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Climatic and Geomorphic Triggering Mechanisms of Cascadian Periglacial Debris Flows

How does changing climate affect the frequency and magnitude of rain-induced debris flows from stratovolcanoes in the Cascades of the Pacific Northwest and, by extension, stratovolcanoes worldwide?”

The Cascadian region of the Pacific Northwest is perhaps best known for its stratovolcanoes, rising thousands of feet above the surrounding landscape. Debris flows initiating in the upper reaches of glacierized valleys are typically associated with intense, multi-day rain events, such as “Pineapple Express” storms. Although far smaller than large and deadly volcanic lahars, these rain-induced debris flows are nearly annual events and cause millions of dollars in damage. This investigation will focus on rain-induced periglacial debris flows on Mt. Hood and Mt. Rainier. There are several distinctive aspects about debris flows in this region: the steep slopes of the volcanoes provide high gradients, the initiation sites are typically near the glacier termini, and the receding glaciers have exposed even greater amounts of unconsolidated material in the steep moraines that are no longer buttressed by ice.