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水文学及水资源学科发展动态 被引量:15

A review on international development trend in the field of hydrology and water resources
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摘要 基于近几年国内外相关学术期刊、学术会议论文集、专著与研究报告,进行了水文学和水资源学科发展动态调研。研究表明,面对全球气候变化、强烈人类活动影响等新问题,水文学和水资源学科近年来产生了一批新的研究热点领域,在新的理论与现代技术手段的支撑下取得了较大进展。日益明显的与其他学科的交叉合作现象,是当前水文学和水资源学科发展的重要特点。根据学科发展动态,建议加强科学试验、学科交叉等方面的研究,以推动我国水文学与水资源学科的不断创新与发展。 An investigation study on the development trend of hydrology and water resources was carried out by means of surveying related academic journals, proceedings, books and reports published in recent years. The study shows that the impacts of global climate change and strong human activities have become confronting new issues, and a number of new hot study topics have occurred in the field of hydrology and water resources, which have made comparatively great progresses by applying new theories and modern techniques. The multi-discipline crossing and collaborating is becoming an important feature of hydrology and water resources evolution. Based on this review, the authors suggest that scientific experiments should be enhanced and subjects of crossing and merging should be intensified for the purpose of promoting a continuously innovation and progress in the field of hydrology and water resources in China.
出处 《中国水利水电科学研究院学报》 2009年第2期81-88,共8页 Journal of China Institute of Water Resources and Hydropower Research
基金 国家重点基础研究发展规划项目(2006CB403404) 国家自然科学基金项目(5072100650779074)
关键词 水文学 水资源 变化环境 人类活动 学科交叉 hydrology water resources changing environment human activities multi-discipline crossing
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参考文献35

  • 1陈志恺.中国水利百科全书·水文与水资源分册[M].北京:水利水电出版社,2004.
  • 2Kang B, Ramfrez J A. Response of streamflow to weather variability under climate change in the colorado rockies[J]. Journal of Hydrologic Engineering, 2007, 12( 1 ) :63 - 72.
  • 3Jacek S, Allen D M. Groundwater-surface water interaction under scenarios of climate change using a high-resolution transient groundwater model[J]. Journal of Hydrology, 2007, 333:165 - 181.
  • 4Nakaegawa T, Kusunoki S, Sugi M, et al. A study of dynamical seasonal prediction of potential water resources based on an atmospheric GCM experiment with prescribed sea-surface temperature [ J]. Hydrological Sciences Journal, 2007, 52 (1): 152- 165.
  • 5Dougherty M, ASCE M, Dymond R L. Quantifying long-term hydrologic response in an urbanizing basin[J]. Journal of Hydrologic Engineering, 2007, 12( 1 ) : 33 - 41.
  • 6Xiao Q, et al. Hydrologic processes at the urban residential scale[J]. Hydrological Processes, 2007, 21: 2174- 2188.
  • 7Schneider L E, McCuen R H. Assessing the hydrologic performance of best management practices[J]. Journal of Hydrologic Engineering, 2006, 11(3) : 278 - 281.
  • 8王浩,王建华,秦大庸,贾仰文.基于二元水循环模式的水资源评价理论方法[J].水利学报,2006,37(12):1496-1502. 被引量:135
  • 9胡和平,田富强.物理性流域水文模型研究新进展[J].水利学报,2007,38(5):511-517. 被引量:35
  • 10Abbott M B, Bathurst J C, Cunge J A, et al. An Introduction to the European Hydrological System-Systeme Hydrologique Europeen, SHE; 1. History and philosophy of a physically based distributed modeling system[ J]. Journal of Hydrology, 1986, 87: 45- 59.

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