Toronto Star

Why no quake has the power to shake the Leaning Tower of Pisa

- CLEVE R. WOOTSON JR.

The Leaning Tower of Pisa and its 5.5-degree lean have vexed engineers for centuries.

Partially constructe­d on unexpected­ly soft soil, the ancient bell tower began to lean before it was even finished, a historical goof that went on to become one of the world’s oddities — and made the tower a UNESCO World Heritage site.

How can something so obviously structural­ly unsound endure in an earthquake-prone region for hundreds of years? People who assemble an Ikea cabinet and have 18 pieces left over don’t expect to pass a wobbly Hemnes down to their great-grandchild­ren. Professor George Mylonakis wanted to know why. The tower in northern Italy’s Tuscany province has managed to survive two world wars, millions of tourist visits and at least four strong earthquake­s that have hit the region since1280, according to Phys.org. One of those quakes was greater than 6.0 on the Richter scale.

Mylonakis, an engineerin­g professor who studies geotechnic­s and soil-structure interactio­n, and more than a dozen researcher­s came up with an answer that involves that famous soft soil and a jargon-laden term called “dynamic soil-structure interactio­n.”

According to Phys.org, the engineers determined that the tower’s height and stiffness, “combined with the softness of the foundation soil, causes the vibrationa­l characteri­stics of the structure to be modified substantia­lly, in such a way that the Tower does not resonate with earthquake ground motion.”

So during a quake, the tower doesn’t shake as much as the earth beneath it, in further defiance of gravity.

“Ironically, the very same soil that caused the leaning instabilit­y and brought the tower to the verge of collapse can be credited for helping it survive these seismic events,” Mylonakis told the website.

The researcher­s have released just some of their findings. They expect to release the rest this month at the European Conference on Earthquake Engineerin­g in Greece.

The tower’s insulation from earthquake­s does not mean it can metaphoric­ally thumb its nose at nearby, earthquake-ravaged buildings. It has continued to settle throughout its history and by the early part of the 20th century, was in real danger of falling.

In 1990, the Italian government closed the tower to visitors and began a decade-long restoratio­n project, according to Smithsonia­n Magazine. Restorers put about 800 tonnes of lead counterwei­ghts on the north side of the tower while they came up with a better plan to slow its descent.

As the Washington Post reported in 1998: “The plan involves erecting a stationary A-frame structure on the north side and extending cables from it to a sort of sling or harness around the midsection.

“This is to hold the structure in place while crews gradually begin to remove small amounts of soil from the high north side. Presumably, this will cause that side to subside or sink slightly, rotating the tower back toward the north by about one-half of one degree.”

Engineers also installed equipment that allows them to make adjustment­s to the water pressure beneath the tower, further controllin­g the tilt.

All that constructi­on fixed the tilt a bit — to 3.9 degrees from 5.5 degrees — while still helping the building maintain its namesake lean.

But more importantl­y, it meant the tower wasn’t in danger of toppling from the effects of gravity alone.

“It is extremely unlikely that the foundation­s of the tower will fail,” John Burland, one of the leaders of the restoratio­n project, told the magazine. If anything causes the tower to collapse “it is much more likely that it would be due to a very large earthquake.”

Then again, maybe not.

 ?? TOM PETERSON/THE WASHINGTON POST ?? The Leaning Tower of Pisa has managed to survive two world wars, millions of tourist visits and at least four strong earthquake­s that have hit the region since 1280, according to Phys.org.
TOM PETERSON/THE WASHINGTON POST The Leaning Tower of Pisa has managed to survive two world wars, millions of tourist visits and at least four strong earthquake­s that have hit the region since 1280, according to Phys.org.

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