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首页> 外文期刊>Journal of geophysical research. Planets >Thin-skinned deformation of sedimentary rocks in Valles Marineris, Mars
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Thin-skinned deformation of sedimentary rocks in Valles Marineris, Mars

机译:脸皮薄的变形的沉积岩

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摘要

Deformation of sedimentary rocks is widespread within Valles Marineris, characterized by both plastic and brittle deformation identified in Candor, Melas, and Ius Chasmata. We identified four deformation styles using HiRISE and CTX images: kilometer-scale convolute folds, detached slabs, folded strata, and pull-apart structures. Convolute folds are detached rounded slabs of material with alternating dark- and light-toned strata and a fold wavelength of about 1 km. The detached slabs are isolated rounded blocks of material, but they exhibit only highly localized evidence of stratification. Folded strata are composed of continuously folded layers that are not detached. Pull-apart structures are composed of stratified rock that has broken off into small irregularly shaped pieces showing evidence of brittle deformation. Some areas exhibit multiple styles of deformation and grade from one type of deformation into another. The deformed rocks are observed over thousands of kilometers, are limited to discrete stratigraphic intervals, and occur over a wide range in elevations. All deformation styles appear to be of likely thin-skinned origin. CRISM reflectance spectra show that some of the deformed sediments contain a component of monohydrated and polyhydrated sulfates. Several mechanisms could be responsible for the deformation of sedimentary rocks in Valles Marineris, such as subaerial or subaqueous gravitational slumping or sliding and soft sediment deformation, where the latter could include impact-induced or seismically induced liquefaction. These mechanisms are evaluated based on their expected pattern, scale, and areal extent of deformation. Deformation produced from slow subaerial or subaqueous landsliding and liquefaction is consistent with the deformation observed in Valles Marineris.
机译:沉积岩的变形是普遍水手号峡谷内,两种的特征塑料和脆性变形中确定坦率,米拉和Chasmata国际单位。4使用HiRISE和CTX变形样式图片:公里尺旋卷折叠,分离板、折叠层和扯断结构。分离的圆形石板旋卷折叠材料交替深色和浅色地层的褶皱波长大约1公里。分离板是孤立的圆块材料,但是他们只表现出高度本地化分层的证据。的连续折叠层组成不分离。层状岩石的破碎成小形状不规则的块显示的证据脆性变形。从一种类型的风格的变形与品位变形到另一个。观察到在数千公里,限于离散地层间隔,发生在海拔广泛。似乎可能的变形样式脸皮薄的起源。显示的一些畸形的沉积物包含一水和多水合物的一个组成部分硫酸盐。沉积岩的变形水手谷,如陆上或水下重力下滑或滑动和软沉积物变形,后者可能包括冲击造成的或地震引起的液化。基于他们的预期模式、规模和面积变形的程度。缓慢的陆上或水下滑坡液化和变形是一致的观察到水手谷。

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