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光伏温室技术的发展现状与未来方向 被引量:7

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摘要 核心提示 光伏温室是中国温室园艺产业近年来兴起的一种新型设施结构形式。由于能够实现资源(土地、骨架)、能源的高效利用,光伏温室已成为国内外温室园艺行业的新热点。与此同时,国家的有关政策对光伏温室的发展也给予了大力支持,光伏温室在中国将掀起一轮新的发展热潮。
作者 魏晓明
出处 《农业工程技术(温室园艺)》 2015年第11期24-28,共5页 Agriculture Engineering Technology
基金 国家科技支撑计划课题"设施节能与绿色能源利用装备研制与产业化示范"(2014BAD08B02)
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参考文献7

  • 1Sonneveld P J, Swinkels G L A M, Campen J, et al. Performance results of a solar greenhouse combining electrical and thermal energy production[J].Biosystems Engineering, 2010(106): 48-57.
  • 2Sonnevetd P J, Swinkels G L A M, Bot G P A, et al. Feasibility study for combining cooling and high grade energy production in a solar greenhouse[J}.Biosystems Engineering, 2010(105): 51-58.
  • 3Hemming S, Zward H F, Swinkels G L, et al. Development of Electricity Producing Greenhouses Two CaseStudies[J].ActaHort, 2014 (1037):129-136.
  • 4Yano A, Kadowaki M, Furue A, et al. Shading and electrical features of a photovoltalc array mounted inside the roof of an east-west oriented greenhouselJ]. BiosystemsEngineering, 2010(106): 367-377.
  • 5Kadowaki M, Yano A, Furue A, etal. Effects of greenhouse photovoltaic array shading on Welsh onion growth[J]. Biosystems Engineering, 2012(111): 290-297.
  • 6Cossu M, Murgia L, kedda L, et al. Solar radiation distribution inside a greenhouse with southoriented photovoltalc roofs and effects on crop productivity[J]. Applied Energy, 2014(133): 89-100.
  • 7赵雪,邹志荣,许红军,赵建涛,李俊.光伏日光温室夏季光环境及其对番茄生长的影响[J].西北农林科技大学学报(自然科学版),2013,41(12):93-99. 被引量:15

二级参考文献12

  • 1袁明利,罗小林.温室供电系统研究[J].农机化研究,2012,34(3):233-236. 被引量:6
  • 2Bernal-Agustin J L,Rodolfo D L. Economical and environmen- tal analysis of grid connected photovoltaic systems in Spain [J]. Renewable Energy,2006,31(8) : 1107-1128.
  • 3Seng L Y, Lalchand G, Lin G M S. Economical, environmental and technical analysis of building integrated photovoltaic sys- tems in Malaysia [J]. Energy Policy,2008,36(6) :2130-2142.
  • 4AI-Shamiry F M S,Ahmad D,Sharif A R M,et al. Design and development of a photovoltaic power system for tropical green- house cooling [J]. American Journal of Applied Sciences,2007, 4(6) 386-389.
  • 5Nayak S, Tiwari G N. Theoretical performance assessment of an integrated photovohaic and earth air heat exchanger green- house using energy and exergy analysis methods [J]. Energy and Buildings, 2009,41 (8) 888-896.
  • 6Yano A, Tsuchiya K, Nishi K, et al. Development of a green- house side-ventilation controller driven by photovoltaic energy [J]. Biosystems Engineer ng, 2007,96 (4) : 633-641.
  • 7Yano A,Furue A,Kadowaki M,et al. Electrical energy genera- ted by photovoltaic modules mounted inside the roof of a north- south oriented greenhouse [J]. Biosystems Engineering, 2009, 103(2) : 228-238.
  • 8Yano A, Kadowaki M, Furue A, et al. Shading and electrical features of a photovoltaic array mounted inside the roof of an east-west oriented greenhouse [J]. Biosystems Engineering, 2010,106(4) : 367-377.
  • 9Sonneveld P J,Swinkels G L A M,Campen J,et al. Perform- ance results of a solar greenhouse combining electrical and thermal energy production [J]. Biosystems Engineering,2010,106(1):48-57.
  • 10Sonneveld P J,Swinkels G L A M,Bot G P A,et al. Feasibility study for combining cooling and high grade energy production in a solar greenhouse [J]. Biosystems Engineering, 2010,105 (1) ,51-58.

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