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Sedimentology, structure and age estimate of five continental slope submarine landslides, eastern Australia

机译:澳大利亚东部五种大陆斜坡海底滑坡的沉积学,结构和年龄估算

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Sedimentological and accelerator mass spectrometry (AMS) C-14 data provide estimates of the structure and age of five submarine landslides (approximate to 0.4-3 km(3)) present on eastern Australia's continental slope between Noosa Heads and Yamba. Dating of the post-slide conformably deposited sediment indicates sediment accumulation rates between 0.017 m ka(-1) and 0.2 m ka(-1), which is consistent with previous estimates reported for this area. Boundary surfaces were identified in five continental slope cores at depths of 0.8 to 2.2m below the present-day seafloor. Boundary surfaces present as a sharp colour-change across the surface, discernible but small increases in sediment stiffness, a slight increase in sediment bulk density of 0.1 g cm(-3), and distinct gaps in AMS C-14 ages of at least 25 ka. Boundary surfaces are interpreted to represent a slide plane detachment surface but are not necessarily the only ones or even the major ones. Sub-bottom profiler records indicate that: (1) the youngest identifiable sediment reflectors upslope from three submarine landslides terminate on and are truncated by slide rupture surfaces; (2) there is no obvious evidence for a post-slide sediment layer draped over, or burying, slide ruptures or exposed slide detachment surfaces; and (3) the boundary surfaces identified within the cores are unlikely to be near-surface slide surfaces within an overall larger en masse dislocation. These findings suggest that these submarine landslides are geologically recent (<25 ka), and that the boundary surfaces are either: (a) an erosional features that developed after the landslide, in which case the boundary surface age provides a minimum age for the landslide; or (b) detachment surfaces from which slabs of near-surface sediment were removed during landsliding, in which case the age of the sediment above the boundary surface indicates the approximate age of landsliding. While an earthquake-triggering mechanism is favoured for the initiation of submarine landslides on the eastern Australian margin, further evidence is required to confirm this interpretation.
机译:沉积学和加速器质谱(AMS)C-14数据提供了在澳大利亚东部Noosa Heads和Yamba之间的大陆斜坡上存在的五个海底滑坡的结构和年龄(大约0.4-3 km(3))的估计。滑动后一致沉积的沉积物的年代表明沉积物的沉积速率在0.017 m ka(-1)和0.2 m ka(-1)之间,这与该地区先前报道的估计是一致的。在目前海底以下0.8至2.2m的深度的五个大陆斜坡岩心中发现了边界面。边界表面在整个表面上呈现出急剧的颜色变化,可辨认但较小的沉积物刚度增加,沉积物堆积密度略微增加了0.1 g cm(-3),并且在AMS C-14年龄至少25岁时存在明显的间隙K a。边界表面被解释为代表滑动面分离表面,但不一定是唯一的表面,甚至不一定是主要的表面。亚底剖面仪记录表明:(1)来自三个海底滑坡的最年轻的可识别的沉积物反射器上坡终止于并被滑动破裂面截断; (2)没有明显的证据表明滑动后的沉积物层覆盖或掩埋,滑动破裂或暴露的滑动脱离表面; (3)在整体较大的整体位错中,在岩心中确定的边界面不太可能是近表面的滑动面。这些发现表明,这些海底滑坡是地质上最近的(<25 ka),并且边界面是:(a)滑坡后形成的侵蚀特征,在这种情况下,边界面年龄为滑坡提供了最小年龄。 ; (b)在滑坡过程中除去近地面沉积物板的分离面,在这种情况下,边界表面以上的沉积物年龄表明滑坡的近似年龄。尽管地震触发机制被认为有利于在澳大利亚东部边缘引发海底滑坡,但还需要进一步的证据来证实这一解释。

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