首页> 外文期刊>Icarus: International Journal of Solar System Studies >Large-scale deformational systems in the South Polar Layered Deposits (Promethei Lingula, Mars): Soft-sediment and Deep-Seated Gravitational Slope Deformations Mechanisms
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Large-scale deformational systems in the South Polar Layered Deposits (Promethei Lingula, Mars): Soft-sediment and Deep-Seated Gravitational Slope Deformations Mechanisms

机译:南极层状沉积物中的大型变形系统(Promethei Lingula,火星):软沉积和深部重力引力斜坡变形机制

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摘要

The present study is the first attempt at a detailed structural and kinematic analysis of large-scale deformational systems observed in the South Polar Layered Deposits (SPLDs) in the Promethei Lingula (PL) margins (Mars). By systematically collecting attitude data referable to previously unknown deformational structures and defining the cross-cut relationships of the structures, we reconstructed a deformational history consisting of two superimposed, well-defined stages. The first stage is dominated by large-scale strike-slip and transtensional faults arranged into conjugate systems and delimiting shear zones that show a wide range of subsidiary structures, including normal and reverse faults, drag folds, boudins, S-C tectonites and sub-horizontal interstratal shear planes marked by sygmoidal boudins. Other typical structures referable to this event are ductile folds (locally true convolute folds) and lobes (ball-and-pillow structures) affecting certain marker beds of the succession. We suggest that the structural assemblage might be the expression of a shallow soft-sediment tectonics that possibly occurred during warm periods of the South Pole climate.The second stage seems to affect the weaker and in certain cases pre-deformed stratigraphic levels of the SPLD succession. This stage is mainly characterized by extensional deformations caused by gravity. The consequence of the deformations is the nucleation of Deep-Seated Gravitational Slope Deformations (DSGSDs) marked by typical morphostructures, such as scarps, trenches and bulging basal contractant zones. These phenomena were never observed within an ice cap. According to terrestrial modeling, these slow collapses were caused by (1) the presence of detachment levels (i.e., subhorizontal bedding planes) along which the ice-sheet margins can slide and (2) the development of listric faults within the glacial mass, which merge with sub-horizontal shear planes in the subsurface.The presence of complex deformational systems in the SPLD necessarily implies that a large-scale dynamics of the ice-sheet occurred in the past. The relatively fast internal creep and basal/internal sliding, inferable from the structure assemblage, can be due to partial melting of the ice possibly caused by climatic changes in the Promethei Lingula region. In this manner, we believe that climate heating (which, according to the literature, is likely caused by orbital variations) softened some of the SPLD layers, triggering or accelerating the ice sheet's outward movement.The evidence of a marked disharmonic deformational style through the SPLD succession suggests the possibility of local periodic compositional variations in the sequence.
机译:本研究是对Promethei Lingula(PL)边缘(Mars)的南极层状沉积物(SPLD)中观察到的大规模变形系统进行详细结构和运动学分析的首次尝试。通过系统地收集与先前未知的变形结构有关的姿态数据并定义结构的横切关系,我们重建了由两个重叠的,定义明确的阶段组成的变形历史。第一阶段主要是大范围的走滑断裂和张性断裂,排列成共轭体系和划定的剪切带,这些剪切带显示出广泛的辅助构造,包括正断层和反向断层,褶皱,布丁,SC构造体和水平下层间剪切平面以弧形布丁标记。与此事件相关的其他典型结构是延展性褶皱(局部为真正的褶皱褶皱)和波瓣(球形和枕形结构),会影响演替的某些标记床。我们认为结构组合可能是南极气候温暖时期可能发生的浅层软沉积构造的表达,第二阶段似乎影响了SPLD演替的弱化和某些情况下的预变形地层。 。该阶段的主要特征是重力引起的拉伸变形。变形的结果是深部重力引力斜坡形变(DSGSD)的成核,其特征是典型的形态结构,例如,陡峭的,沟槽的和基部收缩区域凸起。这些现象从未在冰盖中观察到。根据地面模拟,这些缓慢的塌陷是由于(1)冰盖边缘沿其滑动的分离层(即水平水平的顺层平面)的存在和(2)冰川块内利斯特断层的发育所致。 SPLD中复杂变形系统的存在必然意味着过去曾发生过大规模的冰盖动力学。从结构组合中可以推断出,相对较快的内部蠕变和基础/内部滑动可能是由于Promethei Lingula地区气候变化可能引起的冰的部分融化。通过这种方式,我们认为气候变暖(根据文献可能是由轨道变化引起的)软化了一些SPLD层,从而触发或加速了冰盖的向外运动。 SPLD的继承表明序列中局部周期性成分变化的可能性。

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