OpenEI: Energy Information
  • Energy-Water Resilience
  • My User
    • Sign Up
    • Login
EWR logo
  • White Papers
    • White Papers
  • Help
    • Frequently Asked Questions
    • Contact EWR Help
  • Search
EWR hero logo
Energy-Water Resilience

Search the Library

Showing results 1 - 10 of 50.
Show results per page.
Filters
Submitting Organization
Keywords
"thermoelectric power plant"×

Thermoelectric and Hydropower Drought Monitor and Outlook: Tools for more robust resource adequacy planning and management

The primary focus is on issues related to water for energy; specifically, how drought-impacted water supply limits the generation potential of hydropower and thermoelectric assets. Existing Challenge: Twenty-two droughts, each causing a billion dollars or more in damages have im...
Voisin, N., Tidwell, V., and Gerlich, J.

Regional Energy and Water Resilience Strategies for Critical Thermoelectric Power Generation and Data Center Technologies

This white paper discusses strategies for improving water management in thermoelectric power plants and data centers by focusing on the reclamation and management of cooling water. The primary goal is to efficiently close the water cycle by processing discharged cooling water to r...
Rigby, A., and Wilson, A.

Water Availability for Cooling Systems: Assessing Demands, Constraints, and Alternative Sources for Thermoelectric Plants and Data Centers

This white paper focuses on enhancing the intersection of energy and water resilience by advancing water reuse and reclamation technologies, particularly for thermoelectric power plants and data centers. The primary goal is to efficiently manage cooling water to meet growing deman...
Pacheco, C., Cafferty, K., Reese, S., Atkinson, T., Mosier, T., and Tidwell, V.

Water Reuse Energy Demands and Water Quality Metrics

This white paper discusses strategies for enhancing water resilience in energy production by advancing water reuse and reclamation technologies, particularly for thermoelectric power plants and data centers. The focus is on efficiently closing the water loop by processing discharg...
Shurtliff, M., and Reese, S.

Water for Baseload Power-A Revamp of the Nation's Nuclear Water Use Data

Providing approximately 20% of total U.S. electricity generation each year from a fleet of only 54 plants (94 reactors) nationwide, the nuclear sector is characterized by large and locally impactful power generating facilities. About half of existing reactors rely on once-through ...
Turner, S., Siddik, M., Montgomery, C., and Marston, L.

Semi-Autonomous Facility Emergency Response (SAFER) for Energy-Water Resilience

The focal area of this whitepaper is enhancing cyber security for integrated energy-water systems. The near-term opportunity is to provide a decision support system (controller) to assist the hydroelectric plant operators during communications outages or during a cyber event (cybe...
Markel, L., Mukherjee, S., Liu, Y., Itiki, R., and Yoginath, S.

Continuous Reservoir Sedimentation Management: Cost-Effective Hydrosuction Dredging Demonstration at John Redmond Reservoir, Kansas

The focal area of this whitepaper is water for energy & energy for water: Advancing cost and energy-efficient reservoir sedimentation management operations through hydrosuction dredging technology, sustained by leveraging an existing adjacent grid or developing integrated microgri...
Lee, J., Shelley, J., Hansen, C., Chu, A., and Olson, J.

Energy/Water Operation Smart Contract for Hydropower Plant/Data Centers

We propose an Energy/Water Operation Smart Contract that securely coordinates hydropower plant operations with energy-intensive data-center clusters using Distributed Ledger Technology (DLT). The smart contract provides a decentralized, tamper-resistant layer for operational contr...
Hink, R., Piesciorovsky, E., Hahn, G., Werth, A., and Wang, H.

Advancing Industrial Sector Water Management for Energy Recovery in Water Supply, In-Process, and Discharge Systems

This paper addresses both water-for-energy and energy-for-water by integrating hydropower generation to improve industrial water system resilience. Conduit hydropower is produced by capturing flowing water under pressure in closed-pipe systems and converting the energy into usable...
Bhandari, I., Billings, B., DeNeale, S., Chu, A., and Meira, K.

Co-optimization of Energy and Water Demands to Enable Rapid but Resilient Expansion of Data Centers

Data centers consume substantial amounts of electricity and can amplify water stress locally as well as in distant regions via their direct (for cooling) and indirect (for thermoelectric power generation) consumption of water. There is an opportunity to enhance energy-water resili...
Burleyson, C., Akdemir, K., Mongird, K., and Wild, T.

12345Next >>
  • Disclaimers
  • Content is available under Creative Commons Attribution 4.0 unless otherwise noted.

Privacy Policy Notification

This site uses cookies to store and share user preferences with other OpenEI sites, and uses Google Analytics to collect anonymous user information such as which pages are visited, for how often, and what searches or other webpages may have led users here. You can prevent Google Analytics from recognizing you on return visits to this site by disabling cookies on your browser or by installing a Google Analytics Opt-out Browser Add-on. By clicking "Accept" you agree this site can store cookies on your device and disclose information to OpenEI and Google Analytics in accordance with our privacy policy.

OpenEI Privacy Policy Google Analytics Terms of Service