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GroMoPo Metadata for Tailan River basin model


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Created: Feb 08, 2023 at 9:45 p.m.
Last updated: Feb 08, 2023 at 9:46 p.m.
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Abstract

Groundwater is widely recognized as the most significant water resource for irrigation and drinking purposes in the extremely-arid inland river region. However, land use is a major force altering the hydrological processes over a range of temporal and spatial scales. Therefore, understanding the interaction between land use and groundwater processes will definitely contribute to formulate a regional sustainable development strategy and recognize the impact of land use on the groundwater flow regime in the Tailan River basin. A numerical simulation of groundwater level for the inland river basin and scenario analysis under land use using FEFLOW is presented. Spatial data of the regional land use were processed using GIS, and the effects of land use on groundwater level were simulated. The amount of irrigation water and pumped groundwater have the most remarkable influences on groundwater level as main source/sink factors. Their variations were simulated according to the irrigation systems with different crops. Other factors including percolation and evapotranspiration of precipitation and condensed water jointly exerted influences on groundwater level. Changes to farmlands had the greatest impact on Tailan River basin for groundwater level, and unused land and Gobi had the least impact on groundwater level. Groundwater level maintained a decreasing trend in the irrigated zone, and increasing groundwater pumping would further intensify the water shortage in Tailan river basin. This coupled effects resulted from land use and extensive groundwater pumping were considered as the major human-induced factors influencing the groundwater system in the extremely-arid inland river basins. The results can provide useful support for land use. Understanding hydrological processes at the watershed level is essential in land use and water resource planning and management, and the proposed approach can be used as a management and planning tool for evaluating the local and overall impacts of land use management on the surface and groundwater flow regimes. (C) 2010 Elsevier Ltd and INQUA. All rights reserved.

Subject Keywords

Coverage

Spatial

Coordinate System/Geographic Projection:
WGS 84 EPSG:4326
Coordinate Units:
Decimal degrees
Place/Area Name:
China
North Latitude
42.2500°
East Longitude
81.0900°
South Latitude
40.6900°
West Longitude
80.3500°

Content

Additional Metadata

Name Value
DOI 10.1016/j.quaint.2010.08.017
Depth
Scale 1 001 - 10 000 km²
Layers 1
Purpose Groundwater resources
GroMoPo_ID 460
IsVerified True
Model Code Feflow
Model Link https://doi.org/10.1016/j.quaint.2010.08.017
Model Time 2000-2005
Model Year 2011
Model Authors Sun, DY; Zhao, CY; Wei, H; Peng, DM
Model Country China
Data Available Report/paper only
Developer Email zcy@ms.xjb.ac.cn
Dominant Geology Unsure
Developer Country Peoples R China
Publication Title Simulation of the relationship between land use and groundwater level in Tailan River basin, Xinjiang, China
Original Developer No
Additional Information
Integration or Coupling Land surface model’
Evaluation or Calibration Dynamic water levels
Geologic Data Availability No

How to Cite

GroMoPo, S. Ruzzante (2023). GroMoPo Metadata for Tailan River basin model, HydroShare, http://www.hydroshare.org/resource/156c92f942284659bab3095dc047c9a7

This resource is shared under the Creative Commons Attribution CC BY.

http://creativecommons.org/licenses/by/4.0/
CC-BY

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