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丽江地区太阳能地板辐射供暖模拟分析 被引量:1

Simulation Analysis of Solar Radiant Floor Heating in Lijiang Area
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摘要 丽江地区地处云贵高原与青藏高原连接部位,气温日温差较大,光照充足,太阳辐射强,光能潜力巨大。利用丽江地区丰富的太阳能资源进行供暖有利于节约能源,保护环境。利用TRNSYS模拟软件构建一个长18. 0 m、宽6. 0 m、高3. 0 m的节能建筑仿真模型,依据丽江地区的气象参数,对室内温度及建筑热负荷进行仿真模拟。利用TRNSYS软件对太阳能供暖系统建立仿真模型进行模拟并进行系统优化。对丽江地区利用太阳能供暖系统可行性得到了验证,并且对太阳能供暖在丽江广大农村的发展具有指导意义。 Lijiang is located in the junction of Yunnan -Guizhou Plateau and the Qinghai -Tibet Plateau, the daily temperature difference is bigger, with adequate light, strong solar radiation, enormous energy potential. The use of abundant solar energy resources in Lijiang .for heating is conducive to energy conservation and environmental protection. TRNSYS simulation software is applied to build an energy - saving building model of 18. 0 m in length, 6. 0 m in width and 3. Om in height, and simulating the indoor temperature and building thermal load according to the meteorological parameters in Lijiang area. TRNSYS software is applied to simulate the solar heating system and system optimization. The feasibility of using solar heating system in Lijiang area has been verified, and it is instructive for the development of solar heating in vast rural areas of Lijiang.
作者 曹振国 罗会龙 CAO Zhen-guo;LUO Hui-long(Faculty of Civil Engineering and Mechanics,Kunming University of Science and Technology,Kunming 650504,China)
出处 《建筑节能》 CAS 2018年第10期45-47,54,共4页 BUILDING ENERGY EFFICIENCY
关键词 太阳能供暖 TRNSYS 模拟仿真 solar heating TRNSYS simulation
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  • 1伍德虎,刘业凤.太阳能空气双热源热泵测试与控制方案设计[J].制冷与空调,2006,6(6):93-96. 被引量:10
  • 2黄涛,赵军.太阳能热泵供暖系统的实验研究[J].煤气与热力,2007,27(8):71-72. 被引量:17
  • 3[2]M K Abuqudais,M A Alnimr.A Theoretical and Experimental Study of MARIXAOLR Air Heater Under Transient Conduction.Int.J.Solar Energy,1996,18(3):137-146
  • 4[3]Chiou J P.The Effect of Non-Uniform Fluid Flow Distribution on The Thermal Performance of Solar Collector.Solar Energy,1982,29(6):437-502
  • 5[4]Olive A,Costa M,Perez Segarra CD.Numerical Simulation of Solar Collectors:The Effect of Non-Uniform and Non-Steady State of The Boundary Conditions.Solar Energy,1991,47(5):359-373
  • 6[5]Bengt Perers,Chris Bales.A Solar Collector Model For TRNSYS Simulation and System Testing.IEA SHC Report.2002
  • 7Ruixiang Wang, Guozhen Xie, Qinpin Wu, et al. An air source heat pump with an advanced cycle for heating buildings in Beijing [J]. Energy Conversion and Management, 2011,52(2):1493-1500.
  • 8铁燕.新型空气源热泵辅助供热太阳能热水系统热力性能及运行特性研究[D].昆明:昆明理工大学,2009.
  • 9Aneta Hazi, Gheorghe Hazi. Comparative study of indirect photovoltaic thermal solar-assisted heat pump systems for industrial applications [J]. Applied Thermal Engineering, 2014,9(5):90-99.
  • 10Enyu Wang, Alan S Fung, Chengying Qi, et al. Performance prediction of a hybrid solar ground-source heat pump system[J]. Energy and Buildings, 2012,(4): 600-611.

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