How do submarine landslides disintegrate and form long run-out turbidity currents in the deep ocean, and how erosive are these flows?
How do submarine landslides disintegrate and form long run-out turbidity currents in the deep ocean, and how erosive are these flows?
批准号:
NE/J012955/1
负责人:
Russell Wynn
金额:
$1.17万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2013
资助国家:
英国
项目状态:
已结题
起止时间:
2013 至 --
中文摘要
海底滑坡是深海常见的地质特征。它们出现在一系列环境中,从陡峭的火山岛侧面到缓缓倾斜的沉积物覆盖的开阔斜坡。一些海底滑坡在下坡过程中崩解,转化为沉积物-重力流,可以在相对平坦的海底(1o)上将大量沉积物输送数百公里。海底滑坡和沉积物重力流是全球沉积物从大陆架运往深海的主要过程,并对不断增加的全球海底基础设施网络,如石油/天然气管道和电信电缆构成重大威胁。海底山体滑坡也会引发灾难性的海啸。例如,大约8200年前,挪威近海的巨型斯托雷加滑行引发了一场海啸,摧毁了从挪威到苏格兰的沿海社区。此外,富含沙子的水流形成了许多世界上最大的石油和天然气储藏,而富含泥浆的水流可能会在全球范围内将大量有机碳封存在深海中。要提高我们对滑坡和泥沙-重力流灾害的了解,需要来自过去事件的现场数据;这些数据提供了对体积和复发间隔等重要参数的洞察。这些数据还有助于我们模拟滑坡产生的海啸并评估相关的风险。在这项研究中,我们建议生成有史以来第一个跟踪大规模海底滑坡及其从源到汇的沉积物-重力流的现场数据集。我们将重点介绍摩洛哥西北非洲近海的浊流系统,在那里,世界上最大的泥沙重力流能够将100千米的泥沙输送到2000公里的距离。利用过去30年从整个沉积区收集的200个浅层沉积物岩心的数据集,确定了几个地质上最近(过去200,000年)的水流的数量、来源区域和时间。以前的工作表明,这些水流大多来自阿加迪尔峡谷上游及其周围的山体滑坡(尚未绘制地图),阿加迪尔峡谷是世界上最大的峡谷之一,长450公里,宽达30公里,深达1250米。阿加迪尔峡谷上游4000米水深以上的大部分地区尚未勘探,因此我们计划使用地球物理工具和沉积物岩心绘制和采样该地区的滑坡。新的结果将使我们能够进行一种新的“质量平衡”分析,其中我们可以量化1)在最初的滑坡期间疏散的物质的体积,2)失败物质的分解速度和程度,3)由此产生的水流带走的物质的体积,以及4)水流中合并的被侵蚀的海底沉积物的体积。这一独特的定量野外数据集将使我们能够解决三个重要的科学问题:1)大型海底滑坡多快地崩解成长期外流的泥石流,这个过程是如何受到斜坡形状的影响的?2)滑坡清除失败物质的效率如何,即滑坡泥石流沉积在斜坡上的比例有多大,有多少转化为流向远距离输送的水流?3)通过海底侵蚀将多少泥沙并入水流中,这种侵蚀主要发生在哪里?这些结果将对NOC和NERC社区中的其他人正在进行的滑坡-海啸和沉积物重力流建模至关重要。并将改进对相关全球地质灾害的评估。
英文摘要
Submarine landslides are a common geological feature in the deep ocean. They occur in a range of environments, from steep volcanic island flanks to areas of gently sloping sediment-covered open slope. Some submarine landslides disintegrate during their passage downslope and transform into sediment-gravity flows that can transport huge volumes of sediment for hundreds of kilometres over relatively flat ocean floor (<1o). Submarine landslides and sediment-gravity flows are the dominant process for global sediment transport from the continental shelf to the deep ocean, and are a major threat to an increasing worldwide network of seafloor infrastructure, e.g. oil/gas pipelines and telecommunications cables. Submarine landslides can also generate catastrophic tsunamis. For example, the giant Storegga Slide offshore Norway about 8200 years ago produced a tsunami that devastated coastal communities from Norway to Scotland. In addition, the deposits of sand-rich flows form many of the World's largest oil and gas reservoirs, while mud-rich flows may sequester globally significant volumes of organic carbon in the deep ocean. Improving our understanding of landslide and sediment-gravity flow hazards requires field data from past events; these data provide insights into important parameters such as volume and recurrence interval. These data also help us to model landslide-generated tsunamis and assess the associated risks.In this study we propose to generate the first ever field dataset tracing a large-scale submarine landslide and its associated sediment-gravity flow from source-to-sink. We will focus on the Moroccan Turbidite System offshore NW Africa, where the World's largest sediment-gravity flows were able to transport >100 km3 of sediment across distances up to 2000 km. The volume, source area and timing of several geologically recent (last 200,000 years) flows has been identified, using a dataset of >200 shallow sediment cores collected from across the entire depositional area over the last 30 years. Previous work has shown that most of these flows originated from (as yet unmapped) landslides in and around upper Agadir Canyon, which is one of the largest canyons in the World at 450 km long, up to 30 km wide and 1250 m deep. Most of upper Agadir Canyon above 4000 m water depth is unexplored, so we plan to map and sample landslides in this area using geophysical tools and sediment corers. The new results will allow us to undertake a novel 'mass balance' analysis, where we can quantify 1) the volume of material evacuated during the initial landslide, 2) the rate and extent of disintegration of failed material, 3) the volume of material removed by the resulting flow, and 4) the volume of eroded seafloor sediment incorporated in the flow. This unique quantitative field dataset will allow us to tackle three important science questions:1) How quickly do large submarine landslides disintegrate into long run-out sediment flows, and how is this process influenced by shape of the slope?2) How efficiently do landslides remove failed material, i.e. what proportion of landslide debris is deposited on the slope and how much transforms into a flow that is transported distally?3) How much sediment is incorporated into the flow through seafloor erosion, and where does most of this erosion take place?The results will be vital for ongoing landslide-tsunami and sediment gravity-flow modeling being undertaken by NOC and others in the NERC community, and will improve assessment of associated global geohazards.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
Submarine Mass Movements and their Consequences - 7th International Symposium
潜艇质量运动及其后果 - 第七届国际研讨会
DOI:
10.1007/978-3-319-20979-1_14
发表时间:
2016
期刊:
影响因子:
--
作者:
[Krastel S]
通讯作者:
Krastel S
The Eugen Seibold coral mounds offshore western Morocco: oceanographic and bathymetric boundary conditions of a newly discovered cold-water coral province
摩洛哥西部近海的尤金·塞博尔德珊瑚丘:新发现的冷水珊瑚省的海洋学和测深边界条件
DOI:
10.1007/s00367-015-0405-7
发表时间:
2015
期刊:
Geo-Marine Letters
影响因子:
2.1
作者:
[Glogowski S]
通讯作者:
Glogowski S
Submarine Mass Movements and Their Consequences - 6th International Symposium
潜艇群体运动及其后果 - 第六届国际研讨会
DOI:
10.1007/978-3-319-00972-8_41
发表时间:
2014
期刊:
影响因子:
--
作者:
[Krastel S]
通讯作者:
Krastel S
Flow dynamics and sedimentation in an active submarine channel: a process-product approach
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批准号:NE/F020279/1
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项目类别:Research Grant
-
资助金额:$5.94万
-
财政年份:2010
-
负责人:Russell Wynn
-
依托单位:
国内基金
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