Quantifying hydrological responses to monsoon-controlled precipitation across the soil-groundwater-stream continuum with long-term high-frequency hydrometric monitoring

被引:0
作者
Dai, Xin [1 ,2 ]
Xie, Yueqing [1 ,2 ]
Liao, Aimin [3 ]
Wang, Chuan [1 ,2 ]
Lin, Jin [3 ]
Wu, Jichun [1 ,2 ]
机构
[1] Nanjing Univ, Sch Earth Sci & Engn, Key Lab Surficial Geochem, Minist Educ, Nanjing 210023, Peoples R China
[2] Nanjing Univ, Frontiers Sci Ctr Crit Earth Mat Cycling, Nanjing, Peoples R China
[3] Nanjing Hydraul Res Inst, Chuzhou Sci Hydrol Lab, Chuzhou, Peoples R China
关键词
event-based analysis; high-frequency hydrometric monitoring; hydrological responses; monsoon-controlled precipitation; soil-groundwater-stream continuum (SGSC); PREFERENTIAL FLOW; DYNAMICS; EXCHANGE; AQUIFER; CONNECTIVITY; MACROPORES; DISCHARGE; COASTAL; STEEP; ZONE;
D O I
10.1002/hyp.15089
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
Stream water, groundwater and soil water in the riparian zone are closely linked. Their responses to rainfall events controlled by monsoon climate are variable and intertwined, which are still not well known. To address this knowledge gap, we established a monitoring transect adjacent to a headwater stream in Huashan Catchment, eastern China, with typical monsoon climate. We monitored precipitation, stream stage, groundwater level and soil moisture content at intervals of maximum 30 min. We then conducted an event-based analysis of rainfall event characteristics and diverse response metrics, and assessed their correlations and interrelationships through correlation and regression analysis. Our 2-year monitoring results show that water level responses occurred in most rainfall events. They had smaller threshold of rainfall amount and timing but longer time to peak response. Stream responses exhibited smaller response magnitude and intensities than groundwater responses. Rainfall amount and event duration were the most critical driving factors for groundwater responses. Soil moisture responses varied with depth. Only large storms could propagate into topsoil and generate rapid responses. Middle soil moisture responses had more frequent response occurrence and more variable response magnitude, while deep soil moisture responses had smaller response magnitude, longer time to peak response and larger wetting front movement velocity. Attenuated initial response timing with depth identified preferential flow, reflecting heterogeneity in the soil profile. Monsoon-controlled heavy rainfall improved hydrologic connectivity in the soil-groundwater-stream continuum (SGSC), mediating the influence of heterogeneity on soil moisture responses and potentially contributing more subsurface flow to catchment runoff. Overall, this study aimed to reveal the mechanism of hydrological responses to monsoon-controlled precipitation across the SGSC. In this study, we quantified responses of stream water, groundwater and soil moisture to precipitation across the soil-groundwater-stream continuum. High-frequency hydrometric data and event-based analysis revealed smaller activation threshold (Rt and Ti) but longer peak duration (Tip) of stream responses, larger magnitude (Rm) of groundwater responses, and preferential flow from depth-varying soil moisture responses. Short-duration monsoon-controlled heavy rainfall mediated the effect of vertical subsurface heterogeneity, whereas long-duration monsoon-controlled heavy rainfall potentially enhanced hydrologic connectivity and subsurface contribution to catchment runoff. image
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页数:18
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  • [11] Quantifying groundwater discharge to Cockburn River, southeastern Australia, using dissolved gas tracers 222Rn and SF6
    Cook, P. G.
    Lamontagne, S.
    Berhane, D.
    Clark, J. F.
    [J]. WATER RESOURCES RESEARCH, 2006, 42 (10)
  • [12] Topographic controls on shallow groundwater dynamics: implications of hydrologic connectivity between hillslopes and riparian zones in a till mantled catchment
    Detty, J. M.
    McGuire, K. J.
    [J]. HYDROLOGICAL PROCESSES, 2010, 24 (16) : 2222 - 2236
  • [13] Beaver dams overshadow climate extremes in controlling riparian hydrology and water quality
    Dewey, Christian
    Fox, Patricia M.
    Bouskill, Nicholas J.
    Dwivedi, Dipankar
    Nico, Peter
    Fendorf, Scott
    [J]. NATURE COMMUNICATIONS, 2022, 13 (01)
  • [14] A tale of two rivers: Dam-induced hydrologic drought on the lower Dolores River and its impact on tamarisk establishment
    Dott, Cynthia
    Bombaci, Sara
    Kasprak, Alan
    Korb, Julie
    [J]. ECOHYDROLOGY, 2022, 15 (06)
  • [15] Hydrological response of a small mediterranean agricultural catchment
    Estrany, Joan
    Garcia, Celso
    Batalla, Ramon J.
    [J]. JOURNAL OF HYDROLOGY, 2010, 380 (1-2) : 180 - 190
  • [16] Spatiotemporal changes of precipitation extremes in Bangladesh during 1987-2017 and their connections with climate changes, climate oscillations, and monsoon dynamics
    Ezaz, Gazi Tawfiq
    Zhang, Ke
    Li, Xin
    Shalehy, Md Halim
    Hossain, Mohammad Akram
    Liu, Linxin
    [J]. GLOBAL AND PLANETARY CHANGE, 2022, 208
  • [17] The rise of Indian summer monsoon precipitation extremes and its correlation with long-term changes of climate and anthropogenic factors
    Falga, Renaud
    Wang, Chien
    [J]. SCIENTIFIC REPORTS, 2022, 12 (01)
  • [18] Quantifying Asynchronicity of Precipitation and Potential Evapotranspiration in Mediterranean Climates
    Feng, Xue
    Thompson, Sally E.
    Woods, Ross
    Porporato, Amilcare
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2019, 46 (24) : 14692 - 14701
  • [19] Climate variability and precipitation isotope relationships in the Mediterranean region
    Fischer, M. J.
    Mattey, D.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2012, 117
  • [20] Downscaling soil hydrological mapping used to predict catchment hydrological response with random forests
    Gagkas, Zisis
    Lilly, Allan
    [J]. GEODERMA, 2019, 341 : 216 - 235