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Vadose Zone Lag Time Effect on Groundwater Drought in a Temperate Climate
- Source :
- Water, Vol 12, Iss 2123, p 2123 (2020), Water, Volume 12, Issue 8
- Publication Year :
- 2020
- Publisher :
- MDPI AG, 2020.
-
Abstract
- An essential factor in the propagation of drought, from meteorological drought to groundwater drought, is the delay between a precipitation event and the groundwater recharge reaching the groundwater table. This delay, which mainly occurs in the vadose zone of the hydrological cycle, is often poorly studied. Therefore, this paper proposes a method for estimating the spatially distributed delay in the vadose zone using the kinematic wave approximation of Richards&rsquo<br />equation combined with the van Genuchten&ndash<br />Burdine and Brooks&ndash<br />Corey parametric model. The modeling was approached (1) using a detailed parametrization of soil and geological layers and (2) using lumped hydraulic and physical properties of geological layers. The results of both approaches were compared against the physically based flow model Hydrus-1D. This analysis shows that using a detailed parametrization of soil and geological layers results in good comparison, with a Nash&ndash<br />Sutcliffe efficiency of 0.89 for Brooks&ndash<br />Corey and 0.80 for van Genuchten&ndash<br />Burdine. The delay result of the Brooks&ndash<br />Corey model was incorporated into the groundwater recharge time series from 1980 to 2013 to analyze the effect of this delay on groundwater drought. The results show that the delay in the vadose zone influences groundwater drought characterization features such as the number, duration, and intensity of drought events.
- Subjects :
- lcsh:Hydraulic engineering
Water table
Geography, Planning and Development
Soil science
PROPAGATION
Aquatic Science
SOIL-MOISTURE
Biochemistry
vadose zone
Kinematic wave
MOVEMENT
lcsh:Water supply for domestic and industrial purposes
lcsh:TC1-978
Vadose zone
Parametrization (atmospheric modeling)
Precipitation
Water cycle
Water Science and Technology
lcsh:TD201-500
Science & Technology
groundwater recharge delay
kinematic wave approximation
HYDRAULIC CONDUCTIVITY
drought propagation
Groundwater recharge
Physical Sciences
Water Resources
Environmental science
RECHARGE
groundwater drought
Groundwater
Subjects
Details
- Language :
- English
- ISSN :
- 20734441
- Volume :
- 12
- Issue :
- 2123
- Database :
- OpenAIRE
- Journal :
- Water
- Accession number :
- edsair.doi.dedup.....c004346e1384b655c53df801c2cdae0d