期刊论文详细信息
Energies 卷:13
Effect of Sky Discretization for Shading Device Calculation on Building Energy Performance Simulations
FranciscoJavier González Gallero1  J.Daniel Mena Baladés1  Ismael R. Maestre1  JuanLuis Foncubierta Blázquez1 
[1] Escuela Politécnica Superior de Algeciras, University of Cadiz, 11202 Cadiz, Spain;
关键词: shading calculations;    sky discretization;    building energy simulation;   
DOI  :  10.3390/en13061381
来源: DOAJ
【 摘 要 】

The calculation of sunlit surfaces in a building has always been a relevant aspect in building energy simulation programs. Due to the high computational cost, some programs use algorithms for shading calculation for certain solar positions after discretization of hemispherical sky. The influence of the level of discretization on the estimation of incident direct radiation on building surfaces, as well as on the required computational times, are studied in this work. The direct solar energy on a window for a year, with simulation time steps of five minutes, has been simulated by using an algorithm based on Projection and Clipping Methods. A total of 6144 simulations have been carried out, varying window sizes, window orientations, typologies of shading devices, latitudes and discretization levels of the hemispherical sky. In terms of annual incident solar energy, the results show that maximum error values are about 5% for a low level of angular discretization. Errors up to 22% in hourly incident solar energy have been estimated for some of the configurations analysed. Furthermore, a great number of configurations show errors of shading factor on a window of up to 30%, which could be most relevant in studies of natural lighting. The study also shows that the improvement achieved by the most accurate discretization level implies an increase in computational cost of about 30 times.

【 授权许可】

Unknown   

  文献评价指标  
  下载次数:0次 浏览次数:0次