Evaluation of power generation operations in response to changes in surface water reservoir storage
We used a customized, river basin-based model of surface water rights to evaluate the response of power plants to drought via simulated changes in reservoir storage. Our methodology models surface water rights in 11 river basins in Texas using five cases: (1) storage decrease of existing capacity of...
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| Vydáno v: | Environmental research letters Ročník 8; číslo 2; s. 25014 - 15 |
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| Hlavní autoři: | , |
| Médium: | Journal Article |
| Jazyk: | angličtina |
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Bristol
IOP Publishing
01.06.2013
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| ISSN: | 1748-9326, 1748-9326 |
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| Abstract | We used a customized, river basin-based model of surface water rights to evaluate the response of power plants to drought via simulated changes in reservoir storage. Our methodology models surface water rights in 11 river basins in Texas using five cases: (1) storage decrease of existing capacity of 10%, (2) storage decrease of 50%, (3) complete elimination of storage, (4) storage increase of 10% (all at existing locations), and (5) construction of new reservoirs (at new locations) with a total increase in baseline reservoir capacity for power plant cooling of 9%. Using the Brazos River basin as a sample, we evaluated power generation operations in terms of reliability, resiliency, and vulnerability. As simulated water storage decreases, reliability generally decreases and resiliency and vulnerability remain relatively constant. All three metrics remain relatively constant with increasing reservoir storage, with the exception of one power plant. As reservoir storage changes at power plants, other water users in the basin are also affected. In general, decreasing water storage is beneficial to other water users in the basin, and increasing storage is detrimental for many other users. Our analysis reveals basin-wide and individual power plant-level impacts of changing reservoir storage, demonstrating a methodology for evaluation of the sustainability and feasibility of constructing new reservoir storage as a water and energy management approach. |
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| AbstractList | We used a customized, river basin-based model of surface water rights to evaluate the response of power plants to drought via simulated changes in reservoir storage. Our methodology models surface water rights in 11 river basins in Texas using five cases: (1) storage decrease of existing capacity of 10%, (2) storage decrease of 50%, (3) complete elimination of storage, (4) storage increase of 10% (all at existing locations), and (5) construction of new reservoirs (at new locations) with a total increase in baseline reservoir capacity for power plant cooling of 9%. Using the Brazos River basin as a sample, we evaluated power generation operations in terms of reliability, resiliency, and vulnerability. As simulated water storage decreases, reliability generally decreases and resiliency and vulnerability remain relatively constant. All three metrics remain relatively constant with increasing reservoir storage, with the exception of one power plant. As reservoir storage changes at power plants, other water users in the basin are also affected. In general, decreasing water storage is beneficial to other water users in the basin, and increasing storage is detrimental for many other users. Our analysis reveals basin-wide and individual power plant-level impacts of changing reservoir storage, demonstrating a methodology for evaluation of the sustainability and feasibility of constructing new reservoir storage as a water and energy management approach. We used a customized, river basin-based model of surface water rights to evaluate the response of power plants to drought via simulated changes in reservoir storage. Our methodology models surface water rights in 11 river basins in Texas using five cases: (1) storage decrease of existing capacity of 10%, (2) storage decrease of 50%, (3) complete elimination of storage, (4) storage increase of 10% (all at existing locations), and (5) construction of new reservoirs (at new locations) with a total increase in baseline reservoir capacity for power plant cooling of 9%. Using the Brazos River basin as a sample, we evaluated power generation operations in terms of reliability, resiliency, and vulnerability. As simulated water storage decreases, reliability generally decreases and resiliency and vulnerability remain relatively constant. All three metrics remain relatively constant with increasing reservoir storage, with the exception of one power plant. As reservoir storage changes at power plants, other water users in the basin are also affected. In general, decreasing water storage is beneficial to other water users in the basin, and increasing storage is detrimental for many other users. Our analysis reveals basin-wide and individual power plant-level impacts of changing reservoir storage, demonstrating a methodology for evaluation of the sustainability and feasibility of constructing new reservoir storage as a water and energy management approach. |
| Author | Stillwell, Ashlynn S Webber, Michael E |
| Author_xml | – sequence: 1 givenname: Ashlynn S surname: Stillwell fullname: Stillwell, Ashlynn S email: astillwell@utexas.edu organization: The University of Texas at Austin Department of Civil, Architectural, and Environmental Engineering, 301 E Dean Keeton Street, Stop C1786, Austin, TX 78712, USA – sequence: 2 givenname: Michael E surname: Webber fullname: Webber, Michael E email: webber@mail.utexas.edu organization: The University of Texas at Austin Department of Mechanical Engineering, 204 E Dean Keeton Street, Stop C2200, Austin, TX 78712, USA |
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| References | Wurbs R A (21) 2011 Eaton J (11) 2012 Fowler T (10) 2011 26 Torcellini P (6) 2003 (16) 2008 Stillwell A S (5) 2011; 16 Texas Commission on Environmental Quality (20) 2009 Goldstein R (3) 2002 Wurbs R A (24) 2010 Energy Information Administration (32) 2013 Electric Reliability Council of Texas (31) 2010 Environmental Protection Agency (33) 2012 Texas Water Development Board (15) 2013 Townsend A K (30) 2013 Stillwell A S (17) 2011; 6 Loucks D P (14) 2005 13 Macknick J Newmark R Heath G Hallett K C (4) 2011 Texas Water Development Board (34) 2011 19 Siler C (22) 2008 Klett M G (1) 2005 (25) 2009 King C W (23) 2008 2 Stillwell A S Webber M E (18) 2012 Mungin L (9) 2007 Cohen S M (29) 2012 Keller A (12) 2000 Macknick J (7) 2012; 7 Environmental Protection Agency (27) 2013 (28) 2012 Associated Press (8) 2008 |
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| SubjectTerms | Basins Constants Construction Drought Electric power generation Electric power plants Energy management Power plants reliability Reliability analysis Reservoir capacity Reservoir construction Reservoir storage Reservoirs Resilience resiliency River basins Rivers Surface water vulnerability Water consumption Water rights Water storage Water users |
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| Title | Evaluation of power generation operations in response to changes in surface water reservoir storage |
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