Integrating decades of data to guide groundwater remediation

Bringing together more than 30 years of geologic and geophysical data at NASA’s White Sands Test Facility to strengthen long-term groundwater remediation decisions.
Defining a disposal strategy for a landmark federal cleanup program

Applying performance modeling, radiological analysis, and technical evaluation to support long-term environmental cleanup at Oak Ridge Reservation.
Integrating green infrastructure into a downtown streetscape

Reducing stormwater runoff to Grand Traverse Bay while improving pedestrian safety and mobility through an integrated downtown streetscape design.
Modernizing mission-critical utility systems at a VA medical campus

Designing the rehabilitation and replacement of aging utility infrastructure to support uninterrupted healthcare operations for veterans.
Assessing Michigan’s aging dam infrastructure

Evaluating high and significant hazard dams through hydraulic modeling and engineering analysis to prioritize risk and guide long-term infrastructure investment.
Scaling green infrastructure across a multi-county watershed

Advancing the WaterTowns® program through long-term technical support and green infrastructure implementation across Southeast Michigan.
Prioritizing investment across 80+ urban lakes

Building a data-driven framework to prioritize long-term environmental investment across a citywide lake system.
Mapping flood risk across critical infrastructure at county scale

Modeling flood exposure across critical assets to guide long-term resilience investments under current and future rainfall conditions.
Linking groundwater vulnerability to surface water quality outcomes

Connecting septic system impacts, aquifer vulnerability, and nutrient transport to guide policies protecting lakes, springs, and river systems across Orange County.
Protecting high-value watersheds under growth pressure

Analyzing watershed conditions to guide future protections for sensitive areas within the Shingle Creek and St. Johns River basins.