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Conjugate Heat Transfer Simulation for Unstructured Grids

机译:非结构网格的共轭传热模拟

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The coupled calculation of the fluid flow and the solid heat transfer (conjugate heat transfer) is a promising approach in engineering specially to the thermal problem of turbine blade with internal cooling. A conjugate heat transfer code has been built on the hybrid unstructured meshes in this paper. The fluid flow is simulated by Reynolds-averaged Navier-Stokes equations and the turbulence model is Spalart-Allmaras model. The solid heat transfer is simulated by heat conduction equation. At every iteration, the couple approach is achieved by maintaining a continuous local heat flux and a common temperature at the points along the fluid-solid interface. The key of the couple approach is the calculation of interface temperature which maintains the equality of the local heat flux passing the interface. On the fluid-solid interface, a point to point mesh relationship in the purpose of avoiding interpolation has been built in order to guarantee information delivery between the fluid domain and solid domain. To validate the code, computational results have been compared with theoretical and experimental results for laminar couple flat plate and Mark-Ⅱ turbine guide blade. All results showed well compared with theoretical and experimental results. All these results verified the conjugate capability of the code.
机译:流体流动与固体传热(共轭传热)的耦合计算是专门针对带有内部冷却的涡轮机叶片热问题的工程方法。本文在混合非结构化网格上建立了共轭传热代码。用雷诺平均的Navier-Stokes方程模拟流体流动,湍流模型为Spalart-Allmaras模型。通过热传导方程模拟了固体的传热。在每次迭代中,通过在沿流体-固体界面的各个点上保持连续的局部热通量和共同的温度来实现耦合方法。耦合方法的关键是界面温度的计算,该温度可保持通过界面的局部热通量相等。在流固界面上,为了避免插值,已经建立了点对点网格关系,以确保在流域和实体域之间传递信息。为了验证该代码,将计算结果与层流耦合平板和Mark-Ⅱ涡轮导向叶片的理论和实验结果进行了比较。与理论和实验结果相比,所有结果均显示良好。所有这些结果验证了代码的共轭能力。

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