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Modeling of the optimum tilt of a solar chimney for maximum air flow

机译:为最大气流设计太阳能烟囱的最佳倾斜

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The aim of this work is to develop a mathematical model to determine the tilt that maximizes natural air flow inside a solar chimney using daily solar irradiance data on a horizontal plane at a site. The model starts by calculating the hourly solar irradiation components (direct, diffuse, ground-reflected) absorbed by the solar chimney of varying tilt and height for a given time (day of the year, hour) and place (latitude). In doing so it computes the transmittance and absorbance of the glazing for the various solar irradiation components and for various tilts. The model predicts the temperature and velocity of the air inside the chimney as well as the temperatures of the glazing and the black painted absorber. Comparisons of the model predictions with CFD calculations delineate the usefulness of the model. In addition, there is a good agreement between theoretical predictions and experiments performed with a 1 m long solar chimney at different tilt positions.
机译:这项工作的目的是开发一个数学模型,以确定一个倾斜,该倾斜使用站点上水平面上的每日太阳辐照度数据确定使太阳烟囱内的自然空气流最大化。该模型通过计算在给定时间(一年中的一天,小时)和位置(纬度)上倾斜和高度变化的太阳烟囱吸收的小时太阳辐射分量(直接,漫射,地面反射)开始。这样,它可以计算出各种阳光照射组件和各种倾斜度的玻璃的透射率和吸收率。该模型预测烟囱内空气的温度和速度,以及玻璃窗和涂有黑色油漆的吸收器的温度。模型预测与CFD计算的比较描述了模型的实用性。此外,理论预测与在不同倾斜位置使用1 m长的太阳烟囱进行的实验之间有很好的一致性。

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