Project Grant 2324544
- This National Science Foundation (NSF) Project Grant under the Geosciences program (CFDA 47.050) will deliver a transformative platform to enhance the resilience of rural electric power utilities against climate change and extreme weather events. The $250,000 award to Iowa State University of Science and Technology, spanning October 2024 to September 2027, will develop digital infrastructure to help utilities address challenges in maintaining electric power operations and service during...
- This Project Grant award from the National Science Foundation's (NSF) Social, Behavioral, and Economic Sciences (SBE) program (CFDA 47.075) provides $750,000 in funding to The Regents of the University of California, doing business as the University of California, Berkeley (UC Berkeley), to investigate the impacts of economic incentives, planning paradigms, and conservation concerns on electricity infrastructure investments. The project aims to improve the effectiveness and social impact of...
- This $449,943 Project Grant award from the National Science Foundation's (NSF) Social, Behavioral, and Economic Sciences (CFDA 47.075) program supports a collaborative research project titled "Planning for Electric Vehicle Charging Infrastructure - Strengthening American Infrastructure (SAI)." The project, led by New York University (NYU), aims to understand the broader social and economic impacts of electric vehicle charging station (EVCS) placement on community mobility, social...
- This $749,628 Project Grant award from the National Science Foundation's (NSF) Social, Behavioral, and Economic Sciences (CFDA 47.075) program will fund research to advance community-centered, sociotechnical innovation to strengthen urban infrastructure in the Phoenix, Arizona metropolitan region. The project will engage communities, municipalities, and energy utilities to co-design carbon-neutral energy infrastructure solutions that leverage distributed solar energy and battery storage...
- This National Science Foundation (NSF) Project Grant award for $447,754 from the Geosciences (CFDA 47.050) program aims to explore infrastructure interdependencies in the rapidly changing Arctic region. The project, led by the University of Texas at Austin, involves an interdisciplinary team that will integrate systems engineering, organizational sciences, civil engineering, and public health approaches to map critical infrastructure services (CIS) interdependencies in three Alaskan hub...
- The National Science Foundation Division of Social and Economic Science awarded a $200,064 Project Grant to Stony Brook University for research titled "EAGER: SAI: COLLABORATIVE RESEARCH: BEHAVIORAL THEORIES FOR RESILIENT AND SUSTAINABLE INFRASTRUCTURE" under the Social, Behavioral, and Economic Sciences program (CFDA 47.075). The two-year award beginning September 1, 2021 will support Stony Brook University's research into developing behavioral theories to enhance the resilience and...
- This $200,000 National Science Foundation (NSF) Division of Civil, Mechanical, and Manufacturing Innovation project grant, awarded to Purdue University, aims to develop approaches for the joint operation of coupled municipal drinking water and electric power distribution networks. The key products and services to be delivered through this 3-year project include: Developing operational planning and real-time control strategies for these coupled water-power networks under uncertainty. Designing...
- The National Science Foundation Division of Behavioral and Cognitive Sciences awarded a $135,965 Project Grant to the University of Washington for conceptualizing interorganizational processes supporting interdependent lifeline infrastructure recovery. Funded under the Social, Behavioral, and Economic Sciences program (CFDA 47.075), this collaborative research aims to contribute to understanding how to coordinate recovery of critical infrastructure systems following disruptions. The two-year...
- This National Science Foundation (NSF) Integrative Activities (CFDA 47.083) project grant awarded to Louisiana State University (LSU) provides $275,000 in funding from August 2024 through July 2029. The project aims to investigate the iterative interrelations between public policies, resident perceptions/actions, and sociodemographic changes in the context of climate change-attributed extreme weather events. Key research activities include developing a conceptual framework to understand these...
- The National Science Foundation (NSF) awarded a $289,837 CAREER grant under the Engineering program (CFDA 47.041) to South Dakota State University (SDSU) for the project "DECIPHERING LARGE-SCALE REAL OUTAGE DATA FOR CASCADING FAILURE ANALYSIS, PREVENTION, AND INTERVENTION". The research aims to develop a data-driven framework to better analyze, prevent, and intervene in cascading failures in complex engineered systems like power grids. Key activities include: Efficiently estimating...
SAI: STRENGTHENING ENERGY INFRASTRUCTURE RESILIENCE AND EQUITY DURING EXTREME COLD WEATHER EVENTS -STRENGTHENING AMERICAN INFRASTRUCTURE (SAI) IS AN NSF PROGRAM SEEKING TO STIMULATE HUMAN-CENTERED FUNDAMENTAL AND POTENTIALLY TRANSFORMATIVE RESEARCH THAT STRENGTHENS AMERICA?S INFRASTRUCTURE. EFFECTIVE INFRASTRUCTURE PROVIDES A STRONG FOUNDATION FOR SOCIOECONOMIC VITALITY AND BROAD QUALITY OF LIFE IMPROVEMENT. STRONG, RELIABLE, AND EFFECTIVE INFRASTRUCTURE SPURS PRIVATE-SECTOR INNOVATION, GROWS THE ECONOMY, CREATES JOBS, MAKES PUBLIC-SECTOR SERVICE PROVISION MORE EFFICIENT, STRENGTHENS COMMUNITIES, PROMOTES EQUAL OPPORTUNITY, PROTECTS THE NATURAL ENVIRONMENT, ENHANCES NATIONAL SECURITY, AND FUELS AMERICAN LEADERSHIP. TO ACHIEVE THESE GOALS REQUIRES EXPERTISE FROM ACROSS THE SCIENCE AND ENGINEERING DISCIPLINES. SAI FOCUSES ON HOW KNOWLEDGE OF HUMAN REASONING AND DECISION-MAKING, GOVERNANCE, AND SOCIAL AND CULTURAL PROCESSES ENABLES THE BUILDING AND MAINTENANCE OF EFFECTIVE INFRASTRUCTURE THAT IMPROVES LIVES AND SOCIETY AND BUILDS ON ADVANCES IN TECHNOLOGY AND ENGINEERING. ELECTRICITY AND HEATING NEEDS SPIKE DURING EXTREME COLD WEATHER EVENTS. NATURAL GAS PIPELINE UTILIZATION APPROACHES THE MAXIMUM CAPACITY DURING THESE PERIODS, AND POWER PLANTS MAY NOT RECEIVE ENOUGH NATURAL GAS FOR ELECTRICITY GENERATION BECAUSE GAS DISTRIBUTION COMPANIES HOLD THE HIGHEST PRIORITY OF SERVICE. THIS WAS PRUDENT DURING AN ERA WHEN THE PRIMARY USE FOR GAS WAS SPACE HEATING AND NOT ELECTRICITY GENERATION. THAT LANDSCAPE HAS CHANGED, WITH ELECTRICITY NOW MORE COMMONLY USED FOR HEATING IN THE RESIDENTIAL AND COMMERCIAL SECTORS. THIS CREATES A DISADVANTAGE FOR CUSTOMERS WHO RELY ON ELECTRICITY FOR HEATING BECAUSE THE PRIORITY FOR NATURAL GAS DISTRIBUTION IS NOT FOR ELECTRICITY GENERATION. RECENT ELECTRICITY CRISES DEMONSTRATE THE COSTLY HUMAN IMPACTS THAT POWER OUTAGES COUPLED WITH NATURAL GAS SUPPLY SHORTFALLS CAN HAVE DURING EXTREME COLD WEATHER EVENTS. IMPORTANTLY, ADVERSE CONSEQUENCES OF COLD WEATHER OUTAGES TEND TO FALL ON HISTORICALLY OVERBURDENED AND UNDERSERVED COMMUNITIES. THESE DISPARITIES ARE EXPECTED TO BECOME MORE PRONOUNCED AS RESIDENTIAL ELECTRICITY CONSUMPTION GROWS THROUGH 2050. THIS SAI PROJECT INVESTIGATES THE COMPLEX CHALLENGES RAISED BY THE INCREASING INTERDEPENDENCE BETWEEN THE ELECTRIC POWER AND NATURAL GAS SECTORS IN THE UNITED STATES. THIS PROJECT DEVELOPS A FRAMEWORK THAT INTEGRATES ENERGY SYSTEMS MODELING, MECHANISM DESIGN AND STAKEHOLDER ENGAGEMENT TO IMPROVE ALLOCATION OF NATURAL GAS BETWEEN LOCAL DISTRIBUTION COMPANIES AND POWER PLANTS DURING EXTREME COLD WEATHER EVENTS. THE INTEGRATIVE RESEARCH APPROACH DEVELOPS MODELS TO ASSESS DAMAGES TO KEY COMPONENTS OF THE ENERGY INFRASTRUCTURE DURING EXTREME COLD WEATHER EVENTS. THE MODELS ARE USED TO SIMULATE THE JOINT OPERATIONS OF ENERGY INFRASTRUCTURE DURING WINTER STORMS, AND ASSESS THE ASSOCIATED IMPACTS ON COSTS, EMISSIONS, AND POWER OUTAGES AT THE COUNTY LEVEL IN A REGIONAL TEST SYSTEM. POTENTIAL POLICY SOLUTIONS THAT ENHANCE EFFICIENCY AND EQUITY OF GAS ALLOCATION DURING SEVERE COLD WEATHER EVENTS ARE PROPOSED AND EVALUATED. THE RESEARCH IS DEEPLY INTEGRATED WITH A ROBUST ENGAGEMENT PROGRAM INVOLVING A RANGE OF KEY STAKEHOLDERS, INCLUDING ENERGY REGULATORS, NON-PROFIT AND COMMUNITY-BASED ORGANIZATIONS, ENERGY COMPANIES, AND ELECTRIC GRID OPERATORS. THE RESEARCH AND STAKEHOLDER ENGAGEMENT ADVANCES THE UNDERSTANDING OF SOLUTIONS TO STRENGTHEN U.S. ENERGY INFRASTRUCTURE RESILIENCE AND PROMOTES EQUITABLE ACCESS TO THIS INFRASTRUCTURE. THIS AWARD IS SUPPORTED BY THE DIRECTORATE FOR SOCIAL, BEHAVIORAL, AND ECONOMIC (SBE) SCIENCES AND THE DIRECTORATE FOR ENGINEERING. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 5/1/26 | ||
| Not listed | $650.0k | 8/10/23 |
GrantNumber | Description | Subgrantee | Prime Award | Dollars Obligated | Updated At |
|---|---|---|---|---|---|
S004576NSFS | Washington State University | Project Grant 2324544 | $176.3k | 1/9/24 |