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塔式太阳能热发电站集热场布置优化研究 被引量:4

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摘要 针对Planta Solar 20塔式电站采用叶序排列算法对镜场重新布置,根据电站的定日镜数量,以最高效率为原则,得出镜场布置图形和每个定日镜具体坐标,并给出定日镜场的光能利用率,对镜场的余弦效率、大气衰减损失、镜场光能利用率与塔高之间的关系进行研究。
出处 《太阳能》 2015年第8期47-51,共5页 Solar Energy
基金 国家能源局"国家能源应用技术研究及工程示范项目"(NY20130101 NY20130102 NY20130103)
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参考文献8

  • 1Schramek P, Mills D R. Heliostats for maximum ground coverage[J]. Energy, 2004, 29(5): 701 - 713.
  • 2Sanchez M, Romero M. Methodology for generation of heliostat field layout incentral receiver systems based on yearly normalized energy surfaces[J]. Solar Energy, 2006, 80(7): 861 - 874.
  • 3Noone C J, Torrilhon M, Mitsos A. Heliostat field optimization a new computationally efficient model and biomimetic layout[J]. Solar Energy, 2012, 86(2): 792 - 803.
  • 4Schramek P, Mills D R, Stein W, et al. Design of the heliostat field of the CSIRO solar tower[J]. Journal of Solar Energy Engineering, 2009, 131(2): 024505.
  • 5张宏丽,Isabelle Juchli,Daniel Favrat,Xavier Pelet.塔式系统定日镜场的热经济性优化设计[J].太阳能学报,2009,30(1):55-60. 被引量:7
  • 6张宏丽,Daniel Favrat,Xavier Pelet.塔式大阳能热发电系统定日镜场的设计思考[J].太阳能,2007(11):21-23. 被引量:9
  • 7Kistler B L. A user's manual for DESOL3: A computer code for calculating the optical perfornance and optimal system design for solar thermal central receiver plants[R]. SAND86-8018, Albuquerque, 1986.
  • 8Noone C J, Torrilhon M, Mitsos A. Heliostat field optimization: A new computationally effcient model and biomimetic layout[J]. Solar Energy, 2011, 86 (2): 792 - 803.

二级参考文献12

  • 1张耀明,王军,张文进,孙利国,刘晓辉.太阳能热发电系列文章(2) 塔式与槽式太阳能热发电[J].太阳能,2006(2):29-32. 被引量:27
  • 2Schramek Philipp, Mills David R. Heliostats for maximum ground coverage[J]. Energy, 2004,29: 701--713.
  • 3Siala F M F, Elayeb M E. Mathematical formulation of a graphical method for a no-blocking heliostat field layout[J]. Renewable Energy, 2001, 23: 77--92.
  • 4Marcelino Sanchez, Manuel Romero. Methodology for generation of heliostat field layout in central receiver systems based on yearly normalized energy surfaces [ J ]. Solar Energy, 2006, 80: 861--874.
  • 5Kistler B L. A user' s manual for DESOL3 : a computer code for calculating the optical performance and optimal system design for solar thermal central receiver plants, SAND86-8018 [R]. Albuquerque, New Mexico: Sandia, 1986, 39--122.
  • 6Xavier Pelet, Daniel Favrat, Marcelino Sanchez, et al. Design of heliostat fields using a multi-objective evoluationary algorithm[A]. Solar PACES2006[ C] ,2006, A7--S1.
  • 7Philipp Schramek, David R. Mills. Heliostats for maximum ground coverage[J]. Energy, 2004, 29:701-713.
  • 8B. L. Kistler. A User' s Manual for DESOL3: A computer Code for Calculating the Optical Performance and Optimal System Design for Solar Thermal Central Receiver Plants[A]. New Mexico: the United States Department of Energy, 1986: 39-122.
  • 9G.Sassi. Some notes on shadow and blockage effects[J]. Solar energy, 1983, 31(3): 331-333.
  • 10John A.Duffie, William A. Beckman. Solar engineering of thermal processes[M].New York: A Wiley Interscience Publication, 1991, 64.

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同被引文献33

引证文献4

二级引证文献13

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