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Turbulent Flow Development inside a Rotating Two-Pass Square Duct with Porous Blocks

机译:旋转双通道管内的湍流流动开发与多孔块

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This paper presents an experimental investigation of turbulent flow inside square-sectioned channels connected with a square-ended bend using particle image velocimetry (PIV). Aluminium porous foam blocks of aspect ratio of 1.5 with 0.93 porosity and pore density per cm of 2, are attached to two opposite walls of the straight section normal to the turn axis, in a staggered manner. The spacing ratio of the blocks (S/D) is 1; whereas the height ratio (h/D) is 0.6. Water is used as the working fluid at Reynolds number of 36,000. The duct is either stationary or rotates orthogonally about an axis normal to that of the turn at a rotation number of 0.32. Results show the serpentine manner of the flow in the upstream and downstream channels due to the presence of the porous blocks. While in the straight sections there is no flow separation downstream of each block, turbulence levels are raised by the blocks' presence. Within the bend, in contrast to the case with a smooth upstream section, a single vortex dominates the flow. For the first time, the effects of orthogonal rotation are also highlighted. While rotation does not change the overall flow character, it does force more fluid through the blocks on the duct trailing (pressure) side.
机译:本文介绍了使用颗粒图像速度(PIV)与方形弯曲连接的方段通道内部湍流的实验研究。梯度比为1.5的铝多孔泡沫块,0.93孔隙率和每厘米2的孔密度,以交错的方式连接到正常的直线截面的两个相对截面。块(S / D)的间距比为1;而高度比(H / D)为0.6。水用作Reynolds的工作流体36,000。管道要么静止或正交地旋转围绕正常到0.32的旋转数正常的轴。结果显示由于多孔块的存在,上游和下游通道中的流动的蛇形方式。虽然在直线部分中,每个块的下游没有流动分离,但是块的存在提高了湍流水平。在弯曲中,与具有光滑上游部分的情况相比,单个涡旋主导流动。首次突出显示正交旋转的影响。虽然旋转不会改变整个流量特征,但它确实会在管道尾部(压力)侧的块上施加更多的流体。

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