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Chaotic heat transfer enhancement in rotating eccentric annular-flow systems

机译:旋转偏心环流系统中的混沌传热增强

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Thermal Taylor dispersion theory for time-periodic systems was used to study the extent of chaotic laminar heat transfer enhancement and axial thermal dispersion occurring during combined transverse and axial annular flow between two nonconcentric circular cylinders undergoing alternate rotations. A local Newton's 'law of cooling' boundary condition was used on the outer cylinder (partial deriv q_o), whereas the inner cylinder(partial deriv q_i) was supposed insulated. This flow configuration is widely used to study chaotic advection [1], partly because of the availability of an analytical solution for the transverse velocity field (in the Stokes-flow approximation) [2], and partly because of the possibility of experimental verification of the calculated behavior [5].
机译:用于时间周期系统的热泰勒分散理论用于研究在接受交替旋转的两个非融合圆柱体之间的组合横向和轴向环形流动期间发生混沌层流传热增强和轴向热分散的程度。 外筒(部分德夫Q_O)使用了本地牛顿的“冷却定律”边界条件,而内筒(部分衍生Q_I)被认为是绝缘的。 该流动配置广泛用于研究混沌平程[1],部分原因是因为横向速度场的分析解(在Stokes-Flow近似)[2]中,并且部分地是因为实验验证的可能性 计算的行为[5]。

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