Jul 21, 2014

Mystery of Stone Arch Formation May Be Solved

Arches of stone seem to defy explanation, but a new study may have solved the mystery of how these and other strange natural stone wonders form.

The bewildering shapes apparently owe their origin in large part to how rock can strengthen when squashed from above, scientists explained.

Mysterious rock formations such as arches, bridges, pillars and mushroom-shaped pedestal rocks occur all over the world. Geologists mostly think these form due to erosion from wind and water, as well as from the weathering effects of salt and frost.

However, lead author of the new study Jirí Bruthans, a geologist at Charles University in Prague, and his colleagues did not think erosion and weathering alone could explain how many of these natural sculptures arose. They also noted that prior research did not explain how the upper parts of arches remain stable.

Now, the researchers said they can help explain how these rock formations develop by accounting for the way rock can strengthen when compacted by weight from above.

"The results were shocking for me when I started to realize how simply nature carves all these shapes," Bruthans said.

The scientists conducted experiments with oven-dried cubes of sandstone that were weak enough that running water could erode them. As the sides of the cubes disintegrated from exposure to water, researchers saw that the weight of the sandstone above was held up by fewer and fewer sand grains. This increased the amount of force placed on those remaining grains from the sand above.

Experiments and numerical models revealed that once a critical weight from the higher parts of the sandstone was reached, the downward force locked the lower grains of sand together more tightly, increasing their resistance to erosion. In contrast, other parts of sandstone bearing less weight stayed vulnerable to erosion, and washed away.

The researchers also found that introducing weaknesses, such as notches or fractures, into the sandstone cubes could yield a diversity of shapes, including arches, pillars and pedestal rocks.

Read more at Discovery News

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