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首页> 外文期刊>Journal of geophysical research. Planets >Martian megaflood-triggered chaos formation, revealing groundwater depth, cryosphere thickness, and crustal heat flux
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Martian megaflood-triggered chaos formation, revealing groundwater depth, cryosphere thickness, and crustal heat flux

机译:火星megaflood-triggered混乱的形成,揭示地下水深度、冰冻圈厚度、地壳热通量

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摘要

Ravi Vallis is an outflow channel complex that emerged from Aromatum Chaos, a region of collapsed ground in Xanthe Terra, Mars. I propose that the megaflood that carved Ravi Vallis incised the crust more than 700 m, penetrated the cryosphere, and triggered the release of groundwater and genesis of secondary chaos zones in the deepest parts of the channel system. Discharge rates of 4 × 106 to 5 × 107 m3 s?1 are estimated for early overland flooding. Assuming bank-full flow would yield unrealistic discharge rates of >3 × 108 m3 s?1. Waning stage flooding in an inner channel had a discharge rate on the order of 1 × 106 m3 s?1. The cryosphere thickness and groundwater depth are estimated as the sum of the channel incision depth and the thickness of residual cryosphere beneath the channel floor that could be disrupted by high artesian pressure. The surface elevation (?1231 m) of a transient water body in Aromatum Chaos would have controlled the maximum potentiometric heads in confined aquifers to the east. Where Iamuna Chaos was spawned, the floor of Ravi Vallis would have experienced upward hydraulic pressures of ≤2.4 MPa, enough to rupture a basaltic rock layer ≤255 m thick. At the time of the flood the cryosphere thickness and groundwater depth would have been 700 to 1000 m at this location on the equator, indicating a relatively cold, long-term climate trend similar to that of present-day Mars. The crustal heat flux likely exceeded 50 mW m~-2 at Iamuna Chaos. If deep lakes existed at that time in the ancestral Valles Marineris, their ice covers are estimated to have been less than 3 km thick. The fluvial incision and groundwater breakout model described here can fully account for the inception of Iamuna Chaos, Oxia Chaos, and a smaller unnamed chaos. Therefore a locally enhanced crustal heat flux was not required to initiate the formation of these chaotes.
机译:拉斯山谷流出渠道复杂,摆脱Aromatum混乱,一个地区在赞茜Terra倒塌,火星。雕刻的megaflood Ravi谷地切割地壳超过700 m,穿透了冰冻圈,触发释放地下水和创世纪二次混乱的区域最深处的通道系统。放电率4×5×107立方米106年代?估计早期内陆洪水。充沛流将产生不切实际的放电率> 3×108立方米年代? 1。在一个内部通道上的放电率的顺序1×106立方米s ? 1。和地下水深度估计的总和通道切口的深度和厚度剩余通道地板下的冰冻圈可以被高承压压力。瞬态水体在Aromatum混乱控制最大电位正面承压含水层。的地板了,拉维谷地会吗经验丰富的液压≤2.4面临上行压力MPa,足够一层玄武岩岩石破裂≤255米厚。厚度和地下水深度700 - 1000在这个位置在赤道,表示一个相对冷,长期气候趋势类似于今天的火星。地壳热流可能超过50 mW m ~ 2Iamuna混乱。水手号峡谷的祖先,他们的冰包括估计不到3公里厚。突破这里描述模型可以完全帐户《盗梦空间》的Iamuna混乱,Oxia混乱,和一个小的无名小混乱。增强的地壳热流并不需要这些chaotes发起的形成。

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