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首页> 外文期刊>Journal of King Saud University >Aseismic and seismic impact on development of soft-sediment deformation structures in deep-marine sand-shaly Crocker fan in Sabah, NW Borneo
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Aseismic and seismic impact on development of soft-sediment deformation structures in deep-marine sand-shaly Crocker fan in Sabah, NW Borneo

机译:对沙巴,NW婆罗洲深海砂纹理克罗克风扇软泥沙变形结构发展的抗震及地震影响

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Soft-sediment deformation structures are present within the deep-marine fan of the West Crocker Formation, Sabah Basin, NW Borneo. Focus of this study is to highlight the impact of seismic and aseismic activities on the development of these structures and their distribution in deep-marine fan. Twenty-nine types of deformation structures were identified during the study of twelve exposed sections. These structures were grouped into five categories: i) water-escape structures, ii) sole marks, iii) clastic intrusions, iv) deformed laminations, and v)syn-depositional brittle and ductile deformation structures. The sediment deformation is interpreted to be caused either by aseismic processes like slope failure, gravity collapse, sediment overloading, density gradient, seismic induced mechanisms such as earthquakes, tectonic uplift, or combined effect of seismic and aseismic events. These structures are classified based on type of features developed during semi-consolidated phase of rock deposition. The seismite structures i.e., clastic intrusions, deformed laminations, andsyn-depositional structures are correlated with active collisional tectonics during the Late Paleogene times in the Sabah Basin. In the present work, a generalized conceptual model has also been proposed for the development of soft-sediment deformation structures in a submarine fan environment. Dewatering structurers and rapid sedimentation features are associated with inner fan, load and flame structures are present within middle fan, while contorted layers, slumps and mass-transport deposits are linked with distal fan settings.
机译:西克拉盆地沙巴盆地的西克拉地区深海粉丝内存在软泥沙变形结构。本研究的重点是突出地震和抗震活动对这些结构的发展的影响及其在深海粉丝中的分布。在12种暴露部分的研究期间鉴定了二十九种变形结构。这些结构被分为五类:i)水 - 逃逸结构,ii)唯一标记,III)碎片侵入性,IV)变形叠片,V)同步脆性脆性和延性变形结构。沉积物变形被解释为通过斜坡故障,重力塌陷,沉积物重载,密度梯度,地震诱导机制等地震,构造隆起或地震和抗震事件的综合效应等抗原变形。这些结构基于在半固结岩沉积期间开发的特征类型进行分类。地震型结构I.E.,碎屑侵入,变形的叠片,和股沉积结构与Sabah盆地的后期古雄时间的活性碰撞构造相关。在本作本作中,还提出了广泛的概念模型,用于在潜艇风扇环境中开发软泥沙变形结构。脱水结构仪和快速沉降特征与内部风扇相关联,负载和火焰结构存在于中间风扇内,而扭曲的层,坍落度和大规模运输沉积物与远端风扇设置有关。

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