帮助 关于我们

返回检索结果

中国生态水文学发展趋势与重点方向
Progress of ecohydrological discipline and its future development in China

查看参考文献57篇

夏军 1,2   张永勇 2 *   穆兴民 3,4   左其亭 5   周宇建 2   赵广举 3,4  
文摘 生态水文学是一门新兴的交叉学科,发展和完善其理论体系和技术方法等对促进中国山水林田湖草系统保护与修复,推进生态文明建设和绿色发展具有重要理论和实践意义。本文阐述了生态水文学发展历程和挑战性问题;结合学科前沿和国家需求,提出了生态水文学在中国的发展战略,主要包括:生态水文综合观测的新技术新方法、生态水文学机理和基础理论、以陆地和水生生态水文过程为核心的多尺度多要素综合模拟与集成、以及生态水文与社会科学的融合等;在此基础上,也提出了中国生态水文学具体发展方向,如多源信息融合与综合观测网络、关键要素的时空格局及其演变特征、综合模型与不确定性、多学科交融研究等;最后提出了中国生态水文学在山水林田湖草及城市等共同体修复和保护中的应用前景。
其他语种文摘 Ecohydrology is a key discipline developed in recent decades, which can give aid in the protection and restoration of complex ecological systems (e.g., mountain, river, forest, farmland, lake), ultimately promoting the ecological civilization construction and the green development of China. In this paper, the progress and existing challenges of ecohydrological discipline are elaborated, and the future development directions are proposed according to the international scientific frontiers and national demands on ecological civilization construction. The main directions are to develop new ecohydrological monitoring methods and improve comprehensive observation network of ecohydrological systems; to perfect the ecohydrological mechanisms and their basic theories; to promote the integrations of multi-scales and multielements by considering both terrestrial and aquatic ecosystems; to promote the multidisciplinary integrations between ecohydrology and social sciences. Furthermore, specific future research interests in China are proposed as follows: multi-source information fusion and comprehensive monitoring system construction, spatio-temporal patterns of key ecohydrological elements and their variation characteristics; integrated models of ecological, hydrological and economic processes and their uncertainty estimation; interdisciplinary studies including physical and social sciences. The application prospective in China is further explicated in a variety of ecosystems (e.g., forest, grassland, river and lake, wetland, farmland and urban area). This paper is expected to provide a reference to support the development strategy of the ecohydrological discipline in China, and to give a theoretical foundation and technical support for the implementation of national ecological civilization construction.
来源 地理学报 ,2020,75(3):445-457 【核心库】
DOI 10.11821/dlxb202003001
关键词 生态水文学 ; 理论和方法 ; 综合观测 ; 数值模拟 ; 尺度问题
地址

1. 武汉大学, 水资源与水电工程科学国家重点实验室, 武汉, 430072  

2. 中国科学院地理科学与资源研究所, 中国科学院陆地水循环及地表过程重点实验室, 北京, 100101  

3. 中国科学院水利部水土保持研究所, 杨凌, 712100  

4. 西北农林科技大学水土保持学院, 杨凌, 712100  

5. 郑州大学水利与环境学院, 郑州, 450001

语种 中文
文献类型 研究性论文
ISSN 0375-5444
学科 环境科学基础理论
基金 中国科学院学部学科发展战略研究项目 ;  国家自然科学基金项目
文献收藏号 CSCD:6688376

参考文献 共 57 共3页

1.  Nuttle W K. Eco-hydrology's past and future in focus. Eos Transactions American Geophysical Union,2002,83(19):205-212 被引 7    
2.  Eagleson P S. Climate, soil and vegetation: 1. Introduction to water balance dynamics. Water Resources Research,1978,14(5):705-712 被引 18    
3.  Ward J V. The serial discontinuity concept of lotic ecosystem. Dynamics of Lotic Ecosystems. Ann Arbor Science,1983:29-42 被引 2    
4.  Ingram H A P. Ecohydrology of Scottish peatlands. Transactions of the Royal Society of Edinburgh: Earth Sciences,1987,78(4):287-296 被引 6    
5.  Pedroli B. Ecohydrological parameters indicating different types of shallow groundwater. Journal of Hydrology,1990,120(1/4):381-404 被引 3    
6.  Bragg O M. Modelling the ecohydrological consequences of peat extraction from a Scottish raised mire. Hydrological Basis of Ecologically Sound Management of Soil and Groundwater,1991:13-22 被引 2    
7.  Hensel B R. Effects of wetlands creation on groundwater flow. Journal of Hydrology,1991,126:293-314 被引 1    
8.  Heathwaite A L. Mires: Process, Exploitation and Conservation,1993 被引 1    
9.  Gieske J M J. A method for quantifying the effects of groundwater shortages on aquatic and wet ecosystems. Water Science and Technology,1995,31(8):363-366 被引 3    
10.  Wassen M J. Ecohydrology: An interdisciplinary approach for wetland management and restoration. Vegetation,1996,126:1-4 被引 8    
11.  Zalewski M. Ecohydrology: A new paradigm for the sustainable use of aquatic resources. UNESCO IHP Technical Document in Hydrology No.7. IHP-V Projects 2.3/2.4. UNESCO Paris. 60(5),1997:823-832 被引 1    
12.  Poff N L. The nature flow regime: A paradigm for river conservation and restoration. BioScience,1997,47:769-784 被引 132    
13.  Baird A J. Eco-hydrology: Plants and Water in Terrestrial and Aquatic Environments,1999 被引 12    
14.  Acreman M C. Hydro-ecology: Linking Hydrology and Aquatic Ecology,2001 被引 3    
15.  Eagleson P S. Ecohydrology: Darwinian Expression of Vegetation Form and Function,2002 被引 18    
16.  Wood P J. Hydroecology and Ecohydrology: Past, Present and Future,2008 被引 2    
17.  Goldsmith G R. Changing directions: The atmosphere-plant-soil continuum. New Phytologist,2013,199(1):4-6 被引 7    
18.  Buchanan M L. Canopy disturbance history of old-growth Quercus alba, sites in the eastern United States: Examination of long-term trends and broad-scale patterns. Forest Ecology & Management,2012,267(3):28-39 被引 2    
19.  Poff N L. Ecological responses to altered flow regimes: A literature review to inform the science and management of environmental flows. Freshwater Biology,2010,55:194-205 被引 31    
20.  County P G. Low-impact development design strategies: An integrated design approach. Prince Georges County,1999 被引 1    
引证文献 13

1 樊杰 我国“十四五”时期高质量发展的国土空间治理与区域经济布局 中国科学院院刊,2020,35(7):796-805
被引 25

2 江恩慧 流域系统科学初探 水利学报,2020,51(9):1026-1037
被引 12

显示所有13篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号