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Hydrodynamic Mixed Convection in a Lid-Driven Hexagonal Cavity with Corner Heater 被引量:1
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作者 M. Jahirul Haque Munshi Golam Mostafa +1 位作者 A. B. S. Manik Munsi Md. Waliullah 《American Journal of Computational Mathematics》 2018年第3期245-258,共14页
Hydrodynamic mixed convection in a lid-driven hexagonal cavity with corner heater is numerically simulated in this paper by employing finite element method. The working fluid is assigned as air with a Prandtl num-ber ... Hydrodynamic mixed convection in a lid-driven hexagonal cavity with corner heater is numerically simulated in this paper by employing finite element method. The working fluid is assigned as air with a Prandtl num-ber of 0.71 throughout the simulation. The left and right walls of the hex-agonal cavity are kept thermally insulated and the lid moves top to bottom at a constant speed U0. The top left and right walls of the enclosure are maintained at cold temperature Tc. The bottom right wall is considered with a corner heater whereas the bottom remaining part is adiabatic and inside the cavity a square shape heated block Th. The focus of the work is to investigate the effect of Hartmann number, Richardson number, Grashof number and Reynolds number on the fluid flow and heat transfer characteristics inside the enclosure. A set of graphical results is presented in terms of streamlines, isotherms, local Nusselt number, velocity profiles, temperature profiles and average Nusselt numbers. The results reveal that heat transfer rate increases with increasing Richardson number and Hartmann number. It is also observed that, Hartmann number is a good control parameter for heat transfer in fluid flow in hexagonal cavity. 展开更多
关键词 Mixed Convection Lid-Driven HEXAGONAL CAVITY Finite Element Method Square Block corner heater
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低压加热器管板的优化设计与探讨
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作者 刘继欣 顾琼彦 郑弘毅 《电站辅机》 2017年第3期8-11,共4页
依据现行3种加热器设计规范,设计某型低压加热器。按不同的设计规范,分别对低压加热器管板进行了强度计算。根据计算结果,比对了不同设计规范在计算方面的差异,并探讨了优化管板设计的方向。通过实例,在管板的壳侧面和管板的水侧面上,... 依据现行3种加热器设计规范,设计某型低压加热器。按不同的设计规范,分别对低压加热器管板进行了强度计算。根据计算结果,比对了不同设计规范在计算方面的差异,并探讨了优化管板设计的方向。通过实例,在管板的壳侧面和管板的水侧面上,分别设置了应力释放槽,并提出了设计时应注意的要点。 展开更多
关键词 低压加热器 管板 强度 计算 优化 设计 应力 释放槽
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