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Energy-Water Resilience

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"integrated resource planning"×

Monitoring, Planning, and Management of Water Quality and Quantity for Resilient Water and Energy Systems

Both resilient systems where water is used for energy production and energy is used for treatment and operation depend not only on the quantity of water, but also quality and environmental health. Addressing gaps in environmental health and infrastructure condition/capability data...
Hansen, C., DeRolph, C., Allen-Dumas, M., Griffiths, N., Matson, P., Pilla, R., Siddik, A., Stevenson, L., and Johnson, R.

Hardening Forested Watersheds to Wildfire to Enhance Downstream Water Quality for Critical Energy Infrastructure

This white paper focuses on water-for-energy stability, emphasizing the risks to energy infrastructure from water quality impacts due to severely burned forested watersheds. The primary challenge is that energy production in the U.S. is vulnerable to surface water quality, with hi...
Crockett, J., and Krofcheck, D.

Produced Water: A Potential Solution to Achieve America Energy Dominance

Produced water, a significant byproduct of oil and gas extraction, represents an underutilized water resource. However, the high salinity, presence of organics, and scale-forming compounds make it technically challenging to treat. Membrane desalination technologies suffer from fou...
Sharan, P., and Ho, T.

Accelerating the Acquisition of Irrigation Modernization Benefits

Accelerating the modernization of off-farm irrigation water delivery infrastructure can hasten the acquisition of many energy-water benefits: water and energy conservation, energy generation and grid reliability, and additional water conservation and increased agricultural yields ...
Jorgensen, J., Saulsbury, B., Cafferty, K., Golden, B., Kueny, K., Hou, H., and Niazi, H.

Energy-Water System Resilience to Flooding

This white paper addresses the resilience challenges and opportunities within interdependent energy-water systems, particularly under the stress of flooding events. It describes how large-scale flood events impact these systems, posing risks such as operational constraints, infras...
McPherson, T., Giovando, J., Hou, H., Daniel, B., Bracken, C., Li, X., and Bixler, T.

Unlocking Nuclear-Enabled Water Resilience: Leveraging Idaho National Laboratory Facilities and Expertise to Strengthen Integration Across Energy and Critical Water Systems

This white paper outlines strategies to enhance energy-water resilience and facilitate a resurgence of nuclear power by addressing barriers to water access for cooling. It emphasizes the development and demonstration of technologies and operational models that improve the accessib...
Jenson, W., Mosier, T., and Atkinson, T.

Training, Testing, and Demonstration Capability for In-Conduit Hydropower in Water Systems

This white paper discusses the development of in-conduit hydro turbine testing and training capabilities to enhance energy-water resilience by promoting in-conduit hydropower systems. These systems are installed in irrigation or municipal water distribution pipes, and the project ...
Reese, S., and DeNeale, S.

Improved quantification of river nutrient loading for better water quality and more efficient energy use

The focus of this paper is multi-sector dynamics involving agriculture practices, water quality and energy. Currently there lacks high-resolution spatiotemporal data regarding water quality and usage, forcing the planning for water treatment to adopt the conservative, worst-case a...
Tang, J., and Zhu, Q.

Marine-Source Integrated Heat Pump System for Remote Coastal and Island Communities

The white paper "Marine-Source Integrated Heat Pump (MS-IHP) System for Remote Coastal and Island Communities" focuses on the Water for Energy research area. Roughly 3.8 million U.S. coastal homes still rely on fossil fuel heating, and 1.3 million use inefficient electric resist...
Gao, Z., and Kowalski, S.

Integrated Water-Energy-Economics Framework for Public Water System Resilience

This paper highlights key energy-for-water challenges in U.S. public water systems (PWS): aging infrastructure, cost recovery gaps, hydrologic vulnerabilities, and high-demand users like data centers--which concentrate near population centers and existing PWS. It underscores the n...
Siddik, M., Ahmad, N., Guaita, S., and Chinthavali, S.

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