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Effect of rotational speed on conjugate heat transfer from an uniformly heated rotating axisymmetric disk

机译:旋转速度对均匀加热旋转轴对称盘的共轭传热的影响

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Numerical simulation of conjugate heat transfer from a heated rotating axisymmetric disk is presented. The axisymmetric two-dimensional analyses have been carried for different heat fluxes (200 W/m, 400 W/m and 600 W/m) and rotational speeds (50 rad/s, 100 rad/s and 200 rad/s) to understand the effect of rotational speed on heat transfer. Fluid flow and heat transfer governing equations are solved using commercial CFD code, ANSYS FLUENT. The conjugate heat transfer modeling is used to solve the coupled heat transfer between fluid and solid regions. Results revealed that the temperature decreases along the radius of the disk and reaching a maximum value at the centre of the disk when a constant heat flux is applied. The drop in temperature along the disk increases as the rotational speed increases which could be attributed by the fact that the convective heat transfer coefficient increases with the rotational speed.
机译:提出了从旋转的旋转轴对称盘共轭传热的数值模拟。对不同的热通量(200 W / m,400 W / m和600 W / m)和转速(50 rad / s,100 rad / s和200 rad / s)进行了轴对称二维分析转速对传热的影响。使用商业CFD代码ANSYS FLUENT求解流体流动和传热控制方程。共轭传热模型用于解决流体和固体区域之间的耦合传热。结果表明,当施加恒定的热通量时,温度沿磁盘半径降低,并在磁盘中心达到最大值。沿盘的温度下降随着转速的增加而增加,这可以归因于对流传热系数随转速而增加的事实。

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