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Genetic Relations Between the Aves Ridge and the Grenada Back-Arc Basin, East Caribbean Sea

机译:Aves Ridge与Grenada Back-Cram Basin,东加勒比海的遗传关系

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The Grenada Basin separates the active Lesser Antilles Arc from the Aves Ridge, described as a Cretaceous-Paleocene remnant of the "Great Arc of the Caribbean." Although various tectonic models have been proposed for the opening of the Grenada Basin, the data on which they rely are insufficient to reach definitive conclusions. This study presents, a large set of deep-penetrating multichannel seismic reflection data and dredge samples acquired during the GARANTI cruise in 2017. By combining them with published data including seismic reflection data, wide-angle seismic data, well data and dredges, we refine the understanding of the basement structure, depositional history, tectonic deformation and vertical motions of the Grenada Basin and its margins as follows: (1) rifting occurred during the late Paleocene-early Eocene in a NW-SE direction and led to seafloor spreading during the middle Eocene; (2) this newly formed oceanic crust now extends across the eastern Grenada Basin between the latitude of Grenada and Martinique; (3) asymmetrical pre-Miocene depocenters support the hypothesis that the southern Grenada Basin originally extended beneath the present-day southern Lesser Antilles Arc and probably partly into the present-day forearc before the late Oligocene-Miocene rise of the Lesser Antilles Arc; and (4) the Aves Ridge has subsided along with the Grenada Basin since at least the middle Eocene, with a general subsidence slowdown or even an uplift during the late Oligocene, and a sharp acceleration on its southeastern flank during the late Miocene. Until this acceleration of subsidence, several bathymetric highs remained shallow enough to develop carbonate platforms.
机译:格林纳达盆地将活跃的小安的列斯群岛弧与阿维斯海脊分开,阿维斯海脊被描述为“加勒比大弧”的白垩纪-古新世遗迹尽管已经提出了格林纳达盆地开放的各种构造模型,但它们所依赖的数据不足以得出明确结论。本研究提供了2017年加兰蒂邮轮期间获取的大量深穿透多通道地震反射数据和疏浚样本。通过将它们与已发布的数据(包括地震反射数据、广角地震数据、钻井数据和挖泥船)相结合,我们完善了对基底结构、沉积历史、,格林纳达盆地及其边缘的构造变形和垂直运动如下:(1)古新世晚期-始新世早期发生了NW-SE方向的裂谷作用,并在始新世中期导致海底扩张;(2) 新形成的洋壳现在横跨格林纳达和马提尼克纬度之间的格林纳达盆地东部;(3) 不对称的前中新世沉积中心支持这样的假设,即格林纳达盆地南部最初延伸至现今的南部小安的列斯弧之下,并可能在晚渐新世中新世小安的列斯弧隆起之前部分延伸至现今的前弧;(4)至少自始新世中期以来,埃夫斯海脊已随格林纳达盆地下沉,渐新世晚期沉降总体放缓,甚至出现隆起,中新世晚期东南侧急剧加速。在这种沉降加速之前,几个等深高地仍然很浅,足以形成碳酸盐岩台地。

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