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Numerical prediction of surface radiation effect on thermal comfort and indoor air quality in a ventilated cavity heated from below

机译:从下面加热的通风腔内热舒适性和室内空气质量的数值预测

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This paper presents an investigation of the influence of surface radiation on indoor environmental parameters such as thermal comfort and indoor air quality. To achieve this objective, coupled heat transfer by mixed convection and radiation was numerically carried out inside a ventilated cavity. Air-C02 mixture was considered as the working fluid. Uniform heat and C02-concentration were applied at the bottom wall of the cavity. The boundary conditions of other walls were fixed at the external conditions. The same emissivity value was considered for all interior surfaces. An external fresh air enters at the cavity through an opening located on the top of the left vertical wall and exits from another one located at the bottom of the opposite wall. The mass, momentum, energy and chemical specie equations, coupled with the RNG k-e turbulence model were solved via finite volume method. The obtained results indicate that the surface radiation presents slight effect on thermal comfort indexes, while the increasing of Rayleigh number enhances them. A good indoor air quality is insured inside the studied cavity.
机译:本文介绍了表面辐射对室内环境参数的影响,如热舒适和室内空气质量。为了实现这一目标,通过混合对流和辐射的耦合热传递在通风腔内进行数值执行。 Air-CO 2混合物被认为是工作流体。在腔的底壁上施加均匀的热量和CO 2浓度。其他墙壁的边界条件在外部条件下固定。所有内部表面都考虑了相同的发射率值。外部新鲜空气通过位于左垂直壁的顶部的开口进入腔体,并从位于相对壁的底部的另一个的开口进入。通过有限体积法解决了与RNG K-E湍流模型的质量,动量,能量和化学物质特性方程。所获得的结果表明,表面辐射对热舒适指数略微影响,而瑞利数的增加增强了它们。在研究的腔内内部的室内空气质量良好。

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