期刊文献+

全息水资源动力模型的研究与探讨 被引量:1

Research and discussion on holographic dynamic modeling of water resources
下载PDF
导出
摘要 通过对水资源循环系统的分析与研究,提出建立全息水资源动力模型的设想,将气象、水文、水动力和地理信息综合为一个整体,模拟水循环过程的主要环节。全息水资源动力模型需要多学科、多部门联合组建,各部门的协调和资料、资源共享是保证模型正常运转的必备条件。全息水资源动力模型的运行模拟是一个具有系统工程特色的研究和管理过程,需要政府的政策规范和组织实施。全息水资源动力模型的技术组成需要多种部件构成,部件的每一部分都是水资源存在形式、分布规律和运动过程的模拟和分析。 Based on the research on water resources circulation system, the thought for establishment of a holographic dynamic model of water resources was proposed, which integrated meteorologic, hydrological, hydrodynamic, and geographic information together to simulate the main steps of water circulation. However, the holographic dynamic model should be developed by the cooperation of multiple disciplines and departments, and the coordination and resource sharing among different departments are necessary to ensure the normal operation of the model. It is also pointed out that the operation of the holographic dynamic model is a process of research and management with engineering characteristics, and it needs for governments' policies and norms as well as their efforts for organization and implementation. Moreover, the model should be composed of multiple components and each part could reflect the simulated results of the existence form, the distribution regularities, and movement process of water resources.
出处 《水利水电科技进展》 CSCD 北大核心 2007年第4期6-10,14,共6页 Advances in Science and Technology of Water Resources
关键词 水资源 动力模型 全息系统 水资源循环系统 water resources dynamic model holographic system water resources circulation system
  • 相关文献

参考文献9

二级参考文献46

  • 1王谦谦,徐海明.1991年夏季江淮洪涝成因的数值试验——西太平洋海温异常的影响[J].气象学报,1995,53(A01):595-603. 被引量:15
  • 2杨扬,威建国.数字卫星云图估算面雨量的应用试验[J].气象,1995,21(3):35-39. 被引量:25
  • 3陆尔,丁一汇.1991年江淮特大暴雨与东亚大气低频振荡[J].气象学报,1996,54(6):730-736. 被引量:102
  • 4高永祥 何志敏 等.多孔介质床层中颗粒内部流体流动与传递的分析[J].天津大学学报,2001,33(5):553-559.
  • 5Chung TJ 龚崇准(译).流体动力学的有限元分析[M].北京:电力工业出版社,1980..
  • 6[2]Famiglietti J S, Wood E F, Sivapalan M, et al. A catchment scale water balance model for FIFE[J]. Journal of Geophysics Research, 1992, 97(D17): 18 997-19 007.
  • 7[3]Beven K J, Kirkby M J. A physically based variable contributing area model of basin hydrology[J]. Hydrological Science Bulletin, 1979, 24(1):43-69.
  • 8[4]Wigmosta M S, Vail L W, Lettenmaier D P. A distributed hydrology-vegetation model for complex terrain [J]. Water Resources Research, 1994, 30(6): 1 665-1 679.
  • 9[5]Goodchild M F. The state of GIS for environmental problem-solving [A]. Goodchild M F ed. Environmental Modeling with GIS[C]. New York: Oxford University Press, 1993.
  • 10[6]Ross M A, Tara P D. Integrated hydrologic modeling with geographic information system [J]. Journal of Water Resources Planning and Management, 1993, 119:129-139.

共引文献106

同被引文献25

引证文献1

二级引证文献2

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