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A computational investigation of the effect of surface roughness on heat transfer on the stator endwall of an axial turbine

机译:表面粗糙度对轴流式涡轮机定子端壁传热影响的计算研究

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摘要

A numerical investigation of the effect of stochastic surface roughness on vane endwall heat transfer was conducted. The effect of equivalent sand grain roughness height was explored and compared with available experimental data. Steady-state computations using ANSYS CFX 14.0 in conjunction with the shear stress transport turbulence model were performed. Computations were conducted for fully turbulent flow conditions, since this best reproduces the conditions for the corresponding measurements. Roughness measurements were conducted at different locations along the vane passage. Exploration of these measurements indicated roughness Reynolds number values from the transitional and fully rough regime. The roughness model supplied in CFX was applied to explore the impact of surface roughness on heat transfer. Numerical heat transfer results in the vane passage were determined from a set of computations at the same operating point consisting of an adiabatic and a heat flux calculation. Calculations were conducted with a systematic variation of equivalent sand grain roughness heights and compared with experimental data. Results are presented for smooth and rough wall calculations at two different flow conditions.
机译:进行了随机表面粗糙度对叶片端壁传热影响的数值研究。探索了等效砂粒粗糙度高度的影响,并将其与可用的实验数据进行了比较。使用ANSYS CFX 14.0结合剪切应力传输湍流模型进行稳态计算。计算是针对完全湍流的条件进行的,因为这最好地再现了相应测量的条件。沿着叶片通道的不同位置进行粗糙度测量。对这些测量的探索表明,过渡和完全粗糙状态的粗糙度雷诺数值。 CFX提供的粗糙度模型用于探讨表面粗糙度对热传递的影响。叶片通道中传热的数值结果是根据在相同工作点由绝热和热通量计算组成的一组计算确定的。在等效沙粒粗糙度高度的系统变化下进行计算,并与实验数据进行比较。给出了在两种不同流动条件下进行光滑和粗糙壁计算的结果。

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