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A study of the heat transfer characteristics of a laser rod in a concentric circular tube

机译:同心圆管中激光棒的传热特性研究

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An analytical solution was derived from a two-dimensional heat conduction model with non-uniform boundary conditions for a side-pumped, side-cooled cylindrical laser rod. The convective heat transfer coefficient and the spatially varying fluid temperature were determined from the theoretical solutions or experimental correlations of convective heat transfer in an annular passage with prescribed heat fluxes. The first term of the analytical solution coincides with the result of the one-dimensional model. The other terms indicate that the axial temperature-rise in a laser rod has positive correlations with the axial coolant temperature-rise, the radial Biot number and the length-to-radius ratio of the laser rod. Subsequently, a conjugate numerical simulation that couples up the fluid convection and the solid conduction was performed. Compared with the analytical solution, the conjugate numerical simulation better exhibits the entrance effects of flow and heat transfer; therefore, it may provide more accurate solution in specific cases.
机译:从具有非均匀边界条件的二维热传导模型得出了解析解,该二维边界条件是侧抽式,侧冷式圆柱激光棒的。对流传热系数和空间变化的流体温度是由具有预定热通量的环形通道中对流传热的理论解或实验相关性确定的。解析解的第一项与一维模型的结果一致。其他术语表明,激光棒中的轴向温度升高与轴向冷却剂温度升高,径向比奥数和激光棒的长径比呈正相关。随后,进行了将流体对流和固体传导耦合起来的共轭数值模拟。与解析解相比,共轭数值模拟更好地体现了流动和传热的入口效应。因此,它可以在特定情况下提供更准确的解决方案。

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