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Magma influx explains short-lived bulge at Tanzania's Ol Doinyo Lengai volcano

Magma influx explains short-lived bulge at Tanzania's Ol Doinyo Lengai volcano

phys.org 20.09.2026 17:00 3 views
In 2024, D. Sarah Stamps' team detected and tracked a short-lived bulge in the land around a volcano in Tanzania. In a paper published Sep. 18, Stamps identified the cause of the uplift: 1 million cubic meters of magma p

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: In 2024, D. Sarah Stamps' team detected and tracked a short-lived bulge in the land around a volcano in Tanzania.

In a paper published Sep. 18, Stamps identified the cause of the uplift: 1 million cubic meters of magma pouring into an existing magma reservoir about 1.8 miles (2.9 kilometers) underground. Stamps said the amount of magma is modest and not a cause for concern. But the finding demonstrates the effectiveness of Virginia Tech's early-stage alert system for volcanic activity.

Stamps explained the research, which was published in Frontiers in Earth Science in September 2026. "This particular volcano, Ol Doinyo Lengai, is very active. A lava lake is currently bubbling and erupting effusively.

We're most concerned with trying to figure out when the volcano is going to erupt explosively so that the people living in the area have ample time to prepare and respond to any decisions made by the Tanzania Geological Survey about evacuations." "On average, there's an explosive eruption every 10 to 15 years. We do expect one within our lifetime, and we hope that our monitoring and modeling efforts will be worthwhile." "With as much certainty as we can get from numerical modeling, we found that the signal was due to an influx of magma into an existing magma reservoir about 3 kilometers (1.9 miles) underground." "The volume of the magma intrusion is about 1 million cubic meters. You could think of that as 400 Olympic-size swimming pools, which is a modest amount." "The intrusion we're presenting in this paper is not of huge concern.

There's a little more magma being injected into a system that we know exists, but the detected magma does not appear to be moving closer to the crater." "The last time it erupted explosively, there was a magnitude 5.9 earthquake first. I would be more concerned if there was a significant earthquake, and then we started to monitor observable surface deformation changes. Also, if we observe the magma moving from a deeper to a shallower location over time, that suggests the magma is moving up the volcanic vent.

That would be concerning." "Some volcanoes erupt explosively each time they erupt. Ol Doinyo Lengai alternates between erupting effusively and explosively. Part of the reason we're continuing to monitor it is to figure out this particular volcano's time delay." "In 2016, we installed six Global Navigation Satellite System instruments on the ground.

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