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Simulation of Thermal Radiation and Turbulent Free Convection in an Enclosure with a Glass Wall and a Local Heater

机译:玻璃墙和局部加热器仿真热辐射和湍流自由对流

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摘要

In this study, a numerical modelling of thermal radiation and turbulent thermogravitational convection in a large-scale chamber containing a thermally-generating element is conducted. The lower border of the cabinet is maintained under adiabatic conditions, while on the other walls the convective boundary conditions (Robin boundary condition) are used. The managing equations with corresponding restrictions are transformed using the stream function–vorticity formulation and then solved by employing a finite difference method. The influence of both the height and wall emissivity of the heated source on fluid motion and the heat transmission in a large-scale chamber is investigated. Our results of the calculations on non-uniform grids with algebraic transformation are in excellent agreement with other available experimental and numerical outcomes for turbulent thermal convection in enclosures. The computations indicate that the average total Nusselt number is enhanced up to 2 times with an increase in the heater height. The results show that the surface emissivity of the heat source has a great influence on the total thermal transference coefficient. Furthermore, a growth of the heater surface emissivity has no significant effect on the flow structure.
机译:在该研究中,进行了含有热生成元件的大型室中的热辐射和湍流热再降的数值模型。机柜的下边界保持在绝热条件下,而在另一墙上的情况下,使用对流边界条件(Robin边界条件)。使用流函数 - 涡度配方进行具有相应限制的管理方程,然后通过采用有限差分方法来解决。研究了加热源对流体运动的高度和壁发射率的影响和大尺度室中的热传递。我们对具有代数转换的非均匀网格的计算结果与外壳中湍流热对流的其他实验和数值结果非常一致。计算表明,平均总营销数量高达2次,随着加热器高度的增加。结果表明,热源的表面发射率对总热转印系数有很大影响。此外,加热器表面发射率的生长对流动结构没有显着影响。

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