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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Shape Optimization of Forward-Curved-Blade Centrifugal Fan with Navier-Stokes Analysis
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Shape Optimization of Forward-Curved-Blade Centrifugal Fan with Navier-Stokes Analysis

机译:基于Navier-Stokes分析的前弯叶片离心风机的形状优化

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In this paper,the response surface method using a three-dimensional Navier-Stokes analysis to optimize the shape of a forward-curved-blade centrifugal fan is described.For the numerical analysis,Reynolds-averaged Navier-Stokes equations with the standard kappa-epsilon turbulence model are discretized with finite volume approximations.The SIMPLEC algorithm is used as a velocity-pressure correction procedure.In order to reduce the huge computing time due to a large number of blades in forward-curved-blade centrifugal fan,the flow inside of the fan is regarded as steady flow by introducing the impeller force models.Four design variables,i.e.,location of cutoff,radius of cutoff,expansion angle of scroll,and width of impeller,were selected to optimize the shapes of scroll and blades.Data points for response evaluations were selected by D-optimal design,and a linear programming method was used for the optimization on the response surface.As a main result of the optimization,the efficiency was successfully improved.Effects of the relative size of the inactive zone at the exit of impeller and momentum fluxes of the flow in scroll on efficiency were further discussed.It was found that the optimization process provides a reliable design of this kind of fan with reasonable computing time.
机译:本文介绍了一种响应面方法,该方法使用三维Navier-Stokes分析来优化前弯叶片离心式风扇的形状。对于数值分析,采用标准kappa-Reynolds平均Navier-Stokes方程。用有限体积近似离散化ε湍流模型。采用SIMPLEC算法作为速度-压力校正程序。为了减少前弯叶片离心式风扇中大量叶片导致的大量计算时间,内部流动通过引入叶轮力模型,将风扇的换向视为稳定流动。选择了四个设计变量,即截止位置,截止半径,涡旋膨胀角和叶轮宽度,以优化涡旋和叶片的形状。通过D优化设计选择响应评估的数据点,并使用线性规划方法对响应表面进行优化。作为优化的主要结果,效率进一步讨论了叶轮出口处非活动区的相对大小和涡旋流的动量通量对效率的影响。发现优化过程为这种风机的合理设计提供了可靠的设计。计算时间。

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