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Solar Radiation Estimations Over India Using Meteosat Satellite Images

机译:使用Meteosat卫星图像估算印度的太阳辐射

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摘要

The paper presents a study of the solar potential of different shapes of two-story single family housing units, located in mid-latitude climate. Seven plan geometries are studied: square, rectangle, trapezoid, L, U, H and T shapes. The study investigates the effect of these shapes on two major response variables - Solar radiation incident on equatorial-facing facades and transmitted by the fenestration of such facades, and electricity production potential of building integrated photovoltaic (BIPV) covering roof surfaces with optimal solar exposure. The parameters, whose effects on the response variables are investigated, include, in addition to the basic shapes and roof design, variations to the geometry of L and U shapes and variations to the roof design. Shape variations include varying values of the relative dimensions of shading and shaded facades and variations to the angle enclosed by the wings of these shapes. Variations of roof design consist of modifications to the tilt and side angles of hip roofs. The results indicate that the number of shading facades in-self shading geometries and their relative dimensions are the major parameters affecting solar incident and transmitted radiation. Manipulation of the orientation of wings in L shape units can result in increased peak electricity generation potential, and in shifting the timing of the peak by up to 2 h either side of solar noon. The shift of peak load may be economically beneficial, facilitating more even distribution of electricity production over an assemblage of buildings. Judicious manipulation of unit shapes and window location can lead to optimization of solar radiation and its utilization for electricity generation and passive solar gain.
机译:本文介绍了位于中纬度气候下不同形状的两层单户住宅单元的太阳能潜力的研究。研究了七个平面几何形状:正方形,矩形,梯形,L,U,H和T形状。该研究调查了这些形状对两个主要响应变量的影响-入射到赤道正面的太阳辐射并通过这些正面的开窗传播,以及建筑屋顶覆盖有最佳日照的集成光伏(BIPV)的发电潜力。研究了这些参数对响应变量的影响,除了基本形状和屋顶设计之外,还包括L和U形状的几何形状的变化以及屋顶设计的变化。形状变化包括阴影和阴影外观的相对尺寸的变化值,以及这些形状的机翼所包围的角度的变化。屋顶设计的变化包括对臀部屋顶的倾斜和侧角的修改。结果表明,遮阳幕墙自身的遮阳几何形状的数量及其相对尺寸是影响太阳入射和透射辐射的主要参数。以L形单位操纵机翼的方向可能会导致峰值发电电势增加,并使峰值时间在太阳正午两边最多偏移2小时。峰值负载的转移可能在经济上是有利的,从而有助于在整个建筑物中更均匀地分配电力。单元形状和窗口位置的明智操纵可导致太阳辐射的优化及其在发电和被动式太阳能获取中的利用。

著录项

  • 来源
    《Solar Energy》 |2011年第9期|p.1864-1877|共14页
  • 作者单位

    Department of Building Civil and Environmental Engineering (BCEE), Concordia University, Montreal, Canada;

    Department of Building Civil and Environmental Engineering (BCEE), Concordia University, Montreal, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Active solar system; Energy; Passive solar system; Solar energy; Geometry; Shape;

    机译:主动太阳能系统;能源;无源太阳系;太阳能;几何;形状;

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