Computational Water, Energy, and Environmental Engineering

Computational Water, Energy, and Environmental Engineering

ISSN Print: 2168-1562
ISSN Online: 2168-1570
www.scirp.net/journal/cweee
E-mail: [email protected]
"Application of SWAT to Assess the Effects of Land Use Change in the Murchison Bay Catchment in Uganda"
written by Listowel Abugri Anaba, Noble Banadda, Nicholas Kiggundu, Joshua Wanyama, Bernie Engel, Daniel Moriasi,
published by Computational Water, Energy, and Environmental Engineering, Vol.6 No.1, 2017
has been cited by the following article(s):
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[7] The impact of land use and cover changes on river flows in Wundanyi Catchment of Taita Hills, Kenya (1970–2030). Sustainable Social Development. 2024; 2 …
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[11] Evaluating the effects of reservoir outflow and land-use change on the Zarrineh River basin
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[12] Impacts of climate and land use/cover change on mini-hydropower generation in River Kyambura watershed in South Western part of Uganda
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[13] Assessment of hydrological response with an integrated approach of climate, land, and water for sustainable water resources in the Khari River basin, India
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[14] Spatiotemporal Analysis of the Hydrological Responses to Land-Use Land-Cover Changes in the Manafwa Catchment, Eastern Uganda
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[15] SWAT model-based quantification of the impact of land use land cover change on sediment yield in the Fincha watershed, Ethiopia
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[16] Assessing the impacts of land use changes on stream flows
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[17] Evaluation of the Effect of Land Use Change on Runoff Using the Markov Chain in Shiraz Nahre Azam Basin
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[18] Separation and attribution of impacts of changes in land use and climate on hydrological processes
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[19] The relationship of land tenure, land use and land cover changes in Lake Victoria basin
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[20] Stream flow dynamics under current and future land cover conditions in Atsela Watershed, Northern Ethiopia
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[21] Application of DPSIR model to identify the drivers and impacts of land use and land cover changes and climate change on land, water, and livelihoods in the L. Kyoga …
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[22] Using SWAT Model and Field Data to Determine Potential of NASA-POWER Data for Modelling Rainfall-Runoff in Incalaue River Basin
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[23] Changes in land use land cover within the Jukskei River basin and its implications on the water availability
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[24] Assessing soil erosion risk in a peri-urban catchment of the Lake Victoria basin
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[25] Projection of land use to 2030 and its impacts on water availability in a brazilian sub-basin: A LCM and SWAT approach
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[26] Runoff Modeling Using SWAT Model in Little Wabash River Watershed, Illinois
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[27] Performance evaluation of swat and HEC-HMS mathematical models for Atrai-karatoa river basin
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[28] Application of DPSIR model to identify the drivers and impacts of land use and land cover changes and climate change on land, water, and livelihoods in the L …
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[29] Effects of deforestation and afforestation on water availability for dry bean production in Haiti
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[30] Runoff modelling of Aripal watershed using SWAT model
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[31] Quantitative analysis of contributions of human activities and climatic variability to stream flow variation in river Rwizi catchment
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[32] EFFECTS OF LAND USE/LAND COVER CHANGE AND RAINFALL VARIABILITY ON HYDROLOGICAL CHARACTERISTICS OF RIVER RUIRU WATERSHED …
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[33] Impact of Land Use/cover and Climate Change on Surface Water Resources in Semi-arid Lokok and Lokere Catchments, Uganda
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[34] Multi-Step Calibration Approach for SWAT Model Using Soil Moisture and Crop Yields in a Small Agricultural Catchment. Water 2021, 13, 2238
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[35] Effects of Land-use/Land Cover Changes on Flow and Sedimentation from the Metsimotlhabe River Catchment Using Soil and Water Assessment Tool (SWAT) Model
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[36] Research Article Land Use/Land Cover Change Impact on Hydrological Process in the Upper Baro Basin, Ethiopia
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[37] اثر اعمال اقدامات مدیریت اراضی بر فرسایش خاک و تولید رسوب در حوزه آبخیز گلازچای اشنویه، آذربایجان غربی‎
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[39] Estimating Soil Loss in Upland Corn Production using the SWAT Model
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[40] Predicting the Future of Protected Areas in the Region of the Highest Population Density in Sub-Saharan Africa
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[41] Lake Atitlan: A Review of the Food, Energy, and Water Sustainability of a Mountain Lake in Guatemala. Sustainability 2021, 13, 515
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[43] Integrated Hydrologic Study of the Arid and Semi-arid Regions using RST and GIS in the Riyadh Metropolitan Area, Saudi Arabia
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[44] Multi-Step Calibration Approach for SWAT Model Using Soil Moisture and Crop Yields in a Small Agricultural Catchment
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[45] Quantifying the potential impacts of land-use and climate change on hydropower reliability of Muzizi hydropower plant, Uganda
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[46] Impact of Land Use and Land Cover Change on Streamflow of Upper Baitarani River Basin Using SWAT
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[47] Impacts of upstream water abstraction and climate variability on River Mpanga hydropower production in Uganda
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[48] Land Use/Land Cover Change Impact on Hydrological Process in the Upper Baro Basin, Ethiopia
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[49] Evaluation of Reanalysis Precipitation Data and Potential Bias Correction Methods for Use in Data-Scarce Areas
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[50] Impact of Land Use–Land Cover Changes on the Streamflow of the Kolab River Basin Using SWAT Model
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[51] Pendugaan Erosi Dan Perencanaan Tutupan Lahan Di Hulu DAS Jeneberang, Provinsi Sulawesi Selatan
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[52] Impacts of climate variability and changing land use/land cover on River Mpanga flows in Uganda, East Africa
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[53] Assessment of the Rangitata River basin's Food-Energy-Water Nexus under a changing climate using WEAP: A thesis submitted in partial fulfilment of the …
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[54] Hydrological Modeling of Upper OumErRabia Basin (Morocco), Comparative Study of the Event-Based and Continuous-Process HEC-HMS Model Methods
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[57] Watershed modelling of the Mindanao River Basin in the Philippines using the SWAT for water resource management
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[58] Simulating Change in Surface Runoff due to LULC Change using Soil Water and Assessment Tool for Flash Flood Prediction
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[65] Evaluation of static and dynamic land use data for watershed hydrologic process simulation: A case study in Gummara watershed, Ethiopia
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[66] Land use planning based on soil and water assessment tool model in a mountainous watershed to reduce runoff and sediment load
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[68] Evaluation of the effect of land use change on runoff using supervised classified satellite data
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[69] Land use planning based on SWAT model in a mountainous watershed to reduce runoff and sediment load
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[72] SWAT Model and its Application
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[78] Estimating potential direct runoff for ungauged urban watersheds based on RST and GIS
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[79] Profitability of low-head drip irrigation kit technology in vegetable farming in Kabale District
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[80] Central European University in part fulfillment of the Degree of Master of Science
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