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Experimental and Numerical Studies of the Flow Field in a Stirred Tank Equipped with Multiple Side-Entering Agitators

机译:配备多个侧入式搅拌器的搅拌槽内流场的实验和数值研究

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The flow field and the macro-mixing process in a stirred tank equipped with four side-entering agitators were investigated experimentally and numerically. Experiments were conducted using two-dimensional particle image velocimetry (PIV) measurements to characterize the flow field at different positions in the vessel. The computational fluid dynamics (CFD) simulation was performed by the software Fluent 6.3, using the standard k-e turbulent model and the multiple reference frame together with the sliding mesh technique. The macro-mixing process was also discussed using CFD and decolorization experiments. The effects of the tracer detection positions and some mounting parameters in the mixing system were discussed. The results show that the mixing process was dominated by the flow field pattern in the stirred tank. According to the mixing times under different conditions using CFD simulation, the mounting parameters including inclination angle, plunging length and mounting height of the shaft were optimized.
机译:对装有四个侧进式搅拌器的搅拌罐内的流场和宏观混合过程进行了实验和数值研究。使用二维粒子图像测速(PIV)测量进行实验,以表征容器中不同位置的流场。使用标准k-e湍流模型和多参考系以及滑动网格技术,通过Fluent 6.3软件执行了计算流体动力学(CFD)仿真。还使用CFD和脱色实验讨论了宏观混合过程。讨论了示踪剂检测位置和混合系统中一些安装参数的影响。结果表明,搅拌过程主要受搅拌槽内流场的影响。根据不同条件下的混合时间,采用CFD模拟,优化了轴的倾斜角度,插入长度和安装高度等安装参数。

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