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首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Application of Numerical Optimization Technique to Design of Forward-Curved Blades Centrifugal Fan
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Application of Numerical Optimization Technique to Design of Forward-Curved Blades Centrifugal Fan

机译:数值优化技术在前弯叶片离心风机设计中的应用

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This paper presents the response surface optimization method using three-dimensional Navier-Stokes analysis to optimize the shape of a forward-curved blades centrifugal fan. For numerical analysis, Reynolds-averaged Navier-Stokes equations with k-ε turbulence model are discretized with finite volume approximations. In order to reduce huge computing time due to a large number of blades in forward-curved blades centrifugal fan, the flow inside of the fan is regarded as steady flow by introducing the impeller force models. Three geometric variables, i.e., location of cut off, radius of cut off, and width of impeller, and one operating variable, i.e., flow rate, were selected as design variables. As a main result of the optimization, the efficiency was successfully improved. And, optimum design flow rate was found by using flow rate as one of design variables. It was found that the optimization process provides reliable design of this kind of fans with reasonable computing time.
机译:本文提出了一种使用三维Navier-Stokes分析来优化前向弯曲叶片离心风机形状的响应面优化方法。为了进行数值分析,使用有限体积近似将具有k-ε湍流模型的雷诺平均Navier-Stokes方程离散化。为了减少由于前弯曲叶片离心式风扇中的大量叶片而导致的大量计算时间,通过引入叶轮力模型,将风扇内部的流动视为稳定流动。选择三个几何变量,即截止位置,截止半径和叶轮宽度,以及一个操作变量,即流量,作为设计变量。优化的主要结果是成功地提高了效率。并且,通过将流速用作设计变量之一来找到最佳设计流速。发现优化过程为这类风扇提供了可靠的设计,并具有合理的计算时间。

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