麻豆淫院


Martian lakes, seas formed by emerging underground aquifers

Mars
Mars. Image: NASA

Researchers at the Planetary Science Institute have found a new explanation for how seas and lakes may have once developed on Mars.

J. Alexis Palmero Rodriguez, research scientist at PSI, has been studying the Martian northern lowlands region, which contains extensive sedimentary deposits that resemble the abyssal plains of 鈥檚 ocean floors. It is also like the floors of other basins on Mars where oceans are thought to have developed.

The origin of these deposits and the formation of Martian lakes and seas are controversial. One theory is that there was a sudden release of large volumes of water and sediment from zones of apparent crustal collapse known as 鈥渃haotic terrains.鈥 However, these zones of collapse are on the whole rare on Mars, while the plains deposits are widespread and common within large basin settings, Rodriguez said.

Citing evidence found in the planet鈥檚 northern plains south of Gemini Scopuli in Planum Boreum, Rodriguez proposes in an article published in Icarus that groundwater emerged through extensive and widespread fractures forming the floors of ancient continental-scale basins on Mars. This led to the formation of river systems, large-scale regional erosion, sedimentary deposition and water ponding.

This model does not require sudden massive groundwater discharges, he said. Instead, it advocates for groundwater discharges being widespread, long-lived and common in the northern plains of Mars.

鈥淲ith the loss over time of water from the subsurface aquifer, areas of the northern plains ultimately collapsed, creating the rough hilly surfaces we see today. Some plateaus may have avoided this fate and preserved sedimentary plains containing an immense record of hydrologic activity,鈥 he said. 鈥淭he geologic record in the collapsed hilly regions would have been jumbled and largely lost.

鈥淭his model implies that groundwater discharges within basin settings on Mars may have been frequent and led to formation of mud pools, lakes and oceans. In addition, our model indicates this could have happened at any point in the planet鈥檚 history,鈥 he said. 鈥淭here could have been many oceans on over time.鈥

If life existed in Martian underground systems, life forms could have been brought up to the surface via the discharges of these deep-seated fluids. Organisms and their fossils may therefore be preserved within some of these sedimentary strata, Rodriguez said.

Provided by Planetary Science Institute

Citation: Martian lakes, seas formed by emerging underground aquifers (2010, October 19) retrieved 23 May 2025 from /news/2010-10-martian-lakes-seas-emerging-underground.html
This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only.

Explore further

Exposed rocks point to water on ancient Mars

0 shares

Feedback to editors