop case. Extension of the methods to parametric reduced-order problems for uncertainty quantification purposes is presented. Conclusions, summarizing the advantages and disadvantages of these two approaches, and recommendations are provided.
机译:在这项工作中,研究了两种降低技术对参数核和湍流不可压缩的流体流动问题的应用。降低基础方法用于生成可加速在设计优化和不确定量化中经常遇到的多查询问题的降低阶模型(ROM)。两种方法都是侵扰性的,利用适当的正交分解(POD)进行数据压缩。评估了重建速度,压力和湍流涡流场的两种方法的准确性。该方法基于涉及的方程数量的降低数量分类。第一方法通常被称为POD-FV-ROM,仅解决一个方程,其具有额外的基于物理的近似,以涉及减压,速度和涡粘度场。第二种方法求解两个方程并依赖于前升剂稳定技术。两种方法在有限体积设定中进行了审查,并使用瞬态问题进行测试:具有入口和出口的后朝向级别和熔盐闭环壳体。介绍了用于参数下降阶问题的方法,以用于不确定量化的定量目的。结论,总结了这两种方法的优缺点和建议。

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