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首页> 外文期刊>International Journal of Thermal Sciences >Numerical investigations of turbulent natural convection heat transfer within a wind turbine nacelle operating in hot climate
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Numerical investigations of turbulent natural convection heat transfer within a wind turbine nacelle operating in hot climate

机译:炎热气候运行风力涡轮机舱内湍流自然对流热传递的数值研究

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The Algerian Sahara is characterized by severe climate conditions where temperature reaches high levels with large variations during day and season. Nacelles of wind turbines operating in this region are subjected to the overheating problem, in particular the electromechanical components becoming less effective as they heat up during use. In order to maintain an appropriate temperature of the air within the nacelle, an active cooling system has to be set up to reject the generated heat towards the external environment and the resulting heat transfer must be properly controlled. The present work investigates numerically the impact of turbulent natural convection heat transfer on the nacelle thermal behavior. Reynolds-Averaged Navier-Stokes and energy equations have been considered. ANSYS FLUENT code has been employed to solve the resulting mathematical model. Temperature and velocity profiles within the 2D and 3D-configurations of the nacelle have been presented and discussed. Variations of the average temperature inside the nacelle and the required cooling capacity are determined and thoroughly discussed.
机译:阿尔及利亚撒哈拉的特点是严重的气候条件,温度达到高水平,在白天和季节。在该区域中操作的风力涡轮机的熔涡涡轮机进行过热问题,特别是机电部件在使用过程中加热时变得较小。为了保持机舱内的空气的适当温度,必须设置有源冷却系统以拒绝产生的外部环境的产生,并且必须适当地控制所得到的热传递。目前的工作在数值上调查了湍流自然对流传热对机舱热行为的影响。 reynolds平均的Navier-Stokes和能量方程已经考虑。 ANSYS流利的代码已被用于解决结果的数学模型。已经提出和讨论了2D和3D配置内的温度和速度曲线和机舱的3D配置。确定和彻底地讨论机舱内的平均温度的变化和所需的冷却能力。

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