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PRE-SWIRL SYSTEM DESIGN INCLUDING INLET DUCT SHAPE BY USING CFD ANALYSIS

机译:使用CFD分析的旋流前系统设计,包括进气道形状

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Fluid characteristics of two different types of duct shapes were studied and the pre-swirl nozzle was designed for partial annulus duct shape by using computational fluid dynamics. The fully annulus inlet duct shape and partial annulus inlet duct shape which are installed in front of the pre-swirl nozzles were compared from aerodynamic perspective. The new pre-swirl nozzle was designed for partial annulus inlet duct shape to resolve aerodynamic disadvantage of partial annulus duct. Design process of new pre-swirl nozzles included the optimization process to maximize the discharge coefficient. Three different pre-swirl system were compared using the discharge coefficient, swirl ratio and temperature drop. The experiments of base pre-swirl system were conducted to validate the CFD methodology and to predict the real pre-swirl system. The scale of experimental rig was one half of real pre-swirl system. As a results, the partial annulus duct with previous pre-swirl nozzles showed 1.1% lower discharge coefficient compared with the fully annulus duct. The new designed pre-swirl nozzle with partial annulus duct increased the discharge coefficient about 1.43% than the case of partial annulus duct with previous pre-swirl nozzle, and showed 0.4% lower discharge coefficient compared with the fully annulus duct shape. The swirl ratio was same through the three pre-swirl models because the three models had the same throat area. The temperature drop was measured between the inlet duct and the exit of receiver holes. In the cases of partial annulus inlet duct, the temperature drop was lower than the fully annulus inlet duct case. The new pre-swirl nozzles could resolve the aerodynamic loss occurred in the case of partial annulus duct with previous nozzles.
机译:研究了两种不同类型的导管形状的流体特性,并通过计算流体动力学设计了用于部分环空导管形状的预旋流喷嘴。从空气动力学的角度对安装在预旋流喷嘴前面的全环形进气管形状和部分环形进气管形状进行了比较。新的预旋流喷嘴设计用于部分环形进气道的形状,以解决部分环形进气道在空气动力学方面的缺点。新的预旋喷嘴的设计过程包括优化过程,以最大程度地提高排放系数。使用排放系数,涡流比和温度降比较了三种不同的预旋流系统。进行了基础预旋流系统的实验,以验证CFD方法论并预测实际的预旋流系统。实验装置的规模是实际预旋流系统的一半。结果,与完全环形通道相比,具有先前的预旋流喷嘴的部分环形通道的排放系数降低了1.1%。新设计的带有部分环形通道的预旋流喷嘴比以前带有一个预环形喷嘴的部分环形通道的排放系数增加了约1.43%,并且与完全环形通道的形状相比,排放系数降低了0.4%。在三个预旋流模型中,旋流比相同,因为三个模型的喉部面积相同。在入口管道和接收器孔的出口之间测量了温度下降。在部分环形入口导管的情况下,温度下降低于完全环形入口导管的情况。新的预旋流喷嘴可以解决在使用先前喷嘴的部分环空管道的情况下发生的空气动力学损失。

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