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Effect Of Solar Chimney Inclination Angle On Space Flow Pattern And Ventilation Rate

机译:太阳烟囱倾斜角度对空间流型和通风率的影响

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摘要

The solar chimney is a simple and practical idea that is applied to enhance space natural ventilation. The chimney could be vertical or inclined. The chimney inclination angle is an important parameter that greatly affects space flow pattern and ventilation rate. In the present study, the effect of chimney inclination angle on air change per hour and indoor flow pattern was numerically and analytically investigated. A numerical simulation using Ansys, a FEM-based code, was used to predict flow pattern. Then the results were compared with published experimental measurements. A FORTRAN program was developed to iteratively solve the mathematical model that was obtained through an overall energy balance on the solar chimney. The analytical results showed that an optimum air flow rate value was achieved when the chimney inclination is between 45° and 70° for latitude of 28.4°. The numerically predicted flow pattern inside the space supports this finding. Moreover, in the present study a correlation to predict the air change per hour was developed. The correlation was tested within a solar intensity greater than or equal to 500 W/m~2, and chimney width from 0.1 m to 0.35 m for different inclination angles with acceptable values.
机译:日光烟囱是一种简单实用的想法,可用于增强空间的自然通风。烟囱可以是垂直或倾斜的。烟囱的倾斜角度是一个重要的参数,极大地影响了空间流型和通风率。在本研究中,对烟囱倾角对每小时换气量和室内流动模式的影响进行了数值和分析研究。使用Ansys(基于FEM的代码)进行的数值模拟可用于预测流动模式。然后将结果与公开的实验测量结果进行比较。开发了FORTRAN程序来迭代求解通过在太阳能烟囱上实现整体能量平衡而获得的数学模型。分析结果表明,当烟囱倾角为28.4°时,烟囱倾角在45°至70°之间时,可获得最佳的空气流速值。在空间内部进行数字预测的流动模式支持了这一发现。此外,在本研究中,开发了一种预测每小时换气量的相关性。在太阳强度大于或等于500 W / m〜2,烟囱宽度从0.1 m到0.35 m的情况下,对于不同的倾角以可接受的值测试了相关性。

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