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Latest Quaternary sedimentation in the northern Gulf of Mexico Intraslope Basin Province: I. Sediment facies and depositional processes

机译:墨西哥湾北部斜坡盆地盆地省的最新第四纪沉积:I.沉积相和沉积过程

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Very high-resolution seismic facies, classified, mapped, and interpreted from 3.5 kHz echograms, reveal that turbidity-current, mass-transport, and bottom-current depositional processes have all contributed to the regional sediment distribution in the intraslope basin province of the northwest Gulf of Mexico. Piston cores from these deposits confirm the interpretations of the processes. Turbidity currents transport sands into the intraslope mini-basins via channels and canyons. A few turbidity-current pathways, such as Bryant Canyon, allow extensive volumes of terrigenous sediment to bypass through many mini-basins and be deposited beyond the Sigsbee Escarpment to form large submarine fans, such as Bryant Fan. Bryant Fan is a large mud-rich fan that extends hundreds of kilometers from the mouth of Bryant Canyon but has only one meandering channel on the modern seafloor that extends down the length of the fan. In contrast, the much smaller Rio Grande Submarine Fan is deposited on a plateau area of the continental slope. Prolonged 3.5 echo character and numerous small, unleveed channels suggest this is a sand-rich fan with a braided channel system. These two submarine fans appear to present unique architectural and growth patterns not previously described in the numerous fan descriptions of W.R. Normark or other workers. Thus, these two fans appear to represent two new types of fans, which may be related to the complex structures of the intraslope basin province. Mass-transport deposits (MTDs) are ubiquitous throughout the mini-basins. Extensive areas affected by MTDs also occur along the upper continental slope and at the base of the eastern portion of the Sigsbee Escarpment. Piston cores confirm that the majority of MTDs are debris flows, which are characterized by mud clasts of variable size, shape, and color. Most have a muddy matrix, but sandy debris flows also occur in a few mini-basins. Some cores show deformation, folds, and faults that indicate slump or slide deposits. The East Breaks Slide Complex is the largest MTD complex and extends downslope from the shelf edge for 100 km off central Texas. The western portion of the complex is slump and/or slide blocks and debris flows. In contrast, the proximal part of the eastern portion of the complex is characterized by a modern leveed turbidite channel system. However, extensive MTDs underlie the channel-levee deposits and occur at the seafloor on the distal part of the eastern portion of the complex. Three large regions of migrating sediment waves occur on the Sigsbee Abyssal Plain and eastern Bryant Fan and appear to have been formed by circulation of the Loop Current. Sediment waves also occur locally at the base of the Sigsbee Escarpment in conjunction with previously reported erosional furrows.
机译:根据3.5 kHz回波图对高分辨率地震相进行分类,映射和解释,结果表明,浑浊流,质量输运和底流沉积过程均对西北斜坡盆地盆地地区的区域沉积物分布做出了贡献。墨西哥湾。这些沉积物的活塞芯证实了工艺的解释。浊流通过通道和峡谷将沙子输送到斜坡内小盆地中。一些浊流通道(例如科比峡谷)使大量的陆源沉积物绕过许多小盆地,并沉积在Sigsbee悬崖之外,形成了大型海底扇,例如科比范。布莱恩特·范(Bryant Fan)是一个大泥浆丰富的风扇,从布莱恩特峡谷(Bryant Canyon)的河口延伸了数百公里,但在现代海底上只有一条蜿蜒的通道,向下延伸到风扇的长度。相比之下,小得多的里奥格兰德海底风机则沉积在大陆斜坡的高原地区。延长的3.5回声特性和许多小的无槽通道表明这是一个带有编织通道系统的富沙风扇。这两个潜水艇爱好者似乎呈现出独特的建筑和成长模式,这在W.R. Normark或其他工人的众多爱好者描述中都未曾描述过。因此,这两个风扇似乎代表了两种新型风扇,这可能与斜坡内盆地省的复杂结构有关。整个微型流域普遍存在大量运输沉积物(MTD)。受MTD影响的大面积区域也发生在大陆架上坡和Sigsbee悬崖东部的底部。活塞芯确认大多数MTD是泥石流,其特征是泥屑的大小,形状和颜色各不相同。大多数都具有泥泞的基质,但是在一些小盆地中也会出现沙屑流。一些岩心显示出变形,褶皱和断层,表明坍落或滑动沉积。东折断滑梯综合体是最大的MTD综合体,从架子边缘向下倾斜延伸,距得克萨斯州中部超过100公里。建筑群的西部是坍落度和/或滑块和泥石流。相比之下,该综合体东部的近端部分以现代的斜浊浊通道系统为特征。但是,大量的MTD位于河道堤坝的沉积物之下,并发生在综合体东部远端的海底。西格斯比深渊平原和布莱恩特东部东部出现了三个大的沉积物波迁移区域,它们似乎是由环流的循环形成的。沉积波也发生在Sigsbee悬崖的底部,与先前报道的侵蚀性沟壑有关。

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