首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Analysis of the impact of impeller geometry on the turbulent statistics inside a fan-stirred, cylindrical flame speed vessel using PIV
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Analysis of the impact of impeller geometry on the turbulent statistics inside a fan-stirred, cylindrical flame speed vessel using PIV

机译:使用PIV分析叶轮几何形状对风机搅拌的圆柱形火焰速度容器内的湍流统计量的影响

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Turbulence statistics of three impellers with different geometric features were measured using particle image velocimetry inside a Plexiglas model (~1:1 scale) of a cylindrical flame speed vessel (30.5 cm ID × 35.6 cm L). With four impellers arranged in a central-symmetric configuration, turbulence intensities between 1.2 and 1.7 m/s with negligible mean flow (0.1u') were attained at the lowest fan speeds. Acceptable ranges for homogeneity and isotropy ratios of the velocity fields were set within a narrow bandwidth near unity (0.9-1.1). Homogeneity ratios were unaffected by changes to the impeller geometry, and the prototype with the higher number of blades caused the flow to become anisotropic. The integral length scale of the flow fields varied between 27 and 20 mm, which correlates well with those typically observed inside a gas turbine combustor. The mechanism to independently vary the intensity level and the integral length scale was established, where turbulence intensity level was dependent on the rotational speed of the fan, and the integral length scale decreased with increasing blade pitch angle.
机译:使用圆柱形火焰速度容器(30.5 cm ID×35.6 cm L)的Plexiglas模型(〜1:1比例)内部的粒子图像测速仪测量了三个具有不同几何特征的叶轮的湍流统计。通过将四个叶轮布置成中心对称配置,在最低风扇转速下,湍流强度在1.2至1.7 m / s之间,平均流量(0.1u')可忽略不计。速度场的均质性和各向同性比的可接受范围设置在接近1(0.9-1.1)的窄带宽内。均质比不受叶轮几何形状变化的影响,带有更多叶片的原型使流动变得各向异性。流场的整体长度尺度在27到20 mm之间变化,这与在燃气轮机燃烧器内部通常观察到的尺度很好地相关。建立了独立改变强度水平和积分长度标度的机制,其中湍流强度水平取决于风扇的旋转速度,积分长度标度随着叶片桨距角的增加而减小。

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