A new AI model can help make floods more predictable
The breakthrough, detailed in the Journal of Water Resources Planning and Management, offers near-instant simulations of flood scenarios that currently take nearly an hour to generate.
It then goes further, suggesting actionable strategies.
"Accuracy is obviously very important to us, because overestimation of water stages can cause false alarms and panic while underestimation can result in unexpected and dangerous flooding events," said
Florida's 2,175-mile network of interconnected canals plays a critical role in flood control, particularly when hurricanes threaten the state. Before storms make landfall, water managers strategically lower canal levels to absorb incoming rainfall and storm surge. But extreme weather is notoriously unpredictable. Sudden shifts in wind, tides, or rainfall can overwhelm existing models, leaving little time to act.
Traditional physics-based models replicate canal systems in meticulous detail, accounting for factors from water flow to gate operations. While precise, these simulations require enormous computational power and can take close to an hour to complete. In fast-moving storm conditions, delays can hinder timely decision-making.
The FIU model, by contrast, runs through complex or worst-case scenarios in seconds. Using nearly a decade of historical environmental and weather data collected by the
Unlike traditional models that provide broad predictions, FIU's AI system can break down the specific drivers of flooding. For example, it can estimate how much water rise is due to rainfall versus tidal surge. In addition, it can suggest how adjusting specific canal gates or pumps could mitigate the flooding.
"This is where AI-powered models come in handy," Narasimhan said. "They allow for hundreds of scenarios to be run in a fraction of the time."
The project is part of FIU's broader effort to make AI a trustworthy tool in real-world, high-stakes scenarios.
"The model also holds a lot of potential as a tool to help agencies make longer-term decisions," he said. "It could guide 20- or 30-year infrastructure investments, such as whether to build new pumps, reservoirs or levees by screening potential solutions efficiently."
About FIU:
Florida International University is a Top 50, preeminent public research university with 55,000 students from all 50 states and more than 140 countries, as well as an alumni network of more than 340,000. Located in the global city of
Media Contact:
Jonathan Ruadez
305-348-8448
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SOURCE Florida International University
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