Cost Distribution of Environmental Flow Demands in a Large-Scale Multireservoir System

被引:6
作者
Marques, Guilherme Fernandes [1 ]
Tilmant, Amaury [2 ]
机构
[1] Univ Fed Rio Grande do Sul, Inst Pesquisas Hidraul, Dept Hydraul Works, Ave Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, Brazil
[2] Univ Laval, Dept Civil & Water Engn, Quebec City, PQ G1V 0A6, Canada
关键词
Environmental flows; Reservoir operation; Cost sharing; Hydropower; UPPER PARANA RIVER; HYDROPOWER; OPERATION; REGIME; OPTIMIZATION; VARIABILITY; ATTRIBUTES; FLOODPLAIN; ECOSYSTEM; BASIN;
D O I
10.1061/(ASCE)WR.1943-5452.0000936
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Among the environmental effects caused by dams, the alteration of flow regimes is one of the most critical to river ecosystems given its influence in long river reaches and its continuous pattern. Provided it is technically feasible, the reoperation of hydroelectric reservoir systems can, in principle, mitigate the effects on degraded freshwater ecosystems by recovering some of the natural flow regime. The typical approach to implement hydropower-to-environment water transfers focuses on the reoperation of the dam located immediately upstream of the environmentally sensitive area, meaning that only one power station will bear the brunt of the benefits forgone for the power sector. By ignoring the contribution of upstream infrastructures to the alteration of the flow regime, the opportunity cost associated with the restoration of a flow regime is not equitably distributed among the power companies in the river basin, therefore slowing the establishment of environmental flow programs. Yet, there is no criterion nor institutional mechanisms to ensure a fair distribution of the opportunity cost among power stations. This paper addresses this issue by comparing five rules to redistribute the costs faced by the power sector when environmental flows (eflows) must be implemented in a multireservoir system. The rules are based on the installed capacity of the power plants; the live storage capacity of the reservoirs; the ratio between the incremental flows; the extent of the storage services (i.e.,the volume of water effectively transferred by each reservoir); and the deregulation effect caused by other reservoirs downstream. The analysis is carried out using the Parana River Basin (Brazil) as a case study.
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页数:11
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共 38 条
[31]   Reservoir Management Optimization for Basin-Wide Ecological Restoration in the Connecticut River [J].
Steinschneider, Scott ;
Bernstein, Alec ;
Palmer, Richard ;
Polebitski, Austin .
JOURNAL OF WATER RESOURCES PLANNING AND MANAGEMENT, 2014, 140 (09)
[32]   Reservoir management to balance ecosystem and human needs: Incorporating the paradigm of the ecological flow regime [J].
Suen, JP ;
Eheart, JW .
WATER RESOURCES RESEARCH, 2006, 42 (03)
[33]   Inter-annual variations in the abundance of young-of-the-year of migratory fishes in the Upper Parana River floodplain: relations with hydrographic attributes [J].
Suzuki, H., I ;
Agostinho, A. A. ;
Bailly, D. ;
Gimenes, M. F. ;
Julio-Junior, H. F. ;
Gomes, L. C. .
BRAZILIAN JOURNAL OF BIOLOGY, 2009, 69 (02) :649-660
[34]   A global perspective on environmental flow assessment: Emerging trends in the development and application of environmental flow methodologies for rivers [J].
Tharme, RE .
RIVER RESEARCH AND APPLICATIONS, 2003, 19 (5-6) :397-441
[35]   A stochastic approach to analyze trade-offs and risks associated with large-scale water resources systems [J].
Tilmant, A. ;
Kelman, R. .
WATER RESOURCES RESEARCH, 2007, 43 (06)
[36]   Restoring a flow regime through the coordinated operation of a multireservoir system: The case of the Zambezi River basin [J].
Tilmant, A. ;
Beevers, L. ;
Muyunda, B. .
WATER RESOURCES RESEARCH, 2010, 46
[37]   Economic Value of Storage in Multireservoir Systems [J].
Tilmant, Amaury ;
Arjoon, Diane ;
Marques, Guilherme Fernandes .
JOURNAL OF WATER RESOURCES PLANNING AND MANAGEMENT, 2014, 140 (03) :375-383
[38]   The impact of water quality as an environmental constraint on operation planning of a hydro-thermal power system [J].
Valle, A. C. M. ;
Aguiar, M. A. A. ;
Cruz, G., Jr. .
RENEWABLE ENERGY, 2009, 34 (03) :655-659