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Experimental investigations and correlation development of convective heat transfer in a rotating smooth channel

机译:旋转光滑通道中对流传热的实验研究与相关性发展

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An experimental study has been carried out to investigate the effects of Coriolis force and centrifugal buoyancy force on convective heat transfer in a smooth cooling channel under rotating condition in a new rotation facility. The main motivation behind this work is to obtain required data for developing heat transfer correlations based on rotating state. In accordance with the open literature, four parameters, i.e.s Reynolds number, Rotation number, coolant Density Ratio and main flow direction were selected to study the influence on local heat transfer coefficient Therefore, the investigation considered Reynolds number (Re) ranging from 5000 to 12,000, Rotation number (Ro) in the range of 0-0.15, Inlet Density Ratio (DR) between 0.04 and 0.1 and at the entry developing region of a square smooth channel in a new rotation test bench. Comprehensive experiment have been conducted to collect data on the local Nusselt number at the leading and trailing walls. The results show that the local heat transfer rate is enhanced by rotation on the trailing surface and reduced on the leading surface in outward flow due to symmetrical secondary vortex generated by Coriolis force. The centrifugal buoyancy effect is favorable to the heat transfer enhancement on both walls. Also, by utilizing the extensive experimental data, correlations for the local Nusselt number have been updated for the leading and trailing walls in ranges of the mentioned flow parameters, which can be used as an internal cooling boundary condition for numerical analysis of thermal stresses and cooling efficiency maximization for gas turbine blades.
机译:已经进行了实验研究,以研究Coriolis力和离心浮力在新的旋转设施中旋转条件下的光滑冷却通道中对流热传递的影响。这项工作背后的主要动机是获得基于旋转状态的传热相关性的所需数据。根据开放文献,选择四个参数,IES雷诺数,旋转数,冷却剂密度比和主流方向,以研究对局部传热系数的影响,因此,考虑了雷诺数(RE)的调查范围为5000至12,000 ,旋转数(RO)在0-0.15的范围内,入口密度比(DR)在0.04和0.1之间,并且在新的旋转测试台中的方形平滑通道的进入显影区域。已经进行了综合实验,以收集领先和尾随墙壁上的当地营养号码的数据。结果表明,由于Coriolis力产生的对称次级涡流,通过在后表面上旋转并降低了局部传热速率并降低了向外流动的前表面。离心浮力效应对两个墙壁上的传热增强有利。另外,通过利用广泛的实验数据,在所提到的流量参数的范围内,已经更新了本地营造件数的相关性,其可以用作内部冷却边界条件,以进行热应力和冷却的数值分析燃气轮机叶片的效率最大化。

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