期刊文献+

基于SWAN模式的成山头海域波浪能资源评估 被引量:7

WAVE ENERGY RESOURCES ASSESSMENT IN THE CHENGSHAN CAPE SEA DURING THE LAST 20 YEARS BY USING SWAN WAVE MODEL
原文传递
导出
摘要 采用中尺度大气模式MM5构建渤海、黄海和东海高时空分辨率风场,以此风场驱动第三代海浪数值模式SWAN,得到成山头海域1991年1月至2010年12月较高分辨率的波浪场,计算了成山头海域的波浪能流密度,综合考虑能流密度的大小和10个站位能流密度分级统计的特征等方面对成山头海域波浪能资源进行了研究,寻找该海域波浪能资源的相对优势区域,为波浪能海上测试场场址的选择提供科学依据。 In this paper, the third-generation wave model SWAN was used to simulate the wave fie the Chengshan Cape Sea from January 1991 to December 2010 with wind input of reanalysis wind from MMS. In order to evaluate the wave energy resources reasonably, the seasonal characteris frequency of wave energy scales and wave energy statistics according to different energy levels at di ent stances were analyzed. As a result, the dominant areas of wave energy resources in the Cheng Cape Sea were found which can be applied guidance to wave power testing plant location. ld of field tics, ffer- shan
出处 《海洋湖沼通报》 CSCD 北大核心 2013年第3期1-9,共9页 Transactions of Oceanology and Limnology
基金 波浪能 潮流能海上试验与测试场建设论证及工程设计项目(GHME2010ZC10)资助
关键词 MM5 SWAN 成山头 波浪能测试场的选址 MMS SWAN the Chengshan Cape Sea wave power testing plant location
  • 相关文献

参考文献15

  • 1刘美琴,郑源,赵振宙,仲颖.波浪能利用的发展与前景[J].海洋开发与管理,2010,27(3):80-82. 被引量:38
  • 2Tornkvist, R. , Ocean Wave Power Station, Report 28, Swedish Technical Scientific Academy, Helsinki Finland, 1975.
  • 3M. Leishman, J. , and G. Scobie, The development of wave power, NEL Report No EAU. M25, 1976.
  • 4Pontes, M. T. , Assessing the European Wave Energy Resource, [J]. Offshore Mechanics and Arctic Engineering, 1998, 120. 226- 231.
  • 5Pontes, M. , S. Barslow, L. Bertotti, L, Cavaleri, and H. Oliveira-Pires, Use of Numerical Wind-Wave Models for Assessment of the Offshore Wave Energy Resource, [J]. Offshore Mechanics and Arctic Engineering, 1997, 119:184 190.
  • 6Barstow, S. , O. Haug, and H. Krogstad, Satellite Altimeter Data in Wave Energy Studies, Proc. Waveff 97, ASCE, 1998, 2.- 339- 354.
  • 7Cornett, A. M. , Proe. 18th International Conference on Offshore and Polar Engineering Vancouver, BC, Canada, 2008.
  • 8Folley, M. , &. T. J. T. Whittaker, Analysis of the nearshore wave energy resource. Renewable Energy, 2009, 34(7) : 1709-1715.
  • 9Iglesias, G. , and R. Carballo, Wave energy resource in the Estaca de Bares area (Spain) Renewable Energy 35 2010 1574-1584.
  • 10Pukha Lenee-Bluhm, Robert Paasch, H. Tuba 9. zkan Hailer, Renewable Energy, 36(2011) = 2106-2119.

二级参考文献28

  • 1任建莉,钟英杰,张雪梅,徐璋.海洋波能发电的现状与前景[J].浙江工业大学学报,2006,34(1):69-73. 被引量:70
  • 2王忠,王传崑.我国海洋能开发利用情况分析[J].海洋环境科学,2006,25(4):78-80. 被引量:32
  • 3于丽波.我国加紧海洋能研究与开发利用[N].证券时报,2008-07-17.
  • 4JEBARAJ S, INIYAN S,SUGANTHI L, et al. An optimal electricity allocation model for the effective utilization of energy sources in India with focus on biofuels[J]. Management of Environmental Quality, 2008,19(4) : 480- 486.
  • 5WU Chencheng, YUAN Chenchen, P CHUEH YANG P H,et al. Analysis of experimental data on internal waves with statistical method[J].Computer-aided Engineering and Software, 2007, 24 (2) : 116-150.
  • 6刘玉光.卫星海洋学[M].北京:高等教育出版社.2005.
  • 7IPCG (Intergovernnlental Panel on Climate Change). Climate change 2007 : Synthesis report [R] Cambridge: Cambridge University Press, 2007.
  • 8CHINADAILY.中国首次超美国成世界第一大能源消耗国[EB/OL].Availableathttp://www.chinadaily.com.cn/hqsj/ssrd/20100720/content一597218.html.
  • 9Tomkvist R. Ocean wave power station [R]. Helsinki Finland: Report 28, Swedish Technical Scientific Academy, 1975.
  • 10Leishman J M, Seobie G. The development of wave power [R].[s. 1.]: NEL Report No EAU. M25,1976.

共引文献113

同被引文献94

引证文献7

二级引证文献25

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部