Applying Optimization to Support Adaptive Water Management of Rivers
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Martin Volk | Francisco J. Peñas | José Barquín | Diana Derepasko | M. Volk | J. Barquín | F. Peñas | Diana Derepasko
[1] N. Crossman,et al. Environmental flows for natural, hybrid and novel riverine ecosystems in a changing world , 2014 .
[2] Kalyanmoy Deb,et al. A Running Performance Metric and Termination Criterion for Evaluating Evolutionary Multi- and Many-objective Optimization Algorithms , 2020, 2020 IEEE Congress on Evolutionary Computation (CEC).
[3] Beth Cullen,et al. A socio-hydrological approach for incorporating gender into biophysical models and implications for water resources research , 2015 .
[4] J. Connell. Intermediate-disturbance hypothesis. , 1979, Science.
[5] Lakshmi Rajamani,et al. Parameterless penalty function for solving constrained evolutionary optimization , 2009, 2009 IEEE Workshop on Hybrid Intelligent Models and Applications.
[6] C. Gibbins,et al. Influence of hydrological regimes on the pre‐spawning entry of Atlantic salmon (Salmo salar L.) into an upland river , 2008 .
[7] C. Pahl-Wostl,et al. From applying panaceas to mastering complexity: Toward adaptive water governance in river basins , 2012 .
[8] D. Garrick,et al. ENVIRONMENTAL WATER ORGANIZATIONS AND INSTITUTIONAL SETTINGS , 2017 .
[9] Martin J. Westgate,et al. Adaptive management of biological systems: A review , 2013 .
[10] Jonnalagadda Srinivas. Review of some Constrained Optimization Schemes , 2019 .
[11] Mohammad Albaji,et al. Combination of GIS and AHP for site selection of pressurized irrigation systems in the Izeh plain, Iran , 2020 .
[12] Pierre Carpentier,et al. Multi-usage hydropower single dam management: chance-constrained optimization and stochastic viability , 2017 .
[13] Bogale Gebremariam,et al. Effect of land use land cover dynamics on hydrological response of watershed: Case study of Tekeze Dam watershed, northern Ethiopia , 2017, International Soil and Water Conservation Research.
[14] C. Hirschhausen,et al. Integrated Water Resource Management: Principles and Applications , 2020, The Economics of Water.
[15] G. A. Thomas,et al. Moving Forward: The Implementation Challenge for Environmental Water Management , 2017 .
[16] Brian S. McIntosh,et al. Synthesis, part of a Special Feature on New Methods for Adaptive Water Management From Premise to Practice: a Critical Assessment of Integrated Water Resources Management and Adaptive Management Approaches in the Water Sector , 2008 .
[17] Jeroen C. J. H. Aerts,et al. Research, part of a Special Feature on New Methods for Adaptive Water Management Managing Change toward Adaptive Water Management through Social Learning , 2007 .
[18] Catherine Allan,et al. Principles for monitoring, evaluation and adaptive management of environmental water regimes , 2017 .
[19] A. Noroozi,et al. An investigation on the effect of land use land cover changes on surface water quantity , 2018 .
[20] Li-Chiu Chang,et al. Constrained genetic algorithms for optimizing multi-use reservoir operation , 2010 .
[21] Alysson M. Costa,et al. Active Management of Environmental Water to Improve Ecological Outcomes , 2018, Journal of Water Resources Planning and Management.
[22] Byron K. Williams,et al. Technical challenges in the application of adaptive management , 2016 .
[23] Seasonal discharge and chemical flux variations of rivers flowing into the Bayhead canal of Durban Harbour, South Africa , 2016, Acta Geochimica.
[24] R. Tharme. A global perspective on environmental flow assessment: emerging trends in the development and application of environmental flow methodologies for rivers , 2003 .
[25] Farideh Delavari Edalat,et al. Concept and Application of Adaptive Water Management , 2018 .
[26] J. Olden,et al. Bending the Curve of Global Freshwater Biodiversity Loss – An Emergency Recovery Plan , 2019 .
[27] G. Castelli,et al. Stakeholder-based water allocation modelling and ecosystem services trade-off analysis: the case of El Carracillo region (Spain) , 2021 .
[28] Andreas Schumann,et al. DSS Application to the Development of Water Management Strategies in Ribeiras do Algarve River Basin , 2007 .
[29] W. Bowden,et al. Macrophytes and Bryophytes , 2017 .
[30] C. Rakowski,et al. Estimated Fall Chinook Salmon Survival to Emergence in Dewatered Redds in a Shallow Side Channel of the Columbia River , 2005 .
[31] A. Butturini,et al. River ecosystem processes: A synthesis of approaches, criteria of use and sensitivity to environmental stressors. , 2017, The Science of the total environment.
[32] Yue Zhang,et al. Integrated water resources management for an inland river basin in China , 2019, Watershed Ecology and the Environment.
[33] Kalyanmoy Deb,et al. Investigating the Normalization Procedure of NSGA-III , 2019, EMO.
[34] B. Docker,et al. Environmental Water Delivery , 2017 .
[35] Guillermo A. Mendoza,et al. Multi-criteria decision analysis in natural resource management: A critical review of methods and new modelling paradigms , 2006 .
[36] S. Nicol,et al. Science to support the management of riverine flows , 2018 .
[37] J. Adams,et al. Advancing the Science of Environmental Flow Management for Protection of Temporarily Closed Estuaries and Coastal Lagoons , 2021 .
[38] Frank E. Ritter,et al. Determining the number of simulation runs: Treating simulations as theories by not sampling their behavior , 2011 .
[39] A. Arthington,et al. Evolution of Environmental Flows Assessment Science, Principles, and Methodologies , 2017 .
[40] C. Gibbins,et al. Hydrological Influences on Adult Salmonid Migration, Spawning, and Embryo Survival , 2008 .
[41] M. Young. Designing water abstraction regimes for an ever-changing and ever-varying future , 2014 .
[42] Kalyanmoy Deb,et al. Pymoo: Multi-Objective Optimization in Python , 2020, IEEE Access.
[43] Humberto Bustince,et al. Penalty Function in Optimization Problems: A Review of Recent Developments , 2017, Soft Computing Based Optimization and Decision Models.
[44] C. S. James,et al. A framework for interdisciplinary understanding of rivers as ecosystems , 2007 .
[45] M Burgess,et al. Future challenges. , 1982, The New Zealand nursing journal. Kai tiaki.
[46] S. Simonovic,et al. Global water resources modeling with an integrated model of the social-economic-environmental system , 2011 .
[47] Michael J Bradford,et al. Low Flows, Instream Flow Needs and Fish Ecology in Small Streams , 2008 .
[48] J. Olden,et al. Models of Ecological Responses to Flow Regime Change to Inform Environmental Flows Assessments , 2017 .
[49] A. Solera,et al. Contribution of decision support systems to water management improvement in basins with high evaporation in Mediterranean climates , 2019, Hydrology Research.
[50] P. Girard,et al. Dam-Induced Hydrologic Alterations in the Rivers Feeding the Pantanal , 2020, Frontiers in Environmental Science.
[51] N. Lamouroux,et al. Physical Habitat Modeling and Ecohydrological Tools , 2017 .
[52] J. Endter‐Wada,et al. Water Management Decision Making in the Face of Multiple Forms of Uncertainty and Risk , 2016 .
[53] B. Jonsson,et al. Production of juvenile salmonids in small Norwegian streams is affected by agricultural land use , 2011 .
[54] Karin Frank,et al. The potential of models and modeling for social-ecological systems research: the reference frame ModSES , 2019, Ecology and Society.
[55] S. Jackson,et al. The Brisbane Declaration and Global Action Agenda on Environmental Flows (2018) , 2018, Front. Environ. Sci..
[56] J. Perháč,et al. Participatory multi-objective optimization for planning dense and green cities , 2021, Journal of Environmental Planning and Management.
[57] R. Soncini-Sessa,et al. Integrating mobile bed numerical modelling into reservoir planning operations: the case study of the hydroelectric plant in Isola Serafini (Italy) , 2013 .
[58] A. Jakeman,et al. Integrated Approaches Within Water Resource Planning and Management in Australia—Theory and Application , 2017 .
[59] Eloise Kendy,et al. Securing Environmental Flows Through System Reoperation and Management: Lessons From Case Studies of Implementation , 2019, Front. Environ. Sci..
[60] J. Webb,et al. Uncertainty and Environmental Water , 2017 .
[61] J. Adams,et al. Ten Principles to Determine Environmental Flow Requirements for Temporarily Closed Estuaries , 2020, Water.
[62] Alysson M. Costa,et al. Using optimization to develop a "designer" environmental flow regime , 2017, Environ. Model. Softw..
[63] Kalyanmoy Deb,et al. An Evolutionary Many-Objective Optimization Algorithm Using Reference-Point-Based Nondominated Sorting Approach, Part I: Solving Problems With Box Constraints , 2014, IEEE Transactions on Evolutionary Computation.
[64] S. Bonser,et al. “Active” and “passive” ecological restoration strategies in meta‐analysis , 2020, Restoration Ecology.
[65] A. Perrels,et al. Determining payments for watershed services by hydro-economic modeling for optimal water allocation between agricultural and municipal water use , 2019, Water Resources and Economics.
[66] Xinan Yin,et al. OPTIMIZING ENVIRONMENTAL FLOWS BELOW DAMS , 2012 .
[67] J. Webster,et al. The role of macroinvertebrates in stream ecosystem function. , 1996, Annual review of entomology.
[68] J. Olden,et al. Evaluating transferability of flow–ecology relationships across space, time and taxonomy , 2018 .
[69] Morgan John Trotter. Juvenile trout survival and movement during the summer low flow abstraction period in the Lindis River, Central Otago , 2016 .
[70] A. Arthington,et al. Recent advances in environmental flows science and water management-Innovation in the Anthropocene , 2018 .
[71] A. Arthington. Environmental flows: a scientific resource and policy framework for river conservation and restoration , 2015 .
[72] Joseph H. A. Guillaume,et al. Considering scale within optimization procedures for water management decisions: Balancing environmental flows and human needs , 2021, Environ. Model. Softw..
[73] J. Olden,et al. Designing flows to resolve human and environmental water needs in a dam-regulated river , 2017, Nature Communications.
[74] T. Johnson,et al. Do Fish Drive Recreational Fishing License Sales , 2016 .
[75] Ton H. Snelder,et al. Relationships between invertebrate communities and both hydrological regime and other environmental factors across New Zealand's rivers , 2015 .
[76] B. Kløve,et al. Development of monthly optimal flow regimes for allocated environmental flow considering natural flow regimes and several surface water protection targets , 2015 .
[77] J. Bing,et al. Study on benefits evaluation of water diversion project: Case study in water transfer from the Yangtze River to Lake Taihu , 2019, IOP Conference Series: Earth and Environmental Science.
[78] S. Saltveit,et al. Rivers need floods: Management lessons learnt from the regulation of the Norwegian salmon river, Suldalslågen , 2019, River Research and Applications.
[79] Gebreyesus Brhane Tesfahunegn,et al. GIS based water balance components estimation in northern Ethiopia catchment , 2020 .
[80] R. Soncini-Sessa,et al. On the control of riverbed incision induced by run‐of‐river power plant , 2015 .
[81] J. Juanes,et al. Spatial and seasonal variability of macroinvertebrate metrics: Do macroinvertebrate communities track river health? , 2010 .
[82] Erik Mostert. An alternative approach for socio-hydrology: Case study research , 2017 .
[83] R. Tharme,et al. MECHANISMS TO ALLOCATE ENVIRONMENTAL WATER , 2017 .
[84] J. Shiau,et al. Basin-scale optimal trade-off between human and environmental water requirements in Hsintien Creek basin, Taiwan , 2016, Environmental Earth Sciences.
[85] Walter E. Frick,et al. Seasonal variations in river discharge and nutrient export to a Northeastern Pacific estuary , 2007 .
[86] K. Stefanidis,et al. Multiple stressors determine river ecological status at the European scale: Towards an integrated understanding of river status deterioration , 2020, Global change biology.
[87] José A. Revilla,et al. Surface water resources assessment in scarcely gauged basins in the north of Spain , 2008 .
[88] Laurence Smith,et al. The role of expert opinion in environmental modelling , 2012, Environ. Model. Softw..
[89] Peter Bauer-Gottwein,et al. Multi-Objective Optimization for Analysis of Changing Trade-Offs in the Nepalese Water–Energy–Food Nexus with Hydropower Development , 2017 .
[90] B. Chessman,et al. Scaling biodiversity responses to hydrological regimes , 2018, Biological reviews of the Cambridge Philosophical Society.
[91] M. Acreman. Environmental flows—basics for novices , 2016 .
[92] M. Fleming,et al. HYDROLOGIC MODELING SYSTEM (HEC-HMS): PHYSICALLY-BASED SIMULATION COMPONENTS , 2010 .
[93] M. Flörke,et al. How will climate change modify river flow regimes in Europe , 2012 .
[94] J. Olden,et al. Designing flow regimes to support entire river ecosystems , 2020, bioRxiv.
[95] C. Pollino,et al. An Integrative Framework for Stakeholder Engagement Using the Basin Futures Platform , 2020, Water.
[96] Jennifer Badham,et al. Socio-technical scales in socio-environmental modeling: Managing a system-of-systems modeling approach , 2020, Environmental Modelling & Software.
[97] Amina E. Price,et al. Improving Ecological Response Monitoring of Environmental Flows , 2015, Environmental Management.