南京师大学报(自然科学版)2026,Vol.49Issue(3):16-22,7.DOI:10.3969/j.issn.1001-4616.2026.03.003
建筑光伏一体化瓦屋面构造优化
Structure Optimization of Building Integrated Photovoltaic Tile Roof
摘要
Abstract
This paper proposes a novel building-integrated photovoltaic(BIPV)tile module,builds an experimental test rig in Beijing,and establishes a corresponding numerical model to optimize the structural parameters of the module,addressing the heat dissipation problem of BIPV tile roofs.Taguchi method and Computational Fluid Dynamics(CFD)numerical simulation were employed to design and simulate orthogonal schemes,optimizing photovoltaic tile roof structure for the first time by considering three factors:height of counter batten,radius of heat emission hole and hole spacing.The results indicate that the radius of heat emission hole has the most significant impact on the temperature of the photovoltaic backsheet,followed by hole spacing and the height of counter batten.In the Beijing area,the optimal scheme features a counter batten height of 60 mm,radius of heat emission hole of 60 mm and spacing between heat emission holes of 250 mm.Compared with the control group,the temperature of the photovoltaic panel backsheet is reduced by 1.43℃.关键词
建筑光伏一体化瓦屋面/结构优化/散热/田口法/计算流体力学仿真Key words
building integrated photovoltaic tile roof/structure optimization/heat dissipation/Taguchi method/Computa-tional Fluid Mechanics simulation分类
能源科技引用本文复制引用
冯连元,孙畅,张靖媛,鲁永飞,鞠晓磊..建筑光伏一体化瓦屋面构造优化[J].南京师大学报(自然科学版),2026,49(3):16-22,7.基金项目
河北水利电力学院基本科研业务费项目(SYKY2402)、中国建筑设计研究院有限公司科技创新项目(1100C080240213). (SYKY2402)