Role of pumped hydro storage plants for flood control

被引:2
|
作者
Hunt, Julian David [1 ]
Silva, Cristiano Vitorino [2 ]
Fonseca, Enio [3 ]
de Freitas, Marcos Aurelio Vasconcelo [4 ]
Brandao, Roberto [5 ]
Wada, Yoshihide [1 ]
机构
[1] King Abdullah Univ Sci & Technol, Biol & Environm Sci & Engn Div, Thuwal 239556900, Saudi Arabia
[2] Reg Integrated Univ Upper Uruguay & Missiones, Dept Engn & Comp Sci, BR-99700000 Erechim, Brazil
[3] Brazilian Elect Sect Environm Forum, Sao Paulo, Brazil
[4] Fed Univeristy Rio De Janeiro, Energy Planning Program, Rio De Janeiro, Brazil
[5] Univ Fed Rio de Janeiro, GESEL, IE, Rio de Janeiro, Brazil
关键词
Flood control; Hydropower; Pumped hydro storage; Climate change; Adaptation; MANAGEMENT; DAMS;
D O I
10.1016/j.est.2024.114496
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Climate change has intensified precipitation patterns and led to more frequent and severe flooding in many locations worldwide. This paper investigates the role of pumped hydro storage (PHS) plants in mitigating floods in Rio Grande do Sul, Brazil. PHS plants can enhance basin water storage, allowing conventional reservoir dam (CRD) to focus on flood control. The paper also suggests the construction of hybrid PHS plants that can be used to store energy during normal operation and be used to pump water during flood events. The results compare the floodwater volume in Gua & iacute;ba Lake and Patos Lagoon (27 km3) to the 13 km3 displacement capacity of four proposed PHS projects, which could have reduced the total flood level of the Guaiba Lake from 5.33 m to 3.5 m. This would cost 2.7 billion USD, which is similar to the costs of the impact resulted from the flood in May 2024. This infrastructure would significantly reduce the impact of the floods and make the state of Rio Grande do Sul more resilient to climate change in the future. By analyzing the flood water storage capacity required and the storage and pump capacity provided by these solutions, the study aims to prevent future floods and mitigate climate change impacts in the region.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] Optimal Operation Control of Pumped Hydro Storage in the South African Electricity Market
    Kusakana, Kanzumba
    LEVERAGING ENERGY TECHNOLOGIES AND POLICY OPTIONS FOR LOW CARBON CITIES, 2017, 143 : 804 - 810
  • [42] Modeling and Control of Underwater Pumped Hydro Storage for Offshore Wind Power Utilization
    Wang, Xi
    Su, Kaiyuan
    Xie, Xiaorong
    Dianwang Jishu/Power System Technology, 2024, 48 (10): : 4167 - 4173
  • [43] The role of pumped storage power plants in the power system operation
    Vitek, Miroslav
    Kralik, Tomas
    Tuma, Jiri
    2016 17TH INTERNATIONAL SCIENTIFIC CONFERENCE ON ELECTRIC POWER ENGINEERING (EPE), 2016, : 62 - 66
  • [44] Integration of Variable Speed Pumped Hydro Storage in Automatic Generation Control Systems
    Fulgencio, N.
    Moreira, C.
    Silva, B.
    HYPERBOLE SYMPOSIUM 2017 (HYDROPOWER PLANTS PERFORMANCE AND FLEXIBLE OPERATION TOWARDS LEAN INTEGRATION OF NEW RENEWABLE ENERGIES), 2017, 813
  • [45] Design and Frequency Control of Small Scale Photovoltaic Hydro Pumped Storage System
    Fayek, Hady H.
    Shenouda, Abanoub
    PROCEEDINGS OF 2019 IEEE 2ND INTERNATIONAL CONFERENCE ON RENEWABLE ENERGY AND POWER ENGINEERING (REPE 2019), 2019, : 32 - 37
  • [46] OVERALL CONTROL AND MONITORING SYSTEMS FOR PUMPED-STORAGE PLANTS
    STEPINSKI, B
    CVETKO, H
    BROWN BOVERI REVIEW, 1982, 69 (06): : 201 - 206
  • [47] Solar Energy System with Pumped Hydro Storage
    Zhou, Li
    Liu, Yang
    INTERNATIONAL CONFERENCE ON ECOLOGICAL ENVIRONMENT, ENERGY SAVING AND EDUCATION MANAGEMENT (EES 2015), 2015, : 48 - 52
  • [48] Prospects for pumped-hydro storage in Germany
    Steffen, Bjarne
    ENERGY POLICY, 2012, 45 : 420 - 429
  • [49] PUMPED STORAGE - A MAJOR HYDRO POWER RESOURCE
    HUNT, HW
    CIVIL ENGINEERING, 1968, 38 (03): : 48 - &
  • [50] HYDRO-POWER FOR UNDERGROUND PUMPED STORAGE
    SCOTT, FM
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1974, : 25 - 25