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Hybrid numerical simulation of large-scale gas-fired tubular heat exchangers

机译:大型燃气管式换热器的混合数值模拟

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This article presents a hybrid computational fluid dynamics (CFD) modeling approach to the large-scale gas-fired heat exchanger. As the full-grid simulation on this heat exchanger requires impractical computational cost, a simplified "1D + 2D + 3D" hybrid CFD model is developed to reduce the computational cost and make the simulation doable on the common workstations. In this model, the air side is simulated by the 3D CFD model with the porous media simplification on tube bundles. The gas side is modeled by a 2D axisymmetric combustion model and a 1D duct model, which is implemented by the user-defined function (UDF) method. Furthermore, the "1D + 2D " gas-side models are coupled with the "3D" air-side model, while the UDF is coded for updating the boundary conditions on both sides during iterations. Reasonable agreement is achieved between the simulations and the measured results of pressure drop, overall heat transfer rate, air temperature rise, and tube wall temperature distributions.
机译:本文提出了一种用于大型燃气热交换器的混合计算流体动力学(CFD)建模方法。由于在此热交换器上进行全网格模拟需要不切实际的计算成本,因此开发了简化的“ 1D + 2D + 3D”混合CFD模型以降低计算成本并使模拟在普通工作站上可行。在此模型中,通过3D CFD模型模拟空气侧,并简化了管束上的多孔介质。气体侧由2D轴对称燃烧模型和1D管道模型建模,这由用户定义函数(UDF)方法实现。此外,“ 1D + 2D”气体侧模型与“ 3D”空气侧模型耦合,而UDF被编码以在迭代过程中更新两侧的边界条件。在模拟与压力降,总传热率,空气温度升高和管壁温度分布的测量结果之间达成合理的一致。

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