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PIV and dynamic LES of the turbulent stream and mixing induced by a V-grooved blade axial agitator

机译:湍流流的PIV和动态LES和V沟槽叶片轴向搅拌器诱导的混合

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摘要

The hydrodynamic behavior of a turbulent flow and the mixing characteristics generated by a V-grooved axial impeller inside an agitated tank reactor were investigated both experimentally and numerically. Angle resolved Particle Image Velocimetry (PIV) techniques with an angular displacement Delta theta - 5 degrees have been applied and two aerodynamic planes along the blades were considered. PIV-based results were compared to those obtained by Large Eddy Simulation (LES), used with the dynamic Smagorinsky-Lilly sub-grid scale (SGS) model. Results showed the existence of distinctive recirculation zones in the aerodynamic planes, and new additional frequencies in the impeller stream, induced by the grooves. A decrease of mixing time of about 11% was obtained experimentally, consequence of the better suction induced by the grooved blades in the early stages of mixing. Mean velocities, vorticity, TKE obtained from LES showed a good agreement with the PIV-based results. The distributions of turbulence dissipation rate epsilon were similar to those obtained from PIV, however showing high under-predicted magnitudes.
机译:通过实验和数值在搅拌罐反应器内部进行湍流的流体动力学和由V槽轴向叶轮产生的混合特性。角度分辨的粒子图像速度(PIV)具有角度位移Δθ-5度的技术,并且考虑了沿着叶片的两个空气动力学平面。将基于PIV的结果与大型涡旋模拟(LES)获得的结果进行了比较,与动态SMAGORINSKY-LILLE子网格秤(SGS)模型一起使用。结果表明,凹槽引起的叶轮流中的空气动力学平面中具有独特再循环区域的存在,以及叶轮流中的新附加频率。实验获得约11%的混合时间的减小,从而在混合的早期阶段中的沟槽叶片诱导的更好抽吸的结果。从LES获得的平均速度,涡旋,TKE与基于PIV的结果显示出良好的一致性。湍流耗散速率ε的分布类似于从PIV获得的那些,然而显示出高的预测幅度。

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