Why Hydrological Maze: TheHydropedological Trigger?Review of Experiments at ChuzhouHydrology Laboratory
Gu,WZ(Gu,Weizu)1,2; Liu,JF(Liu,Jinfu)1; Lin,H(Lin,Henry)3,4; Lin,J(Lin,Jin)1; Liu,HW(Liu,Hongwei)1; Liao,AM(Liao,Aimin)1,2; Wang,N(Wang,Niu)1,2; Wang,WZ(Wang,Wenzhon)1; Ma,T(Ma,Tao)1; Yang,N(Yang,Na)1,2; Li,XG(Li,Xuegang)1,2; Zhuo,P(Zhuo,Peng)1,2; Cai,Z(Cai,Zhao)1; Lin,Henry
2018-01
发表期刊Vadose Zone Journal
卷号17期号:1
文章类型期刊论文
摘要Hydrology is an old discipline due to its early origination, as well as a young discipline due to its insufficient scientific foundation as a natural science. Thus hydrology has long been haunted by a debate between natural functionalities found in observations vs. model results built on many simplified assumptions. We define the hydrological maze as puzzles, paradoxes, or complexity involved in hydrologic measurements and interpretations. The objective of this study was to reveal the hydrological maze through a comprehensive review of decades of work since the 1980s on observations and experiments using a combination of natural and artificial catchments at the Chuzhou Hydrology Laboratory in China, highlighting the role of hydropedology in hillslope and catchment hydrology based on long-term monitoring of surface and subsurface flows at various soil depths and at different spatial scales. A conception has emerged that indicates the fundamental control of hydropedological factors (such as soil types, soil properties, and their spatial variations) as the trigger for the hydrological maze, including runoff generation, runoff composition, flow heterogeneity, and various hydrological puzzles. It is clear that the vadose zone is the key source for nonlinear and dissipative complexity in the hydrological maze that is intertwined with hydrochemical and hydroecological dynamics. Therein lies the hope for new hydrological insights and possible solutions to the hydrological maze.
DOI10.2136/vzj2017.09.0174
收录类别SCI
所属项目编号91647203 ; 51609145 ; 91647111 ; Y516032 ; Y517009
语种英语
项目资助者National Natural Science Foundation of China ; National Natural Science Foundation of China ; Science Foundation of Nanjing Hydraulic Research Institute ; Science Foundation of Nanjing Hydraulic Research Institute
引用统计
被引频次:1[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.ieecas.cn/handle/361006/5372
专题黄土与第四纪地质国家重点实验室(2010~)
通讯作者Lin,Henry
作者单位1.Institute of Hydrology and WaterResources, Nanjing Hydraulic ResearchInstitute, Nanjing, China
2.Chuzhou Hydrology Lab., Instituteof Hydrology and Water Resources,Chuzhou, China
3.Dep. of Ecosystem Science and Management,Pennsylvania State Univ., University Park,PA 16802
4.State Key Lab. of Loessand Quaternary Geology, Institute ofEarth Environment, Chinese Academyof Sciences, Xi’an, China
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Gu,WZ,Liu,JF,Lin,H,et al. Why Hydrological Maze: TheHydropedological Trigger?Review of Experiments at ChuzhouHydrology Laboratory[J]. Vadose Zone Journal,2018,17(1).
APA Gu,WZ.,Liu,JF.,Lin,H.,Lin,J.,Liu,HW.,...&Lin,Henry.(2018).Why Hydrological Maze: TheHydropedological Trigger?Review of Experiments at ChuzhouHydrology Laboratory.Vadose Zone Journal,17(1).
MLA Gu,WZ,et al."Why Hydrological Maze: TheHydropedological Trigger?Review of Experiments at ChuzhouHydrology Laboratory".Vadose Zone Journal 17.1(2018).
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