参考文献/References:
[1] 李玥,范蕊,肖洪海. 中国西藏地区太阳能供暖系统优化研究[J]. 建筑科学,2019,35(2):21-28.
LI Yue, FAN Rui, XIAO Honghai. The optimization research of solar heating system in tibet[J].Building Science, 2019,35(2):21-28.
[2]王磊,程建国,许志浩,等. 西藏太阳能与水源热泵联合供暖系统优化[J]. 暖通空调,2007,37(11):90-94.
WANG Lei, CHENG Jianguo, XU Zhihao, et al. Optimization of solar energy heating system combined with water source heat pumps in tibet[J]. Journal of HV & AC, 2007,37(11):90-94.
[3]白旭升,李保国,苏树强. 空气式太阳能供暖系统在西藏地区的应用[J]. 暖通空调,2018,48(7):94-97.
BAI Xusheng, LI Baoguo, SU Shuqiang. Application of solar air heating system in tibet area[J]. Journal of HV & AC, 2018,48(7):94-97.
[4]刘艳峰,王登甲.太阳能地面采暖系统蓄热水箱容积分析[J]. 太阳能学报,2009,30(12):1636-1639.
LIU Yanfeng, WANG Dengjia. Volume of heat storage tank for solar floor heating[J]. Acta Enerciae Solaris Sinica, 2009,30(12):1636-1639.
[5]ZHANG R, WANG D, LIU Y, et al. Economic optimization of auxiliary heat source for centralized solar district heating system in Tibetan Plateau, China[J/OL]. Energy Conversion and Management, 2020; 270:114997.
[6]Solar heat for cities: The sustainable solution for district heating[R/OL]. Nov.2019. https://task55.iea-shc.org/publications; [2021-08-10].
[7]TSCHOPP D, TIAN Z, BERBERICH M, et al. Large-scale solar thermal systems in leading countries: A review and comparative study of Denmark, China Germany and Austria[J]. Applied Energy, 2020,1-19.
[8]Saga in Tibet tests solar heating in public buildings[J/OL]. https://www.solarthermalworld.org/news/saga-tibet-tests-solar-heating-public-buildings; 2021 [2021-08-10].
[9]ZENG R, ZHANG X. Optimization and performance comparison of combined cooling heating and power ground source heat pump/photovoltaic/solar thermal system under different load ratio for two operation strategies[J]. Energy Conversion and Management, 2020, 208(3):1-13.
[10]高国帅. 基于分布式光伏发电的农村家庭电采暖方式优化研究[D].北京:华北电力大学,2019.
GAO Guoshuai. Research on optimization of rural household electric heating mode based on distributed photovoltaic power generation [D]. Beijing: North China Electric Power University,2019.
[11]TONG J, QUAN Z. The study on the performance of solar photovoltaic and air source heat pump composite building energy supply system[C]//10th International Symposium on Heating, Ventilation and Air Conditioning, Jinan China:ISHVAC,2017.
[12]张瑞丹,李银轮,周家城.青海地区光伏供暖技术选型及效益分析[J].河南科技,2020,39(34):139-141.
ZHANG Ruidan, LI Yinlun, ZHOU Jiancheng. Technology selection and efficiency analysis of photovoltaic heating in qinghai region[J]. Henan science and technology,2020,39(34):139-141.
[13]王良,李明,韩友华,等.光伏直驱空气源热泵储能供暖性能分析[J].太阳能学报,2020,41(10):159-166.
WANG Liang, LI Ming, HAN Youhua et al. Analysis of energy storage and heating performance of photovolatic direct-driven air source heat pump.[J].Acta Energiae Solaris Sinica,2020,41(10):159-166.
[14]赵学林. 太阳能光伏光热耦合热泵供热系统动态模拟与性能研究[D].北京:华北电力大学,2020.
ZHAO Xuelin. Dynamic simulation and performance study of solar photovoltaic/thermal coupled heat pump heating system[D]. Beijing: North China Electric Power University,2020.
[15]OZCAN HG, VARGA S, GUNERHAN H, el at. Numerical and experimental work to assess dynamic advanced exergy performance of an on-grid solar photovoltaic-air source heat pump-battery system[J]. Energy Conversion and Management, 2021, 227(1):1-16.
[16]王登甲,刘艳峰.西藏高原太阳能供暖“高原病”问题探讨[J].暖通空调,2021,51(8):7-11.
WANG Dengjia,LIU Yanfeng.“Altitude Sickness”problem of solar heating in Tibetan plateau[J].Journal of HV & AC,2021,51(8):7-11.
[17]KLEIN S A, BECKMAN A, MITCHELLW, et al.(2017)TRNSYS v18: A transient system simulation program. madison, Solar Energy Laboratory. University of Wisconsin - Madison.
[18]HUANG J, FAN J, FURBO S, et al. Economic analysis and optimization of combined solar district heating technologies and systems[J]. Energy, 2019,186:1-16.