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Modeling of Natural Ventilation in built-in photovoltaic-Trombe wall

机译:内置光伏曲线墙自然通风的建模

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The natural ventilation in a novel built-in photovoltaic-Trombe wall (BiPV-TW) was numerically simulated by CFD method. The effect of solar radiation and channel width on the airflow pattern and ventilation rate was analyzed. Results showed that the solar radiation and channel width influenced the ventilation rate remarkably. As the solar radiation increased, the ventilation rate increased. As the channel width increased from 0.1m to 0.4m, the ventilation rate monotonously increased. However, when the channel width exceeded 0.5m, the reverse flow was formed in the tope zone and the ventilation rate decreased. A maximum air volume flow rate was achieved when the channel width was approximately equal to 0.4m in a 3m tall model.
机译:通过CFD方法对新型内置光伏曲线壁(BIPV-TW)的自然通风进行了数值模拟。分析了太阳辐射和通道宽度对气流模式和通风率的影响。结果表明,太阳辐射和通道宽度显着影响通风速率。随着太阳辐射的增加,通风率增加。随着沟道宽度从0.1米增加到0.1米至0.4米,通风速率单调增加。然而,当沟道宽度超过0.5米时,在蚀雾区中形成反向流动,并且通风速率降低。当沟道宽度在3M高模型中的沟道宽度近似等于0.4m时,实现了最大空气量流速。

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