New advancements of building integrated photovoltaic/thermal system(BIPV/T)

被引:0
|
作者
Wang J. [1 ]
Yu B. [1 ]
Wang C. [1 ]
Ji J. [1 ]
机构
[1] Department of Thermal Science and Energy Engineering, University of Science and Technology of China, Hefei
来源
关键词
Building energy consumption; Building energy efficiency; Building integrated photovoltaic/thermal (BIPV/T); Indoor environment; Solar energy;
D O I
10.19912/j.0254-0096.tynxb.2020-1029
中图分类号
学科分类号
摘要
To address the existing problems on solar building integration, some novel concepts, methods and functions of the comprehensive utilization of BIPV/T are proposed. They can not only improve the comprehensive utility efficiency of solar building integration, reduce cost, but also make solar energy more functional and more efficient all year round. The paper introduces relevant new achievements of University of Science and Technology of China, including principles, functions, and efficiencies of the BIPV/Water system, CdTe(cadmium telluride) PV-ventilation system, composite passive BIPV/T-wall system, BIPV/T-catalytic/sterilization wall system, which expand new ways of research and application of solar building integration. The results provide novel methods to realize large-scale applications of solar buildings and create a healthy and comfortable indoor environment. © 2022, Solar Energy Periodical Office Co., Ltd. All right reserved.
引用
收藏
页码:72 / 78
页数:6
相关论文
共 41 条
  • [1] China Building Energy Association, China building energy research report 2020, Journal of BEE, 49, 2, pp. 1-6, (2021)
  • [2] DAI B L, TONG Y, HU Q, Et al., Characteristics of thermal stratification and its effects on HVAC energy consumption for an atrium building in south China, Energy, 249, (2022)
  • [3] CHOW T T., A review on photovoltaic/thermal hybrid solar technology, Applied energy, 87, 2, pp. 365-379, (2010)
  • [4] DEBBARMA M, SUDHAKAR K, BAREDAR P., Comparison of BIPV and BIPVT: A review, Resource-efficient technologies, 3, 3, pp. 263-271, (2017)
  • [5] KUMAR R, ROSEN M A., A critical review of photovoltaic-thermal solar collectors for air heating, Applied energy, 88, 11, pp. 3603-3614, (2011)
  • [6] BUONOMANO A, CALISE F, PALOMBO A, Et al., BIPVT systems for residential applications: An energy and economic analysis for European climates, Applied energy, 184, pp. 1411-1431, (2016)
  • [7] KAMTHANIA D, NAYAK S, TIWARI G N., Performance evaluation of a hybrid photovoltaic thermal double pass facade for space heating, Energy buildings, 43, 9, pp. 2274-2281, (2011)
  • [8] YANG S L, FIORITO F, PRASAD D, Et al., A sensitivity analysis of design parameters of BIPV/T-DSF in relation to building energy and thermal comfort performances, Journal of building engineering, 41, 8, (2021)
  • [9] YANG S, CANNAVALE A, DI CARLO A, Et al., Performance assessment of BIPV/T double-skin façade for various climate zones in Australia: Effects on energy consumption, Solar energy, 199, pp. 377-399, (2020)
  • [10] CHEN Y X, ATHIENITIS A K, GALAL K., Modeling, design and thermal performance of a BIPV/T system thermally coupled with a ventilated concrete slab in a low energy solar house: Part 1, BIPV/T system and house energy concept, Solar energy, 84, 11, pp. 1892-1907, (2010)