Optimizing environmental flow based on a new optimization model in balancing objectives among river ecology, water supply and power generation in a high-latitude river.
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Y. Xu | Guangxin Zhang | Yao Wu | Ming Jiang | Xiao-dong Tang | Zhen Cui | Peng Qi | Jiaxin Sun
[1] Jonathan M. Gomes-Selman,et al. Reducing adverse impacts of Amazon hydropower expansion , 2022, Science.
[2] A. Castelletti,et al. A State‐of‐the‐Art Review of Optimal Reservoir Control for Managing Conflicting Demands in a Changing World , 2021, Water Resources Research.
[3] Ming Jiang,et al. A New Multi-Objective Optimization Model of Water Resources Considering Fairness and Water Shortage Risk , 2021, Water.
[4] Q. Tan,et al. Optimizing reservoir operation considering downstream ecological demands of water quantity and fluctuation based on IHA parameters , 2021 .
[5] Zhikai Yang,et al. Reservoir ecological operation considering outflow variations across different time scales , 2021 .
[6] T. Hu,et al. Use of a Multi-Objective Correlation Index to Analyze the Power Generation, Water Supply and Ecological Flow Mutual Feedback Relationship of a Reservoir , 2021, Water Resources Management.
[7] Xiaoling Ding,et al. System dynamics model for the coevolution of coupled water supply–power generation–environment systems: Upper Yangtze river Basin, China , 2020 .
[8] Francesca Pianosi,et al. Use of Reservoir Operation Optimization Methods in Practice: Insights from a Survey of Water Resource Managers , 2020, Journal of Water Resources Planning and Management.
[9] M. D. dos Santos,et al. Water quality assessment based on multivariate statistics and water quality index of a strategic river in the Brazilian Atlantic Forest , 2020, Scientific Reports.
[10] Jian-zhong Zhou,et al. Risk analysis of water supply-hydropower generation-environment nexus in the cascade reservoir operation , 2020 .
[11] N. Angelopoulos,et al. The Response of River‐Resident Fish to Reservoir Freshet Releases of Varying Profiles Intended to Facilitate a Spawning Migration , 2020, Water Resources Research.
[12] J. Ni,et al. River dam impacts on biogeochemical cycling , 2020, Nature Reviews Earth & Environment.
[13] Hui Qin,et al. Improved Multi-objective Moth-flame Optimization Algorithm based on R-domination for cascade reservoirs operation , 2020 .
[14] M. Habel,et al. Evaluating effects of dam operation on flow regimes and riverbed adaptation to those changes. , 2019, The Science of the total environment.
[15] Shibao Lu,et al. A review of the impact of hydropower reservoirs on global climate change. , 2019, The Science of the total environment.
[16] Jian-xia Chang,et al. Long-term water-sediment multi-objectives regulation of cascade reservoirs: A case study in the Upper Yellow River, China , 2019, Journal of Hydrology.
[17] M. Thieme,et al. Mapping the world’s free-flowing rivers , 2019, Nature.
[18] Haiyun Shi,et al. An improved operation-based reservoir scheme integrated with Variable Infiltration Capacity model for multiyear and multipurpose reservoirs , 2019, Journal of Hydrology.
[19] J. Adams,et al. An environmental flow determination method for integrating multiple-scale ecohydrological and complex ecosystem processes in estuaries. , 2019, The Science of the total environment.
[20] S. Schmutz,et al. Ecologically-based criteria for hydropeaking mitigation: A review. , 2019, The Science of the total environment.
[21] Maciej Liro. Dam reservoir backwater as a field-scale laboratory of human-induced changes in river biogeomorphology: A review focused on gravel-bed rivers. , 2019, The Science of the total environment.
[22] A. Mejia,et al. Hydrological Model Diversity Enhances Streamflow Forecast Skill at Short‐ to Medium‐Range Timescales , 2019, Water Resources Research.
[23] Ke-feng Li,et al. Analysis and restoration of an ecological flow regime during the Coreius guichenoti spawning period , 2018, Ecological Engineering.
[24] Dennis McLaughlin,et al. An Ensemble Optimization Framework for Coupled Design of Hydropower Contracts and Real‐Time Reservoir Operating Rules , 2018, Water Resources Research.
[25] Mehrez El Ayari,et al. Statistical post-processing of hydrological forecasts using Bayesian model averaging. , 2018, 1809.04000.
[26] Jianshi Zhao,et al. Optimizing environmental flow operations based on explicit quantification of IHA parameters , 2018, Journal of Hydrology.
[27] M. Schmid,et al. Basin-scale effects of small hydropower on biodiversity dynamics , 2018, Frontiers in Ecology and the Environment.
[28] J. Schmidt,et al. Estimating the Natural Flow Regime of Rivers With Long‐Standing Development: The Northern Branch of the Rio Grande , 2018 .
[29] C. Nilsson,et al. The effects of hydropeaking on riverine plants: a review , 2018, Biological reviews of the Cambridge Philosophical Society.
[30] Alison L. Kay,et al. A national-scale seasonal hydrological forecast system: development and evaluation over Britain , 2017 .
[31] B. Flyvbjerg,et al. Damming the rivers of the Amazon basin , 2017, Nature.
[32] Perrine Hamel,et al. Potential effects of landscape change on water supplies in the presence of reservoir storage , 2017 .
[33] J. Schmidt,et al. How dams can go with the flow , 2016, Science.
[34] V. Singh,et al. Evaluation of ecological instream flow using multiple ecological indicators with consideration of hydrological alterations , 2015 .
[35] Ping-an Zhong,et al. Scenario tree reduction in stochastic programming with recourse for hydropower operations , 2015 .
[36] Dong Wang,et al. Assessing the impact of Danjiangkou reservoir on ecohydrological conditions in Hanjiang river, China , 2015 .
[37] Bin Xu,et al. A multiobjective short‐term optimal operation model for a cascade system of reservoirs considering the impact on long‐term energy production , 2015 .
[38] Ruonan Li,et al. Deriving Optimal Daily Reservoir Operation Scheme with Consideration of Downstream Ecological Hydrograph Through A Time-Nested Approach , 2015, Water Resources Management.
[39] Qiongfang Li,et al. Downstream effects of a hydropeaking dam on ecohydrological conditions at subdaily to monthly time scales , 2015 .
[40] Pan Liu,et al. Robust stochastic optimization for reservoir operation , 2015 .
[41] N. Crossman,et al. Environmental flows for natural, hybrid and novel riverine ecosystems in a changing world , 2014 .
[42] Mohammad Karamouz,et al. Development of an Optimal Reservoir Operation Scheme Using Extended Evolutionary Computing Algorithms Based on Conflict Resolution Approach: A Case Study , 2014, Water Resources Management.
[43] F. Ludwig,et al. Impact of reservoirs on river discharge and irrigation water supply during the 20th century , 2011 .
[44] Kejiang Zhang,et al. Classification of hydrological conditions to assess water allocation schemes for Lake Baiyangdian in North China , 2010 .
[45] Ville Tirronen,et al. Distributed differential evolution with explorative–exploitative population families , 2009, Genetic Programming and Evolvable Machines.
[46] N. LeRoy Poff,et al. Development of representative indicators of hydrologic alteration , 2009 .
[47] S. Vaikasas,et al. Impact of a hydropower plant on the downstream reach of a river , 2008 .
[48] J. Wayland Eheart,et al. Reservoir management to balance ecosystem and human needs: Incorporating the paradigm of the ecological flow regime , 2006 .
[49] C. Revenga,et al. Fragmentation and Flow Regulation of the World's Large River Systems , 2005, Science.
[50] Brian Richter,et al. A spatial assessment of hydrologic alteration within a river network , 1998 .
[51] R. Sparks,et al. THE NATURAL FLOW REGIME. A PARADIGM FOR RIVER CONSERVATION AND RESTORATION , 1997 .
[52] David P. Braun,et al. How much water does a river need , 1997 .
[53] M. Power,et al. Effects of Disturbance on River Food Webs , 1996, Science.
[54] David P. Braun,et al. A Method for Assessing Hydrologic Alteration within Ecosystems , 1996 .
[55] Thanh Duc Dang,et al. Hydropower dams of the Mekong River basin: A review of their hydrological impacts , 2019, Journal of Hydrology.
[56] Konrad Schindler,et al. Continuous Energy Minimization for Multitarget Tracking , 2014, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[57] Kalyanmoy Deb,et al. Multi-objective Optimisation Using Evolutionary Algorithms: An Introduction , 2011, Multi-objective Evolutionary Optimisation for Product Design and Manufacturing.
[58] N. LeRoy Poff,et al. The ecological limits of hydrologic alteration (ELOHA): a new framework for developing regional environmental flow standards , 2007 .
[59] John K. Maingi,et al. Quantifying hydrologic impacts following dam construction along the Tana River, Kenya , 2002 .