麻豆淫院

January 11, 2010

Deep heat powers once-in-a-billion-year volcanoes on icy moon

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(麻豆淫院Org.com) -- New research by Macquarie University planetary scientist Dr Craig O鈥橬eill and US colleague Francis Nimmo has found the answer to an apparent cosmic contradiction.

The mystery relates to Saturn鈥檚 tiny ice . Until relatively recently, very little had been known about Enceladus, however scientists expected it to be a cold and dead place given its physical characteristics.

Then NASA鈥檚 2005 flew by Enceladus at close range, and straight into an active field.

Research performed by O鈥橬eill and co-author Nimmo from the University of California, Santa Cruz is published online today by Nature Geoscience. The project was partly funded by the NASA Outer Research program.

In their article, the scientists show how their demonstrate that over billions of years the pent up energy from the tidal forces Enceladus experiences on its orbit around Saturn eventually melt its interior ice, and result in a pulse of crashing ice plates and ice volcanoes, or cryovolcanism.

鈥淓nceladus was an enigma,鈥 said O鈥橬eill, who was lead scientist on the study. 鈥淪omehow it seems to be pumping out more energy than it gets, which would violate the laws of thermodynamics,鈥 he said.

鈥淲e knew from the prior Voyager missions that Enceladus might have a complex geology, but most people thought that was in the past. Yet it turns out this 500km-across ball of ice is one of the most active moons or planets in the .鈥

The pent-up heat - enough to melt the interior, and possibly sustain a ocean under the ice - would be released as one catastrophic event around every billion years or so. Cassini just happened to fly into it, O鈥橬eill said.

鈥淓ventually you reach a critical point, and the whole thing just blows,鈥 he said.

The ice sheets would flow like glaciers, the heat causing geysers to pop up all over the active surface, he added.

It turns out the little worlds like Enceladus are among the most interesting, which makes us reflect on what we think we know of the processes that shape Earth鈥檚 interior.鈥

Provided by Macquarie University

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