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Posts Tagged ‘seismic’

Photo: Asem Salama / Scientific Reports..
A diagram of the inside of the Great Pyramid of Giza in Egypt.

Today’s story about the brilliant design of the the Great Pyramid of Giza reminds me that people living in the 21st century should never assume they are more intelligent than people centuries ago. Many of our ethical stances show improvement. We have advanced gadgets and skills. But we have lost ancient skills needed to manipulate ancient gadgets.

And what about building construction? The high rise in New York City that threatens to collapse is surely an example of inferior design capability.

Compare that to the pyramids. Richard Widdington writes at Artnet, “Over the past 4,600 years, the Great Pyramid of Giza has weathered a dozen or so major earthquakes. … Cumulatively, seismic activity is one factor that explains why the structure has lost around 30 feet in height since it was completed at the peak of Egypt’s Old Kingdom.

“Otherwise, the wonder of the ancient world has endured relatively unscathed. Unlike the earlier Step Pyramid at Saqqara or the aptly named Bent Pyramid at Dahshur, the Great Pyramid of Giza is free from earthquake-induced structural damage. A new study led by seismologists at Egypt’s National Research Institute of Astronomy and Geophysics measured such resilience and concluded that it might be partly by design.

“[Researchers] used an accelerometer to measure natural vibrations at 37 locations inside and around the pyramid, including on its exterior stones, within its chambers, and in the surrounding soil. They found the majority of the vibrations inside the structure exhibited ‘exceptional homogeneity’ and ranged between 2.0 and 2.6 hertz. This means the stress of an earthquake is distributed evenly throughout the pyramid. Crucially, this differed from the surrounding soil, which averaged 0.6 hertz, effectively offering the ground as a natural shield that prevents seismic energy from amplifying as it passes into the monument. Building on top of a carefully leveled limestone bedrock, researchers noted, also helped to anchor the structure. The results were published in Scientific Reports in May.

“ ‘The Great Pyramid behaves as a single, cohesive unit that naturally vibrates at a fundamental frequency of approximately 2.3 Hz,’ one of the researchers, Asem Salama, said over email. ‘The frequency difference prevents the destructive phenomenon of resonance, the primary culprit behind the collapse of modern buildings, when a structure’s frequency matches the earthquakes vibrations.’

“Another factor preventing shockwaves from amplifying as they rise through the pyramid is a series of five rooms built directly above the King’s Chamber, which sits at the heart of the structure. Known as weight-relief chambers, they were designed to protect the hallowed space from the immense weight of the stone blocks above it. In the context of earthquakes, however, they act as a built-in ‘shock absorbers,’ diminishing the vibrations that reach them.

“Last, there’s the Great Pyramid of Giza’s most visibly obvious advantage: its bottom-heavy, symmetrical shape. This ensures weight and stress are distributed evenly throughout the structure.

“​ ‘The earthquake resilience of the Great Pyramid of Giza is not a historical fluke, but the pinnacle of an ancient engineering evolution,’ Salama said. ‘Much like modern engineering advances through iterative science and lessons learned from past structural failures, Egyptian architects refined their techniques over generations. Prior disasters, such as the collapse of the Meidum Pyramid, provided critical data. By the time the Great Pyramid’s architects broke ground, they had mastered the physics of permanence.’ ”

More at Artnet, here. No firewall.

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Photo: Soren Ryesgaard.
A boat looks tiny cruising by the rockslide gully of a destroyed glacier in Greenland recently. Rockslide plus global warming equals a surprise.

I don’t remember reading about this mysterious rumble at the time, but I’m always interested when scientists are stumped. I like how they approach figuring out a new phenomenon. Here’s hoping that science will continue to guide us the future. For one thing, unlike business or politics, it is usually collaborative, as seen in this story.

Kasha Patel wrote at the Washington Post, “The strange rumble was detected mid-September last year. An odd seismic signal appeared at scientific stations around the globe, but it didn’t look like the busy squiggles of an earthquake. A day passed, and the slow tremor still reverberated. When it continued for a third day, scientists worldwide began assembling to discuss what was causing the grumble in the ground.

“Some initially thought the seismic instruments recording the signal were broken, but that was quickly nixed. Maybe it was a new volcano emerging before their eyes, others said. …

“ ‘No one had ever seen this. We have nothing to compare it with,’ said Kristian Svennevig, a geologist at the Geological Survey of Denmark and Greenland.

“Nine days later, the vibrations greatly dissipated. But the mystery of the USO [Unidentified Seismic Object] lasted much longer. A year later, the puzzle has been solved, according to a study published in the journal Science [in September 2024]. It took about 70 people from 15 different countries and more than 8,000 exchanged messages (long enough for a 900-page detective novel) to crack the case.

“The short answer: A mega-tsunami created waves that sloshed back and forth in a fjord in Greenland, creating vibrations that traveled around the world.

“The long answer begins in the atmosphere. As greenhouse gas concentrations increase due to climate change, those heat-trapping gases accelerate ice melt particularly around Earth’s poles. On Sept. 16 last year, that extra heat thinned a glacier in eastern Greenland over time so much that it could no longer support the mountain rock above it.

“A 500-foot-thick piece of metamorphic rock, about a third of a mile wide and long, fell and triggered a massive landslide. Rock and ice, enough to fill 10,000 Olympic-size swimming pools, let loose as fast as 47 meters per second and ran for more than a mile. The avalanche plunged into the Dickson Fjord, triggering a 650-foot-high tsunami — one of the highest seen in recent history.

“Farther away from the fjord, tsunami waves reaching 13 feet high damaged an unoccupied research station and destroyed cultural and archaeological heritage sites, including an old trapper hut that had never been affected by tsunamis during its century-old history. …

“Meanwhile, in the fjord, the mega-tsunami wave traveled back and forth in the inlet and created a standing wave called a seiche. We often see small-scale seiches — this rhythmic oscillation in water — in a swimming pool or bathtub. This tsunami source was so energetic that the seiche radiated seismic waves globally, shaking the planet for nine days before it petered out.

“Members of the Danish military sailed into the fjord only days after the event to collect drone imagery of the collapsed mountain face and glacier front and scars left by the tsunami.

“Of course, Svennevig and many of his close colleagues didn’t fully know of the connection between the tsunamigenic landslide and the seiche as the events unfolded, which is detailed in the study.

“At the time, they were scratching their heads about the data at the seismograph stations. The seiche appeared as a single slow vibration, like a monotonous-sounding hum, as opposed to the frantic lines of a typical earthquake reading. The wave peaked every 92 seconds, which is slow compared with an earthquake. …

“ ‘When we started doing this research, nobody had any ideas about what was the root cause,’ said Carl Ebeling, a co-author of the study and a seismologist at the Scripps Institution of Oceanography at the University of California at San Diego. ‘Even for a large landslide under normal circumstances, it would be hard to see that on a global scale, so something special is going on here.’

“As some scientists investigated the peculiar seismic data, another group of authorities and researchers had heard of a large tsunami in a remote fjord in eastern Greenland. The two teams, among others, joined forces, quickly growing into a 24/7 international collaboration via a messaging system. The group brought a variety of local field data and remote, global-scale observations.

“ ‘We knew there was a landslide and a tsunami. You could pull the seismic signal of those,’ Svennevig said. ‘But then there was this other seismic signal that continued for nine days, and they were taken from roughly the same area, so they must be associated somehow.’ …

“The breakthrough came when they received new bathymetry data of the fjord, similar to a topographic map, from the Danish military, which allowed them to better map the seabed in the computer models. Once incorporated, the team used an unprecedentedly high resolution model to show how the landslide direction, along with the uniquely narrow and bendy fjord channel, led to the nine-day seiche.”

More at the Post, here.

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