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首页> 外文期刊>International Journal for Numerical Methods in Fluids >NUMERICAL MODELLING AND PARTICLE IMAGE VELOCIMETRY MEASUREMENT OF THE LAMINAR FLOW FIELD INDUCED BY AN ENCLOSED ROTATING DISC
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NUMERICAL MODELLING AND PARTICLE IMAGE VELOCIMETRY MEASUREMENT OF THE LAMINAR FLOW FIELD INDUCED BY AN ENCLOSED ROTATING DISC

机译:封闭旋转圆盘引起的层流场的数值模拟和颗粒图像测速

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摘要

The fluid flow field within an enclosed cylindrical chamber with a rotating flat disc was calculated using a finite volume computational fluid dynamics (CFD) model and compared with particle image velocimetry (PIV) measurements. Two particular laminar cases near the Transitional flow regime were investigated: Reynolds number Re=2.5×1 4, chamber aspect ratio G (h/Rd )=0.2 and Re=4.2×104, G (h/Rd)=0.217. This enabled direct comparison with the numerical and experimental results reported by other researchers. The computational details and some major factors that affect the computed accuracy and convergence speed are also discussed in detail. PIV results containing some 4300 velocity vector points in each of seven planes for each case were obtained from the flow field parallel to the rotating disc. It was found that PIV results could be obtained in planes within the boundary layers as well as the core flow by careful use of a thin laser illumination sheet and correct choice of laser pulse separation. There was close agreement between numerical results, the present PIV measurements and other reported experimental and numerical results.
机译:使用有限体积计算流体动力学(CFD)模型计算了带有旋转平盘的封闭圆柱室内的流体流场,并将其与粒子图像测速(PIV)测量结果进行了比较。研究了两个接近过渡流态的特殊层流情况:雷诺数Re = 2.5×1.4,腔长宽比G(h / Rd)= 0.2和Re = 4.2×104,G(h / Rd)= 0.217。这可以直接与其他研究人员报告的数值和实验结果进行比较。还详细讨论了计算细节和影响计算精度和收敛速度的一些主要因素。从与旋转圆盘平行的流场中获得的PIV结果分别在七个平面的每个平面中包含大约4300个速度矢量点。发现通过谨慎使用薄的激光照明片并正确选择激光脉冲分离,可以在边界层内的平面以及堆芯流动中获得PIV结果。数值结果,当前的PIV测量值和其他已报告的实验和数值结果之间有着密切的一致性。

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