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Energy-Water Resilience

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"hazard modeling"×

Quantifying compound hazard risk to energy and water systems

The focal area is identification and quantification of the risk of combined (compound) hazards on water and energy systems and their interactions. The existing challenge is addressing risk and consequences to energy and water systems by compound hazards is an emerging area of stud...
Giovando, J., Chen, T., Fang, Y., Feng, S., McPherson, T., Regier, P., and Wang, T.

Building Resilient Energy-Water Systems: Integrated Modeling, Scenario Selection, and Near-Term Decision Support

U.S. energy and water systems are increasingly interdependent, often leading to cascading and compounding system failures when faced with acute and chronic hazards. Such stressors propagate across multiple spatial scales, typically starting with changing earth system dynamics (for...
Rodriguez, L., Szinai, J., Stokes-Draut, J., Dwivedi, D., Ulrich, C., Holm, J., and Vahmani, P.

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.

Joint modeling of water and energy for resilience and flexibility

The white paper focuses on the intersection of energy and potable water systems through joint modeling to enhance resilience, flexibility, and operational efficiency. The paper identifies the lack of integrated modeling tools as the primary obstacle in managing interconnected wate...
Chini, C., Thomas, M., Bixler, T., and Cejudo, C.

From Modeling to Testbeds: Taking an Expanded Look at Wastewater Reuse

The primary focus is on energy for water, considering the myriad tradeoffs influencing the adoption of wastewater reuse, particularly considering its energy intensity. Wastewater reuse offers a compelling opportunity to concurrently tackle water scarcity and enhance energy effic...
Tidwell, V., Bixler, T., Niazi, H., Marsh, P., and Wild, T.

Aligning Energy, Water, and Agriculture: Near-Term Strategies for Resilience in Water-Stressed Regions

This white paper explores the intersection of energy, water, and agriculture, emphasizing the growing competition for water between irrigation and energy systems. It identifies near-term opportunities to enhance agricultural water management and electrification, while evaluating t...
Pacheco, C., and Mekonnen, M.

Aligning Bytes with Basins to Promote Data Center Growth in the U.S.

This white paper examines the water-energy tradeoffs of U.S. data-center expansion, highlighting how cooling choices, power sourcing, and siting decisions shape local water security, grid resilience, and watershed sustainability. The study focuses on integrating direct (on-site po...
Siddik, M., Turner, S., and Chinthavali, S.

The Case for Managed Aquifer Recharge as a Tool to Enhance Water and Energy Resilience

Managed Aquifer Recharge (MAR) enhances groundwater storage and has untapped potential to support energy systems. It can improve water reliability for thermoelectric and hydropower facilities, especially amid rising energy demands and water stress. A near-term opportunity is to ev...
Ferencz, S., Giovando, J., and Day-Lewis, F.

Unlocking Hydropower Potential from Environmental Flows for Energy-Water Resilience

This white paper examines how mandated environmental flow (E-flow) releases at hydropower dams can be leveraged to generate renewable energy while maintaining ecological integrity. Environmental flows sustain aquatic ecosystems but often bypass turbines, representing lost generati...
DeNeale, S., Connor, M., and McManamay, R.

Dynamic Population Mapping to Advance Energy-Water Resilience

Dynamic population mapping, combined with household-level energy and water demand profiling, enables precise, actionable forecasting and resilience planning for U.S. energy-water systems under variable population and climate conditions. Energy and water systems face growing stres...
Zimmer, A., Tuccillo, J., Jeong, B., and Urban, M.

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