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Design optimization of low-speed axial flow fan blade with three-dimensional RANS analysis

机译:基于三维RANS分析的低速轴流风机叶片设计优化

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This work presents a numerical optimization procedure for a low-speed axial flow fan blade with polynomial response surface approximation model. Reynolds-averaged Navier-Stokes equations with SST turbulence model are discretized by finite volume approximations and solved on hexahedral grids for flow analyses. The blade profile as well as stacking line is modified to enhance blade total efficiency, i.e., the objective function. The design variables of blade lean, maximum thickness and location of maximum thickness are selected, and a design of experiments technique produces design points where flow analyses are performed to obtain values of the objective function. A gradient-based search algorithm is used to find the optimal design in the design space from the constructed response surface model for the objective function. As a main result, the efficiency is increased effectively by the present optimization procedure. And, it is also shown that the modification of blade lean is more effective to improve the efficiency rather than modifying blade profile.
机译:这项工作提出了一个具有多项式响应面近似模型的低速轴流风机叶片的数值优化程序。利用有限体积近似将具有SST湍流模型的雷诺平均Navier-Stokes方程离散化,并在六面体网格上求解以进行流量分析。修改了叶片轮廓以及堆叠线以增强叶片总效率,即目标功能。选择叶片倾斜度,最大厚度和最大厚度位置的设计变量,并通过实验技术设计产生设计点,在其中进行流量分析以获得目标函数的值。基于梯度的搜索算法用于从构造的目标函数响应面模型中找到设计空间中的最佳设计。作为主要结果,通过本优化程序有效地提高了效率。并且,还显示出改变叶片倾斜比改变叶片轮廓更有效地提高效率。

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