2010 - Seoul, Korea
SWAT Workshops: August 2-3, 2010
SWAT Conference: August 4-6, 2010
Agenda
Book of Abstracts
Conference brochure
Photos
Publications
Conference Proceedings
Lead paper in Trans. ASABE - Soil and Water Assessment Tool (SWAT) hydrologic/water quality model: Extended capability and wider adoption
Scientific Committee
Large Scale Applications
Karim Abbaspour, EAWAG, Switzerland (karim.abbaspour@eawag.ch)
Nam-Won Kim, Korea Institute of Construction Technology, Korea (nwkim@kict.re.kr)
R. Srinivasan, Texas A&M University, USA (r-srinivasan@tamu.edu)
Climate Change Applications
Valentina Krysanova, PIK, Germany (Valentina.Krysanova@pik-potsdam.de)
Sue White, Cranfield University, UK (sue.white@cranfield.ac.uk)
Taesoo Lee, Texas A&M University, USA (taesoo@ag.tamu.edu)
Xuesong Zhang, Pacific Northwest National Laboratory, USA (xuesongzhang2004@gmail.com)
Sensitivity Calibration and Uncertainty
Karim Abbaspour, EAWAG, Switzerland (karim.abbaspour@eawag.ch)
Ann van Griensven, UNESCO-IHE, NL (a.vangriensven@unesco-ihe.org)
Nam-Won Kim, Korea Institute of Construction Technology, Korea (nwkim@kict.re.kr)
Xuesong Zhang, Pacific Northwest National Laboratory, USA (xuesongzhang2004@gmail.com)
Biofuel & Plant Growth
Jeff Arnold, USDA-ARS, USA (Jeff.Arnold@ars.usda.gov)
Philip Gassman, Iowa State University, USA (pwgassma@iastate.edu)
Taesoo Lee, Texas A&M University, USA (taesoo@ag.tamu.edu)
Environmental Applications
Nicola Fohrer, Christian-Albrechts-University, Kiel, Germany (nfohrer@hydrology.uni-kiel.de)
Nam-Won Kim, Korea Institute of Construction Technology, Korea (nwkim@kict.re.kr)
Martin Volk, Helmholtz Centre for Environmental Research - UFZ, Germany (martin.volk@ufz.de)
BMPs
C. Allan Jones, Texas AgriLife Research, USA (cajones@tamu.edu)
Antonio Lo Porto, IRSA, IT (antonio.loporto@ba.irsa.cnr.it)
Sue White, Cranfield University, UK (sue.white@cranfield.ac.uk)
Pushpa Tuppad, Texas A&M University (ptuppad@brc.tamus.edu)
Hydrology
A.K. Gosain, Indian Institute of Technology, India (gosain@civil.iitd.ac.in)
Antonio Lo Porto, IRSA, IT (antonio.loporto@ba.irsa.cnr.it)
Jose Maria Bodoque, UCLM, Toledo, Spain (JoseMaria.Bodoque@uclm.es)
Jaehak Jeong, Texas AgriLife Research, USA (jjeong@brc.tamus.edu)
Sediment, Nutrients, and Carbon
Nicola Fohrer, Christian-Albrechts-University, Kiel, Germany (nfohrer@hydrology.uni-kiel.de)
Ann van Griensven, UNESCO-IHE, NL (a.vangriensven@unesco-ihe.org)
Nam-Won Kim, Korea Institute of Construction Technology, Korea (nwkim@kict.re.kr)
Pushpa Tuppad, Texas A&M University (ptuppad@brc.tamus.edu)
Pesticides, Bacteria, Metals, and Pharmaceuticals
Jeff Arnold, USDA-ARS, USA (Jeff.Arnold@ars.usda.gov)
R. Srinivasan, Texas A&M University, USA (r-srinivasan@tamu.edu)
Jaehak Jeong, Texas AgriLife Research, USA (jjeong@brc.tamus.edu)
Chehra Aboukinane, McGill University, Canada (chehrazade.aboukinane@mail.mcgill.ca)
Virginia Jin, USDA-Agricultural Research Service (Virginia.Jin@ars.usda.gov)
Model Development
Nicola Fohrer, Christian-Albrechts-University, Kiel, Germany (nfohrer@hydrology.uni-kiel.de)
Ann van Griensven, UNESCO-IHE, NL (a.vangriensven@unesco-ihe.org)
Jaehak Jeong, Texas AgriLife Research, USA (jjeong@brc.tamus.edu)
Database and GIS Application and Development
Ann van Griensven, UNESCO-IHE, NL (a.vangriensven@unesco-ihe.org)
R. Srinivasan, Texas A&M University, USA (r-srinivasan@tamu.edu)
Taesoo Lee, Texas A&M University, USA (taesoo@ag.tamu.edu)
Urban Processes and Management
C. Allan Jones, Texas AgriLife Research, USA (cajones@tamu.edu)
Pedro Chambel Leitão, IST-MARETEC, Portugal (pedrochambelleitao@gmail.com)
Jaehak Jeong, Texas AgriLife Research, USA (jjeong@brc.tamus.edu)
Landscape Processes and Landscape / River Continuum
Valentina Krysanova, PIK, Germany (Valentina.Krysanova@pik-potsdam.de)
Nam-Won Kim, Korea Institute of Construction Technology, Korea (nwkim@kict.re.kr)
Martin Volk, Helmholtz Centre for Environmental Research - UFZ, Germany (martin.volk@ufz.de)
InStream Sediment and Pollutant Transport
A.K. Gosain, Indian Institute of Technology, India (gosain@civil.iitd.ac.in)
Pedro Chambel Leitão, IST-MARETEC, Portugal (pedrochambelleitao@gmail.com)
Jaehak Jeong, Texas AgriLife Research, USA (jjeong@brc.tamus.edu)
Opening & Keynote Presentations
Keynote Speech 1 | Outlook of SWAT Model as a Total Solution of Water, Pollutant, & Food Problem Dr. Jeff Arnold, USDA-ARS, USA |
Presentation |
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Keynote Speech 2 | Outcomes and Impacts by the Sustainable Water Resources Research Program (2001-2011) in Korea Dr. Sung Kim Director, Sustainable Water Resources Research Center, Korea |
Presentation |
Model Development History | Dr. Jimmy Williams, Texas AgriLife Research, USA | Presentation |
Recent Development and Features of ArcSWAT | Dr. Raghavan Srinivasan, Texas A&M University, USA | Presentation |
SESSION A1: Large Scale Applications
A1-1 Hyunwoo Kang | Improvement SWAT auto-calibration tool with flow clustering EI estimation system using K-means | Presentation |
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A1-2 Taesoo Lee | Application of SWAT to estimate inflow to bays from ungaged large watersheds | Presentation |
A1-3 Pierluigi Cau | A relational data paradigm to manage SWAT simulations on the GRID for the Black Sea Catchment observation and assessment system | Presentation |
A1-4 Nguyen Duy Binh | SWAT application coupled with web technology for soil erosion assessment in north western region of Vietnam | Presentation |
A1-5 Elham Rouholahnejad | Hydrological modeling of the Black Sea Catchment using SWAT | Presentation |
A1-6 Christine Kuendig | Preliminary results of the application and calibration of a hydrological model in Europe | Presentation |
A1-7 Hua Xie | Hydrologic calibration of the SWAT model for African river basins using GRACE data | Presentation |
SESSION A2: Hydrology
A2-1 Eunjin Han | Surface soil moisture assimilation with SWAT | Presentation |
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A2-2 Geun Ae Park | The spatial analysis between SWAT simulated soil moisture, and MODIS LST and NDVI products | Presentation |
A2-3 Ki-Wook Park | Evaluation of SWAT model for irrigation reservoir operation | Presentation |
A2-4 Paul D. Wagner | Analyzing water resources in a monsoon-driven environment – an example from the Indian Western Ghats | Presentation |
A2-5 Hyung-Kyung Joh | Evaluation of mixed forest evapotranspiration and soil moisture using measured and SWAT simulated results in a hillslope watershed | Presentation |
A2-6 Il-Moon Chung | Integrated surface-groundwater analysis considering groundwater use in Pyoseon region, Jeju island, Korea | Presentation |
SESSION A3: Climate Change Applications
A3-1 Hyun-Han Kwon | Multivarite nonstationary Markov Chain model and its use for SWAT rainfallrunoff Model | |
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A3-2 Debjani Deb | Hydrologic response to climate and landuse change in the Minnesota River Basin | |
A3-3 Se-Woong Chung | Impact of climate change on water and soil loss in Daecheong Reservoir Watershed | |
A3-4 Jong-Yoon Park | Assessment of MIROC3.2 hires climate change and CLUE-s land use change impacts on watershed hydrology using SWAT | Presentation |
A3-5 Woo Young Choi | Estimation of climate change effect on nonpoint source pollution in Juam Lake Watershed | |
A3-6 Soo Jun Kim | The evaluation of climate change impacts on water resources system by using SWAT model | |
A3-7 Hyung Jin Shin | Projection of future watershed hydrology by applying SWAT through the prediction of vegetation community under MIROC3.2 hires climate change condition | Presentation |
A3-8 Min Ji Park | Comparison of watershed streamflows by using the predicted MIROC3.2hires GCM data and the observed weather data for the period of 2000-2009 under SWAT simulations | Presentation |
SESSION A4: Pesticides, Bacteria, Metals and Pharmaceuticals
A4-1 Chehra Aboukinane | Manipulation of the SWAT code to model veterinary antibiotics in the environment | Presentation |
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A4-2 Virginia Jin | Potential soil transport of 17ß-estradiol in a beneficial reuse system landapplying class B municipal biosolids for forage production in Central Texas | Presentation |
A4-3 Joon Ha Kim | Modeling approach on resuspension of E. coli from streambed using Soil and Water Assessment Tool (SWAT) | Presentation |
SESSION A5: Sediment, Nutrients and Carbon
A5-1 Khanh Linh Hoang | Comparison of the SWAT model versus the DAISY-MIKE-SHE model for simulating the flow and nitrogen processes | Presentation |
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A5-2 Hiroaki Somura | Application of SWAT for nutrient load discharge estimation | Presentation |
A5-3 Jong-Pil Moon | Study on setting appropriate size of riparian buffer zone in urban basin by using SWAT model | Presentation |
A5-4 Phan Dinh Binh | Land use change effects on discharge and sediment yields of Song Cau Catchment in Northern VietNam | Presentation |
SESSION B1: Model Development
B1-1 Jichul Ryu | Enhancement of the SWAT-REMM system for simulation of T-N reduction efficiency with riparian buffer system at a Bonggok watershed | Presentation |
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B1-2 Youn Shik Park | Development of the integrated SWAT-VFSMOD model | Presentation |
B1-3 Daniel Moriasi | New shallow water table depth algorithm in SWAT2005: recent modifications | Presentation |
B1-4 Jaehak Jeong | Modelling onsite wastewater systems in SWAT | Presentation |
B1-5 Karim Abbaspour | SWAT-CUP: A calibration and uncertainty analysis program for SWAT | Presentation |
B1-6 Jaehak Jeong | Development of subdaily erosion and sediment transport models in SWAT | Presentation |
B1-7 Philip Gassman | Simulation trends and other aspects regarding the worldwide use of the SWAT model | Presentation |
SESSION B2: InStream Sediment and Pollutant Transport
B2-1 Chulgyum Kim | Using SWAT for estimating impact of sediment and pollutant export in the Chungju Dam watershed, Korea | Presentation |
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B2-2 Nguyen Kim Loi | Assessing the impacts of land use/ land cover changes and practices on water discharge and sedimentation using SWAT: Case study in Dong Nai watershed – Vietnam |
SESSION B3: BMPs
B3-1 Jae Ho Jang | Evaluation of watershed management practices on receiving water quality using SWAT model | Presentation |
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B3-2 Tae Geun Kim | Estimation of pollutants removal efficiency in the buffer strip using SWAT Model | Presentation |
SESSION B4: Database and GIS Application and Development
B4-1 Simone Manca | The MVC client server architecture of the BSC-OS portal to digest, manage, and query SWAT data collections | Presentation |
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B4-2 Sudipta K. Mishra | Development of a field based decision support tool integrated with socioeconomical model for managing water quality and quantity | Presentation |
B4-3 Seong Joon Kim | Evaluation of streamflow and water quality in an agricultural watershed of South Korea using SWAT and KOMPSAT-2 detailed land use information | Presentation |
B4-4 Won-Ho Nam | Development of Web-GIS based SWAT data generation system | Presentation |
B4-5 Yunseok Choi | Development of an interface system to couple SWAT2005 and HyGIS | Presentation |
B4-6 Ali Najafinejad | The effect of map spatial resolution on simulation result of SWAT, case study: chelchay watershed, Golestan province in Iran | Presentation |
SESSION B5: Biofuel and Plant Growth
B5-1 Miae Ha | Hydrologic effects of bio-char applications on corn production fields in Illinois | Presentation |
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B5-2 Bikesh Shrestha | Evaluating the impact of biofuel production on watershed hydrology using SWAT |
SESSION B6: Landscape Processes and Landscape / River Continuum
B6-1 Jeff Arnold | An efficient delineation structure in SWAT to simulate the landscape/ river continuum | Presentation |
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SESSION B7: Environmental Applications
B7-1 Jitae Kim | Modification of stream water temperature calculation equation of SWAT for the Han River Korea using regression analysis | Presentation |
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B7-2 Christopher L. Shope | Simulating water quantity and quality and sediment transport under varying land use and climatic conditions in a monsoonal driven watershed | Presentation |
B7-3 Katrin Bieger | Modelling the impact of land use change on the water balance in the Xiangxi catchment (Three Gorges Region, China) using SWAT | Presentation |
SESSION B8: Urban Processes and Management
B8-1 Jeongwoo Lee | Hydrologic modeling of the White Rock Creek Watershed with SWAT-SWMM | Presentation |
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B8-2 Allan Jones | Use of SWAT for urban water management projects in Texas | Presentation |
SESSION B9: Sensitivity Calibration and Uncertainty
B9-1 Jeongkon Kim | Analysis of the impacts of spatial input data quality on determination of runoff and suspended sediment in the Imha Watershed using SWAT model | Presentation |
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B9-2 Karim Abbaspour | SWAT Calibration and Uncertainty Procedures | Presentation |
B9-3 Jaewoon Jung | Simulation of streamflow using SWAT auto calibration tool over the Saemangeum Watershed | Presentation |