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Numerical Modelling of Thermal Comfort Conditions in an Indoor Space with Solar Radiation Sources

机译:具有太阳辐射源的室内空间热舒适条件的数值模拟

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In this paper, a three-dimensional case of heat transfer and air flow is presented for indoor space cooling with a wall-mounted A/C unit during the summer in Rijeka, Croatia. Numerical modelling is used to analyse the effect of different air flow angles of the A/C unit on the temperature and air velocity distribution under standard conditions with and without a direct solar radiation source. As parameters of thermal comfort conditions, the airflow velocities, indoor temperatures with its gradients, and the mean radiant temperature are analysed. Physical processes are modelled using the FLUENT computational fluid dynamics software. Calculations are carried out for an empty room without internal heat sources. When direct solar radiation through the window for an extreme case of summer solstice is included in the calculation, considerable deviations from thermal comfort conditions are observed, yielding the conclusion that solar radiation must be included in numerical simulations to properly predict heat balance and thermal comfort parameters in enclosed spaces.
机译:本文介绍了在克罗地亚里耶卡夏季使用壁挂式空调机进行室内空间冷却的三维传热和空气流动情况。数值模型用于分析在有和没有直接太阳辐射源的情况下,空调单元的不同气流角度对温度和空气速度分布的影响。作为热舒适条件的参数,分析了气流速度,具有梯度的室内温度以及平均辐射温度。使用FLUENT计算流体动力学软件对物理过程进行建模。对于没有内部热源的空房间进行计算。如果在夏至的极端情况下通过窗户直接射入太阳辐射,则观察到与热舒适条件的偏差很大,得出的结论是,数值模拟中必须包括太阳辐射,才能正确预测热平衡和热舒适参数在封闭的空间中。

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