首页> 外文期刊>中国化学工程学报(英文版) >运用粒子图像测速仪研究双层Rushton桨搅拌槽内湍流特性
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运用粒子图像测速仪研究双层Rushton桨搅拌槽内湍流特性

机译:运用粒子图像测速仪研究双层Rushton桨搅拌槽内湍流特性

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Particle Image Velocimetry(PIV)has been used to investigate turbulence characteristics in a 0.48 m diamctcr stirred vessel filled to a liquid height(H=1.4T)of 0.67 m.The agitator had dual Rushton Impellers of 0.1 9 m diamcter(D=0.4T).The developed flow patterns depend on the clearance of the lower impeller above the base of the vessel,the spacing between the two impellers,and the submergence of the uppcr impeller below the liq-uid Surface.Their combinations can generate three basic flow patterns,named,parallel,merging and diverging flows.The results of velocity measurement show that the flow characteristics in the impeller jet flow region Changes very little for different positions.Average velocity,trmling vortices and shear strain rate distributions for three flow patterns were measured by using PIV technique.The characteristics of trailing vortex and its trajectory were described in detail for those three flow patterns.Since the space.resolution of PIV can only reach the sub-grid rather than the Kolmogorov scale,a large-eddy PIV analysis has been used to estimate the distribution of the turbulent kinetic energy dissipation.Comparison of the distributions of turbulent kinetic energy and dissipation rate in merging flow shows that the highest turbulent kinetic energy and dissipation are both located in the vortex regions,but the maxima are at somewhat different lo-cations behind the blade.About 37%of the total energy is dissipated in dual impeller]ct flow regions.The obtained distribution of shear strain rate for merging flow is similar to that of turbulence dissipation,with the shear strain rate around the trailing vortices much higher than in other areas.
机译:粒子图像速度(PIV)已被用于研究填充到0.67m的液体高度(H = 1.4t)的0.48M DiamctCR搅拌容器中的湍流特性。搅拌器具有0.1 9米的双峰值叶轮(D = 0.4 T)。发育的流动模式取决于血管底部上方的下叶轮的间隙,两个叶轮之间的间距,以及uq-UID表面下方的UPPCR叶轮的潜水。该组合可以产生三个基本流动模式,命名,平行,合并和发散流量。速度测量结果表明,叶轮射流流动区域中的流动特性对于不同的位置而变化很少。测量三种流动模式的血管速度,三弦涡流和剪切应变速率分布通过使用PIV技术。对于那些三个流动模式,详细描述了尾随涡流的特性及其轨迹。SINCE空间。PIV的措施只能到达子网格大鼠她的Kolmogorov刻度比Kolmogorov Scale,用于估计湍流动能耗散的分布。湍流动能的分布和合并流动的耗散率的分布表明,湍流的动能和耗散最高两者都位于涡旋区域,但最大值在刀片后面有点不同的宽阳离子。37%的总能量在双叶轮中消散了CT流区。合并流量的剪切应变率的分布是相似的湍流耗散,剪切应变速率远远高于其他区域。

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