
For decades, stormwater was treated as a problem to be hidden underground and rushed away. Suha Atiyeh has helped redefine this mindset by demonstrating how stormwater can become a visible, productive asset that strengthens communities.
Across Washington DC, her projects show how rainfall can be managed at the surface through green infrastructure that delivers multiple benefits. On Wheeler Road SE, a coordinated system of bioswales and permeable pavements captures and filters stormwater that once overwhelmed pipes and flooded streets. The redesigned corridor now functions as a green spine, reducing runoff while improving neighborhood aesthetics.
Along Martin Luther King Jr. Avenue, stormwater infrastructure was integrated directly into the streetscape. Rain gardens and enhanced tree boxes slow and treat runoff while creating shaded pedestrian zones. These features contribute to safer walking conditions and support local businesses by making the corridor more inviting.
At larger sites such as St. Elizabeths Campus and Kenilworth Courts, Atiyeh scaled these strategies to manage substantial runoff volumes. Here, stormwater systems not only protect downstream waterways but also reduce long-term infrastructure costs by easing pressure on combined sewer systems. Residents benefit from improved public spaces that are both functional and visually appealing.
Her work in the UAE applied the same philosophy under drastically different conditions. In Masdar City, rare but intense rainfall events are captured and directed to support water reuse and aquifer recharge. Even in arid climates, stormwater is treated as a valuable resource when managed thoughtfully.
These outcomes are supported by rigorous analysis and verification. Atiyeh’s LEED, Envision, and Estidama Pearl credentials require detailed modeling, performance tracking, and third-party review. As a result, stormwater benefits are quantified in reduced flood risk, improved water quality, and enhanced urban comfort.
Through leadership and practice, Suha Atiyeh continues to shift how cities perceive rainfall—from an engineering burden to an opportunity for environmental and social gain.