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Analysis of convective heat transfer improved impeller stirred tanks by the lattice Boltzmann method

机译:对流传热改进叶轮搅拌槽的格子Boltzmann方法分析

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This paper performs the lattice Boltzmann simulation combined with unknown-index algorithm for the convective heat transfer problems of an impeller stirred tank. Three types of motion of the heating impeller are adopted in this study, including rotation with constant angular velocity, oscillation and oscillating rotation, which are denoted as Types Ⅰ, Ⅱ, and Ⅲ stirrings respectively. Because the flow structures in rotation stirring case are concentric vertical, the heat transfer efficiency of the tank walls is lower than those of the other two types of stirrings. The other two types of stirrings, the flow structures include complex vortices and present better field synergy of the fluid velocity and temperature gradient, which positively contributes to the convective heat transfer efficiency. The results also indicate that a large swing process angle of the impeller with oscillating rotation stirring does not have significant advantage, because the flow phenomena would be similar to that of constant angular velocity stirring case. Basically, the Type Ⅲ stirred tank can be considered as an improved Type Ⅱ stirred tank by choosing appropriate process angle.
机译:本文对叶轮搅拌罐的对流换热问题进行了格子Boltzmann模拟与未知指标算法的结合。本研究采用加热叶轮的三种运动,包括恒定角速度旋转,振荡和振荡旋转,分别表示为Ⅰ,Ⅱ和Ⅲ型搅拌。由于旋转搅拌情况下的流动结构是同心的,因此罐壁的传热效率低于其他两种搅拌方式。其他两种类型的搅拌,其流动结构包括复杂的涡流,并表现出更好的流体速度和温度梯度场协同效应,这对对流换热效率有积极贡献。结果还表明,随着旋转搅拌的搅拌,叶轮的大摆动过程角没有明显的优势,因为其流动现象与恒定角速度搅拌的情况相似。通过选择适当的加工角度,基本上可以将Ⅲ型搅拌釜视为改进的Ⅱ型搅拌釜。

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