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Marine Geophysical Investigation of the Chain Fracture Zone in the Equatorial Atlantic From the PI‐LAB Experiment

机译:通过PI-LAB实验对赤道大西洋链断裂带的海洋地球物理研究

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摘要

The Chain Fracture Zone is a 300‐km‐long transform fault that offsets the Mid‐Atlantic Ridge. We analyzed new multibeam bathymetry, backscatter, gravity, and magnetic data with 100% multibeam bathymetric data over the active transform valley and adjacent spreading segments as part of the Passive Imaging of the Lithosphere Asthenosphere Boundary (PI‐LAB) Experiment. Analyses of these data sets allow us to determine the history and mode of crustal formation and the tectonic evolution of the transform system and adjacent ridges over the past 20 Myr. We model the total field magnetic anomaly to determine the age of the crust along the northern ridge segment to better establish the timing of the variations in the seafloor fabric and the tectonic‐magmatic history of the region. Within the active transform fault zone, we observe four distinct positive flower structures with several en échelon fault scarps visible in the backscatter data. We find up to −10 mGal residual Mantle Bouguer Anomaly in the region of the largest positive flower structure within the transform zone suggesting crustal thickening relative to the crustal thinning typically observed in fracture zones in the Atlantic. The extensional/compressional features observed in the Chain Transform are less pronounced than those observed further north in the Vema, St. Paul, and Romanche and may be due to local ridge segment adjustments.
机译:链断裂带是一个300公里长的转换断层,它抵消了大西洋中脊。我们对新的多波束测深,背向散射,重力和磁学数据进行了分析,并将其作为活动岩石谷和邻近扩展段上100%的多波束测深数据,作为岩石圈软流层边界(PI‐LAB)实验的一部分。通过对这些数据集的分析,我们可以确定过去20多年的地壳形成的历史和模式以及转换系统和邻近山脊的构造演化。我们对整个磁场异常进行建模,以确定沿北脊段的地壳年龄,以便更好地确定海底构造变化的时间和该地区的构造-岩浆历史。在活动的变形断层带中,我们观察到四个独特的正花结构,在反向散射数据中可以看到几个恩切朗断裂带。我们在转换区内最大的正花结构区域中发现高达-10 mGal的残留地幔布格异常,表明地壳相对于大西洋断裂带中通常观察到的地壳变薄而言变厚。与在Vema,St。Paul和Romanche的更北端观察到的相比,在Chain Transform中观察到的拉伸/压缩特征不那么明显,这可能是由于局部脊线段调整所致。

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