At least 300,000 Italians living near the Vesuvius volcano would be killed the next time it erupted if they were not evacuated beforehand, according to the first three-dimensional supercomputer simulation of the event.
But in a surprise, up to 200,000 others living in the north-northwestern areas of the high-risk “Red Zone” could have more time to escape, thanks to the volcano’s towering Mount Somma rim, which acts as a natural barrier, scientists say.
“For the first time, we have seen that these flows could be substantially diverted,” Augusto Neri, of the National Geophysical and Vulcanology Institute in Pisa, who led the research, said Tuesday. “It seems that Mount Somma acts as an effective barrier. But this doesn’t mean that they’re safe.”
Although Vesuvius has slept for more than six decades, scientists fear the next big eruption could rival the one in the year 79, which suffocated the ancient cities of Pompeii and Herculaneum and killed about 16,000 people.
Authorities have a plan to evacuate the more than half a million civilians living in the 18 towns within a 4-mile (7-kilometer) radius of Vesuvius who face the highest risk. They estimate they can get everyone to safety within a week.
Neri’s research, published in Geophysical Research Letters, could give authorities a greater understanding of how the volcano will behave in the event of a big eruption — and which of those 18 communities need to be evacuated first.
“We’ve already passed the civil protection authorities these results. They are going to consider some of the results of this simulation in the revision of their emergency plan,” he said.
Deja vu destruction?
Peter Baxter, at Cambridge University’s Institute of Public Health, who also participated in the study, said history looked set to repeat itself by pummelling modern-day communities around the ruins of Pompeii and Herculaneum.
“The pyroclastic flows are going to be pushed to the south side, toward the sea,” he said, adding “that’s where Pompeii and Herculaneum are.”
Neri said the Vesuvius computer simulation was the first in 3-D that showed what a big eruption would look like over a period of time, factoring in complex variables such as topography.
The scientists specifically tried to simulate the effects of a collapse of the eruption column — what happens when the exploding mushroom cloud is too heavy for the air, and the material comes crashing down the sides of the volcano.
Partly based on 1631 eruption
The crater sits about 4,200 feet (1,280 meters) above and 13 miles (20 kilometers) away from Naples, Italy’s third largest city.
The simulation calculated the temperature of magma would be 1,742 degrees Fahrenheit (950 degrees Celsius) as it left the crater and 392 degrees F (200 degrees C) at the outer edge of the Red Zone.
Carlo Cavazzoni, who helped developed the code that allowed the supercomputer to interpret the data, said the team partly based its research on an eruption in 1631 that killed 4,000 people.
Neri said many more simulations were needed, but said the first 3-D model was a major step forward. “It’s the first time that such a complete model has been applied at Vesuvius,” he said.
