Groundwater vistas
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PRACTICESteve Kosub is Of Counsel to Sprouse Shrader Smith PLLC. His practice focuses on the development and distribution of groundwater and other water resources. His work encompasses water planning, groundwater transactions, project negotiations, permitting activities, infrastructure agreements, intergovernmental agreements, and innovative water supply strategies.PRACTICE AREASWaterGovernmental relationsRegulatory takingsAdministrative proceduresLocal governmentCERTIFICATION/SPECIALIZATIONPROFESSIONAL ACTIVITIESPast chairman and current member of the Environmental and Natural Resources Law Section of the State Bar of TexasTexas Bar FoundationPast chairman and current member of the Environmental and Natural Resources Law Section of the San Antonio Bar AssociationAdditional State Bar of Texas section memberships:Administrative and Public LawPublic Utility LawGovernment LawReal Estate, Probate & Trust LawADMISSIONSTexas State Courts, 1977EDUCATIONUniversity of Texas School of Law, J.D., 1977Texas A&M University, 1974PRESENTATIONS/PUBLICATIONSWater for a Public Purpose: Governmental Acquisition of Water Rights by Involuntary Means, Essentials of Texas Water Resources, Mary K. Sahs, ed., State Bar of Texas (Fifth Edition 2019 and previous editions)With Hal Ray, Inverse Condemnation, in Thomson Reuters Texas Practice Series: Texas Environmental Law, Civins, Hall and Sahs, eds. (2019 and previous editions)Aquifer Storage and Recovery, State Bar of Texas – Changing Face of Water Rights (San Antonio, TX, February 2020)Groundwater Law from the Municipal Utility Perspective, University of Texas Energy and Earth Resources Interdisciplinary Graduate Program (Austin, TX, 2014-2019)Governance, Texas Association of Groundwater Districts Texas Groundwater Summit (San Antonio. TX, 2018 and 2019)National Water Law Forum (2017-2019)Hear Me Now or Hear Me Later: A Review of Standing Before the Agency and Courts, University of Texas School of Law 13th Annual Advanced Administrative Law Seminar (Austin, TX, August 2018)Use or Abuse of Social Media by Texas Administrative Agencies, University of Texas School of Law 11th Annual Advanced Texas Administrative Law Seminar (Austin, TX, August 2016)Population Growth and Groundwater Management (Panel Discussion), Texas Water Symposium: 2017 Legislative Outlook (Austin, TX, November 2016)Water Markets and Water Transfers in Texas, The Water Report (Issue #140, October 15, 2015)Water Markets and Water Transfers in Texas, American Bar Association’s 33rd Annual Water Law Conference (Denver, CO, June 2015)Program Co-Chairman and Speaker, Texas Water Law, CLE Int. (San Antonio, TX)Water Markets and Water Transfers, September 2016Rethinking Water Management in Texas, April 2015Regulatory Takings and the Edwards Aquifer Authority, March 2014Rethinking Water Management in Texas, April 2013The Long-Awaited Decision in Edwards Aquifer v. Day, March 2012The Edwards Aquifer Recovery Implementation Program, March 2011Regionalization of Water Supplies: The Challenge of Diversification, March 2010A Proposal for Regional Management of Groundwater, Texas Association of Groundwater Districts Annual Conference (San Marcos, TX, August 2015)Groundwater Regulation in Light of Recent Takings Litigation (Panel Moderator), University of Texas School of Law Texas Water Law Institute (Austin, TX, December 2015)Hybrid Administrative Practice: Groundwater Districts, University of Texas School of Law 9th Annual Advanced Texas Administrative Law
Groundwater Vistas - Groundwater Modeling Software
Al (2022) Integrated seawater intrusion and groundwater quality assessment of a coastal aquifer: GALDIT, geospatial and analytical approaches. Environ Sci Pollut Res 29:36699–36720. Google Scholar Iglesias A, Garrote L, Flores F, Moneo M (2007) Challenges to manage the risk of Water Scarcity and Climate Change in the Mediterranean. Water Resour Manage 21:775–788. Google Scholar Ikenna IS, Chinedu EE, Chibuike IE (2021) A SINTACS GIS-based method for assessing groundwater vulnerability in sedimentary aquifers, South-Eastern, Nigeria. Arab J Geosci 14:733. Google Scholar Issaka S, Ashraf MA (2017) Impact of soil erosion and degradation on water quality: a review. Geol Ecol Landscapes 1:1–11. Google Scholar Jafarzadeh F, Asghari Moghaddam A, Razzagh S et al (2024) A meta-ensemble machine learning strategy to assess groundwater holistic vulnerability in coastal aquifers. Groundw Sustainable Dev 26:101296. Google Scholar Jahromi MN, Gomeh Z, Busico G et al (2021) Developing a SINTACS-based method to map groundwater multi-pollutant vulnerability using evolutionary algorithms. Environ Sci Pollut Res 28:7854–7869. CAS Google Scholar Jakeman AJ, Barreteau O, Hunt RJ et al (2016) Integrated Groundwater Management: an overview of concepts and challenges. In: Jakeman AJ, Barreteau O, Hunt RJ et al (eds) Integrated Groundwater Management: concepts, approaches and challenges. Springer International Publishing, Cham, pp 3–20Chapter Google Scholar Jang C-S (2022) Aquifer vulnerability assessment for fecal coliform bacteria using multi-threshold logistic regression. Environ Monit Assess 194:800. Google Scholar Jansen LJM, Gregorio AD (2002) Parametric land cover and land-use classifications as tools for environmental change detection. Agric Ecosyst Environ 91:89–100. Google Scholar Jiménez-Martínez J, García-Aróstegui JL,Application of Groundwater Vistas in Modelling Groundwater
Anthropogenic and ungauged Watershed using the SWAT model: a Case Study in the El Beal Watershed (Southeast Spain). Agronomy 9:576. Google Scholar López-Ballesteros A, Trolle D, Srinivasan R, Senent-Aparicio J (2023) Assessing the effectiveness of potential best management practices for science-informed decision support at the watershed scale: the case of the Mar Menor coastal lagoon, Spain. Sci Total Environ 859:160144. CAS Google Scholar Machiwal D, Jha MK, Singh VP, Mohan C (2018) Assessment and mapping of groundwater vulnerability to pollution: current status and challenges. Earth Sci Rev 185:901–927. Google Scholar Mahrez B, Klebingat S, Houha B, Houria B (2018) GIS-based GALDIT method for vulnerability assessment to seawater intrusion of the quaternary coastal Collo aquifer (NE-Algeria). Arab J Geosci 11:1–14. CAS Google Scholar Miralles DG, Holmes TRH, De Jeu Ra. M, et al (2011) Global land-surface evaporation estimated from satellite-based observations. Hydrol Earth Syst Sci 15:453–469. Google Scholar Moench M (2003) Groundwater and poverty: exploring the connections. Intensive use of groundwater: Challenges and opportunities 441–456Moriasi DN, Arnold JG, Van Liew MW et al (2007) Model evaluation guidelines for systematic quantification of accuracy in watershed simulations. Trans ASABE 50:885–900Article Google Scholar Nazzal Y, Howari FM, Iqbal J et al (2019) Investigating aquifer vulnerability and pollution risk employing modified DRASTIC model and GIS techniques in Liwa area, United Arab Emirates. Groundw Sustainable Dev 8:567–578. Google Scholar Ncibi K, Chaar H, Hadji R et al (2020) A GIS-based statistical model for assessing groundwater susceptibility index in shallow aquifer in Central Tunisia (Sidi Bouzid basin).. download Groundwater Vistas free download Groundwater Vistas free Groundwater Vistas Groundwater Vistas Groundwater Vistas download Groundwater Vistas free Groundwater Vistas Red Giant Shooter Suite Windows/ macOS Microsoft 365 (Office 365) ProPlus Version 2501 x64 Windows/macOS 16.84. بهروزشده در 9 Groundwater Vistas (GV) Demo! Groundwater Vistas is Environmental Simulations’s new groundwater modeling environment for Microsoft Windows. Groundwater Vistas, or GV, isGroundwater Vistas - Groundwater Modeling Software - CESDb
Hunink JE et al (2016) The role of groundwater in highly human-modified hydrosystems: a review of impacts and mitigation options in the Campo De Cartagena-Mar Menor coastal plain (SE Spain). Environ Rev 24:377–392. CAS Google Scholar Jimeno-Sáez P, Senent-Aparicio J, Cecilia JM, Pérez-Sánchez J (2020) Using machine-learning algorithms for Eutrophication modeling: Case Study of Mar Menor lagoon (Spain). IJERPH 17:1189. Google Scholar Kazakis N, Voudouris KS (2015) Groundwater vulnerability and pollution risk assessment of porous aquifers to nitrate: modifying the DRASTIC method using quantitative parameters. J Hydrol 525:13–25. CAS Google Scholar Kouchi DH, Esmaili K, Faridhosseini A et al (2017) Sensitivity of Calibrated Parameters and Water Resource estimates on different objective functions and optimization algorithms. Water 9:384. Google Scholar Kwon E, Park J, Park W-B et al (2022) Nitrate vulnerability of groundwater in Jeju Volcanic Island, Korea. Sci Total Environ 807:151399. CAS Google Scholar Lai Y, Wang F, Zhang Y et al (2019) Implementing chemical mass balance model and vulnerability the theories to realize the comprehensive evaluation in an abandoned battery plant. Sci Total Environ 686:788–796. CAS Google Scholar Lapworth DJ, Boving TB, Kreamer DK et al (2022) Groundwater quality: global threats, opportunities and realising the potential of groundwater. Sci Total Environ 811:152471. CAS Google Scholar Li D, Tian P, Luo Y et al (2021) Importance of stopping groundwater irrigation for balancing agriculture and wetland ecosystem. Ecol Ind 127:107747. Google Scholar López-Ballesteros A, Senent-Aparicio J, Srinivasan R, Pérez-Sánchez J (2019) Assessing the impact of Best Management practices in a highlyGroundwater Vistas - helpcenter.mines.edu
Western United States: lessons for Australia’s Murray-Darling. J Appl Econ Pol 30:167–184 Google Scholar Hou ZY, Lu WX, Chu HB, Luo JN (2015) Selecting parameter-optimized surrogate models in DNAPL contaminated aquifer remediation strategies. J Environ Eng Sci 32:1016–1026Article CAS Google Scholar Johnson J (2018) Farm Bureau declares opposition to proposed Salinas Valley New wells Moratorium Google Scholar Kahraman C, Cebeci U, Ulukan Z (2003) Multi-criteria supplier selection using fuzzy AHP. Logist Inf Manag 16(6):382–394Article Google Scholar Kelly BF, Timms WA, Andersen MS, McCallum AM, Blakers RS, Smith R, Rau GC, Badenhop A, Ludowici K, Acworth RI (2013) Aquifer heterogeneity and response time: the challenge for groundwater management. J Crop Pasture Sci 64:1141–1154Article Google Scholar Kiparsky M, Milman A, Owen D, Fisher AT (2017) The importance of institutional design for distributed local-level governance of groundwater: the case of California’s sustainable groundwater management act. J Water 9:755Article Google Scholar Li et al (2019) Ranking of risks for existing and new building works. Int Sustain 10:2863 Google Scholar Liang W-Y (2003) The analytic hierarchy process in project evaluation. An R&D case study in Taiwan. Benchmarking: An Int J 10(5):445–56 Google Scholar Lutey T (2018) Cleanup of toxic coal ash that contaminated colstrip groundwater begins. Billings Gazette, USA Google Scholar Megdal SB, Gerlak AK, Huang LY, Delano N, Varady RG (2017) Innovative approaches to collaborative groundwater governance in the United States: Environ Google Scholar Michaels S, Kenney DS (2000) State approaches to watershed management: Transferring lessons between the Northeast and Southwest. In: Proceedings ofGroundwaterSoftware.com - Groundwater Vistas MODFLOW
Et al (2021) A systems lens to evaluate the compound human health impacts of anthropogenic activities. One Earth 4:1233–1247. Google Scholar Souza V, Mandujano MC, Pisanty I, Eguiarte LE (eds) (2022) Conflicts between Biodiversity Conservation and humans: the case of the Chihuahua Desert and Cuatro Ciénegas. Springer International Publishing, Cham Google Scholar Taghavi N, Niven RK, Paull DJ, Kramer M (2022) Groundwater vulnerability assessment: a review including new statistical and hybrid methods. Sci Total Environ 822:153486. CAS Google Scholar Testoni R, Levizzari R, De Salve M (2017) Coupling of unsaturated zone and saturated zone in radionuclide transport simulations. Prog Nucl Energy 95:84–95. CAS Google Scholar Tuomainen U, Candolin U (2011) Behavioural responses to human-induced environmental change. Biol Rev 86:640–657. Google Scholar Tziritis E, Pisinaras V, Panagopoulos A, Arampatzis G (2021) RIVA: a new proposed method for assessing intrinsic groundwater vulnerability. Environ Sci Pollut Res 28:7043–7067. Google Scholar Yin L, Zhang E, Wang X et al (2013) A GIS-based DRASTIC model for assessing groundwater vulnerability in the Ordos Plateau, China. Environ Earth Sci 69:171–185. Google Scholar Yu D, Shi P, Liu Y, Xun B (2013) Detecting land use-water quality relationships from the viewpoint of ecological restoration in an urban area. Ecol Eng 53:205–216. Google Scholar Zghibi A, Merzougui A, Chenini I et al (2016) Groundwater vulnerability analysis of Tunisian coastal aquifer: an application of DRASTIC index method in GIS environment. Groundw Sustainable Dev 2–3:169–181. Google Scholar. download Groundwater Vistas free download Groundwater Vistas free Groundwater Vistas Groundwater Vistas Groundwater Vistas download Groundwater Vistas free Groundwater Vistas Red Giant Shooter Suite Windows/ macOS Microsoft 365 (Office 365) ProPlus Version 2501 x64 Windows/macOS 16.84. بهروزشده در 9 Groundwater Vistas (GV) Demo! Groundwater Vistas is Environmental Simulations’s new groundwater modeling environment for Microsoft Windows. Groundwater Vistas, or GV, isComments
PRACTICESteve Kosub is Of Counsel to Sprouse Shrader Smith PLLC. His practice focuses on the development and distribution of groundwater and other water resources. His work encompasses water planning, groundwater transactions, project negotiations, permitting activities, infrastructure agreements, intergovernmental agreements, and innovative water supply strategies.PRACTICE AREASWaterGovernmental relationsRegulatory takingsAdministrative proceduresLocal governmentCERTIFICATION/SPECIALIZATIONPROFESSIONAL ACTIVITIESPast chairman and current member of the Environmental and Natural Resources Law Section of the State Bar of TexasTexas Bar FoundationPast chairman and current member of the Environmental and Natural Resources Law Section of the San Antonio Bar AssociationAdditional State Bar of Texas section memberships:Administrative and Public LawPublic Utility LawGovernment LawReal Estate, Probate & Trust LawADMISSIONSTexas State Courts, 1977EDUCATIONUniversity of Texas School of Law, J.D., 1977Texas A&M University, 1974PRESENTATIONS/PUBLICATIONSWater for a Public Purpose: Governmental Acquisition of Water Rights by Involuntary Means, Essentials of Texas Water Resources, Mary K. Sahs, ed., State Bar of Texas (Fifth Edition 2019 and previous editions)With Hal Ray, Inverse Condemnation, in Thomson Reuters Texas Practice Series: Texas Environmental Law, Civins, Hall and Sahs, eds. (2019 and previous editions)Aquifer Storage and Recovery, State Bar of Texas – Changing Face of Water Rights (San Antonio, TX, February 2020)Groundwater Law from the Municipal Utility Perspective, University of Texas Energy and Earth Resources Interdisciplinary Graduate Program (Austin, TX, 2014-2019)Governance, Texas Association of Groundwater Districts Texas Groundwater Summit (San Antonio. TX, 2018 and 2019)National Water Law Forum (2017-2019)Hear Me Now or Hear Me Later: A Review of Standing Before the Agency and Courts, University of Texas School of Law 13th Annual Advanced Administrative Law Seminar (Austin, TX, August 2018)Use or Abuse of Social Media by Texas Administrative Agencies, University of Texas School of Law 11th Annual Advanced Texas Administrative Law Seminar (Austin, TX, August 2016)Population Growth and Groundwater Management (Panel Discussion), Texas Water Symposium: 2017 Legislative Outlook (Austin, TX, November 2016)Water Markets and Water Transfers in Texas, The Water Report (Issue #140, October 15, 2015)Water Markets and Water Transfers in Texas, American Bar Association’s 33rd Annual Water Law Conference (Denver, CO, June 2015)Program Co-Chairman and Speaker, Texas Water Law, CLE Int. (San Antonio, TX)Water Markets and Water Transfers, September 2016Rethinking Water Management in Texas, April 2015Regulatory Takings and the Edwards Aquifer Authority, March 2014Rethinking Water Management in Texas, April 2013The Long-Awaited Decision in Edwards Aquifer v. Day, March 2012The Edwards Aquifer Recovery Implementation Program, March 2011Regionalization of Water Supplies: The Challenge of Diversification, March 2010A Proposal for Regional Management of Groundwater, Texas Association of Groundwater Districts Annual Conference (San Marcos, TX, August 2015)Groundwater Regulation in Light of Recent Takings Litigation (Panel Moderator), University of Texas School of Law Texas Water Law Institute (Austin, TX, December 2015)Hybrid Administrative Practice: Groundwater Districts, University of Texas School of Law 9th Annual Advanced Texas Administrative Law
2025-03-29Al (2022) Integrated seawater intrusion and groundwater quality assessment of a coastal aquifer: GALDIT, geospatial and analytical approaches. Environ Sci Pollut Res 29:36699–36720. Google Scholar Iglesias A, Garrote L, Flores F, Moneo M (2007) Challenges to manage the risk of Water Scarcity and Climate Change in the Mediterranean. Water Resour Manage 21:775–788. Google Scholar Ikenna IS, Chinedu EE, Chibuike IE (2021) A SINTACS GIS-based method for assessing groundwater vulnerability in sedimentary aquifers, South-Eastern, Nigeria. Arab J Geosci 14:733. Google Scholar Issaka S, Ashraf MA (2017) Impact of soil erosion and degradation on water quality: a review. Geol Ecol Landscapes 1:1–11. Google Scholar Jafarzadeh F, Asghari Moghaddam A, Razzagh S et al (2024) A meta-ensemble machine learning strategy to assess groundwater holistic vulnerability in coastal aquifers. Groundw Sustainable Dev 26:101296. Google Scholar Jahromi MN, Gomeh Z, Busico G et al (2021) Developing a SINTACS-based method to map groundwater multi-pollutant vulnerability using evolutionary algorithms. Environ Sci Pollut Res 28:7854–7869. CAS Google Scholar Jakeman AJ, Barreteau O, Hunt RJ et al (2016) Integrated Groundwater Management: an overview of concepts and challenges. In: Jakeman AJ, Barreteau O, Hunt RJ et al (eds) Integrated Groundwater Management: concepts, approaches and challenges. Springer International Publishing, Cham, pp 3–20Chapter Google Scholar Jang C-S (2022) Aquifer vulnerability assessment for fecal coliform bacteria using multi-threshold logistic regression. Environ Monit Assess 194:800. Google Scholar Jansen LJM, Gregorio AD (2002) Parametric land cover and land-use classifications as tools for environmental change detection. Agric Ecosyst Environ 91:89–100. Google Scholar Jiménez-Martínez J, García-Aróstegui JL,
2025-04-18Hunink JE et al (2016) The role of groundwater in highly human-modified hydrosystems: a review of impacts and mitigation options in the Campo De Cartagena-Mar Menor coastal plain (SE Spain). Environ Rev 24:377–392. CAS Google Scholar Jimeno-Sáez P, Senent-Aparicio J, Cecilia JM, Pérez-Sánchez J (2020) Using machine-learning algorithms for Eutrophication modeling: Case Study of Mar Menor lagoon (Spain). IJERPH 17:1189. Google Scholar Kazakis N, Voudouris KS (2015) Groundwater vulnerability and pollution risk assessment of porous aquifers to nitrate: modifying the DRASTIC method using quantitative parameters. J Hydrol 525:13–25. CAS Google Scholar Kouchi DH, Esmaili K, Faridhosseini A et al (2017) Sensitivity of Calibrated Parameters and Water Resource estimates on different objective functions and optimization algorithms. Water 9:384. Google Scholar Kwon E, Park J, Park W-B et al (2022) Nitrate vulnerability of groundwater in Jeju Volcanic Island, Korea. Sci Total Environ 807:151399. CAS Google Scholar Lai Y, Wang F, Zhang Y et al (2019) Implementing chemical mass balance model and vulnerability the theories to realize the comprehensive evaluation in an abandoned battery plant. Sci Total Environ 686:788–796. CAS Google Scholar Lapworth DJ, Boving TB, Kreamer DK et al (2022) Groundwater quality: global threats, opportunities and realising the potential of groundwater. Sci Total Environ 811:152471. CAS Google Scholar Li D, Tian P, Luo Y et al (2021) Importance of stopping groundwater irrigation for balancing agriculture and wetland ecosystem. Ecol Ind 127:107747. Google Scholar López-Ballesteros A, Senent-Aparicio J, Srinivasan R, Pérez-Sánchez J (2019) Assessing the impact of Best Management practices in a highly
2025-03-30Western United States: lessons for Australia’s Murray-Darling. J Appl Econ Pol 30:167–184 Google Scholar Hou ZY, Lu WX, Chu HB, Luo JN (2015) Selecting parameter-optimized surrogate models in DNAPL contaminated aquifer remediation strategies. J Environ Eng Sci 32:1016–1026Article CAS Google Scholar Johnson J (2018) Farm Bureau declares opposition to proposed Salinas Valley New wells Moratorium Google Scholar Kahraman C, Cebeci U, Ulukan Z (2003) Multi-criteria supplier selection using fuzzy AHP. Logist Inf Manag 16(6):382–394Article Google Scholar Kelly BF, Timms WA, Andersen MS, McCallum AM, Blakers RS, Smith R, Rau GC, Badenhop A, Ludowici K, Acworth RI (2013) Aquifer heterogeneity and response time: the challenge for groundwater management. J Crop Pasture Sci 64:1141–1154Article Google Scholar Kiparsky M, Milman A, Owen D, Fisher AT (2017) The importance of institutional design for distributed local-level governance of groundwater: the case of California’s sustainable groundwater management act. J Water 9:755Article Google Scholar Li et al (2019) Ranking of risks for existing and new building works. Int Sustain 10:2863 Google Scholar Liang W-Y (2003) The analytic hierarchy process in project evaluation. An R&D case study in Taiwan. Benchmarking: An Int J 10(5):445–56 Google Scholar Lutey T (2018) Cleanup of toxic coal ash that contaminated colstrip groundwater begins. Billings Gazette, USA Google Scholar Megdal SB, Gerlak AK, Huang LY, Delano N, Varady RG (2017) Innovative approaches to collaborative groundwater governance in the United States: Environ Google Scholar Michaels S, Kenney DS (2000) State approaches to watershed management: Transferring lessons between the Northeast and Southwest. In: Proceedings of
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