2018
DOI: 10.1016/j.jenvman.2018.03.100
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Hydrological model using ground- and satellite-based data for river flow simulation towards supporting water resource management in the Red River Basin, Vietnam

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Cited by 20 publications
(14 citation statements)
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“…VIC [11] is a macroscale hydrologic model that solves full water and energy balances, originally developed by Xu Liang at the University of Washington. We referred to the study case of the VIC model in neighboring regions [30,31] and assigned the four soil parameter values as follows: The Ds max is the maximum baseflow that can occur from the lowest soil layer, which is estimated based on the calculated saturated hydraulic conductivity at each grid. b infilt defines the shape of the VIC curve, to which we assigned the value 0.2.…”
Section: Land Cover and Soil Datasetmentioning
confidence: 99%
“…VIC [11] is a macroscale hydrologic model that solves full water and energy balances, originally developed by Xu Liang at the University of Washington. We referred to the study case of the VIC model in neighboring regions [30,31] and assigned the four soil parameter values as follows: The Ds max is the maximum baseflow that can occur from the lowest soil layer, which is estimated based on the calculated saturated hydraulic conductivity at each grid. b infilt defines the shape of the VIC curve, to which we assigned the value 0.2.…”
Section: Land Cover and Soil Datasetmentioning
confidence: 99%
“…The RRB is shared by three countries including China, Vietnam, and Lao's PDR with a total watershed area about 169,020 km 2 with 81,240 km 2 (48%) in China, 1100 km 2 (0.65%) in Laos, and 86,660 km 2 (51.35%) in Vietnam [19]. The Red River with its main branch of approximately 1140 km in length, rises in a mountainous region of Southeastern China, flows into Vietnam near Lao Cai province, and flows eastward into the Tonkin Bay.…”
Section: Study Areamentioning
confidence: 99%
“…The VIC is a macroscale and semidistributed hydrological model based on the grid cell platform. The VIC model can solve both water and energy balance equations to estimate various parameters in the water cycle of the Earth including runoff, soil moisture, infiltration, and evapotranspiration at each grid cell with daily or subdaily interval [8,19]. In another word, these hydrometeorological parameters were derived from the VIC diagnostic output in this study.…”
Section: Vic Soil Moisture Simulationmentioning
confidence: 99%
“…There are various possible variables to be incorporated, such as land surface temperature, near-surface soil moisture, vegetation cover, snow cover, snow-water equivalent, and water quality (Schmugge et al 2002). In addition, EO also can provide more general data such as land-use and soil erosion monitoring (Schultz and Engman 2000;Hiep et al 2018). Generally, EO information is used in semi-spatially distributed and fully spatially distributed models.…”
Section: Integration Of Sources Of Information In Hydrological Modelsmentioning
confidence: 99%