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Natural convection due to differential heating of inclined walls and heat source placed on bottom wall of an attic shaped space

机译:由于对斜壁的不同加热和放置在阁楼形空间底壁上的热源而产生的自然对流

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摘要

Numerical investigation of free convection heat transfer in an attic shaped enclosure with differentially heated two inclined walls and filled with air is performed in this study. The left inclined surface is uniformly heated whereas the right inclined surface is uniformly cooled. There is a heat source placed on the right side of the bottom surface. Rest of the bottom surface is kept as adiabatic. Finite volume based commercial software ANSYS 15 (Fluent) is used to solve the governing equations. Dependency of various flow parameters of fluid flow and heat transfer is analyzed including Rayleigh number, Ra ranging from 103 to 106, heater size from 0.2 to 0.6, heater position from 0.3 to 0.7 and aspect ratio from 0.2 to 1.0 with a fixed Prandtl number of 0.72. Outcomes have been reported in terms of temperature and stream function contours and local Nusselt number for various Ra, heater size, heater position, and aspect ratio. Grid sensitivity analysis is performed and numerically obtained results have been compared with those results available in the literature and found good agreement.
机译:在这项研究中,对带有两个不同加热斜壁并充满空气的阁楼形外壳中的自由对流传热进行了数值研究。左倾斜表面被均匀地加热,而右倾斜表面被均匀地冷却。底部表面的右侧有一个热源。其余的底面保持绝热。基于有限体积的商用软件ANSYS 15(Fluent)用于求解控制方程。分析了流体流动和传热的各种流动参数的相关性,包括瑞利数,Ra从103到106,加热器尺寸从0.2到0.6,加热器位置从0.3到0.7,长宽比从0.2到1.0(固定的Prandtl数)。 0.72。已经报道了关于各种Ra,加热器尺寸,加热器位置和纵横比的温度和流功能轮廓以及局部Nusselt数的结果。进行了网格灵敏度分析,并将数值获得的结果与文献中提供的结果进行了比较,并发现了很好的一致性。

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