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The role of sedimentation and natural compaction in a prograding delta: insights from the mega Mekong delta Vietnam

机译:沉积和自然压实作用在三角洲升级中的作用:越南巨型湄公河三角洲的见解

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摘要

The Vietnamese Mekong Delta was formed by rapid transgression during the second half of the Holocene by deposition of mainly unconsolidated, fine-grained (clayey) sediments undergoing high compaction rates. The natural subsidence can seriously impact the already vulnerable delta plain as its low elevation exposes the delta to global sea level rise, flooding, salinization. Human activities such as groundwater pumping, infrastructural loading, sand mining and dam construction have exacerbated the effects of natural consolidation. Here we present a novel modeling study that has allowed to reproduce the formation and evolution of the Mekong delta over the past 4000 years. Using an adaptive finite-element mesh, the model properly simulates accretion and natural consolidation characterizing the delta evolution. Large soil grain motion and the delayed dissipation of pore-water overpressure are accounted for. We find that natural compaction of Holocene deposits following delta evolution exceeds predicted values of absolute sea level rise. The unprecedented high rates (up to ~20 mm/yr) threaten the lower delta plain with permanent inundation and inevitably reduce the designed service life of flood defense structures along the coast. Total subsidence and sediment delivery to the delta plain will determine its future elevation and vulnerability to relative sea level rise.
机译:越南湄公河三角洲是由全新世后半期的快速侵袭形成的,这些沉积主要是经历了高压实率的未固结的细粒(粘土)沉积物。自然沉降会严重影响已经脆弱的三角洲平原,因为其低海拔使三角洲暴露于全球海平面上升,洪水和盐碱化的影响。诸如地下水抽取,基础设施负荷,采砂和大坝建设等人类活动加剧了自然固结的影响。在这里,我们提出了一项新颖的建模研究,该研究允许重现过去4000年中湄公河三角洲的形成和演化。使用自适应有限元网格,该模型可以正确模拟增生和自然固结,从而表征增量演化。考虑到大的土壤颗粒运动和孔隙水超压的延迟消散。我们发现,三角洲演化之后全新世沉积物的自然压实作用超过了绝对海平面上升的预测值。前所未有的高速率(高达每年约20毫米)威胁着下游三角洲平原,并造成永久性洪水泛滥,不可避免地缩短了沿海防洪结构的设计使用寿命。总沉降和沉积物向三角洲平原的输送将决定其未来的海拔和相对海平面上升的脆弱性。

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