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首页> 外文期刊>GSA Bulletin >Effect of volcanic activity on fluvial-deltaic sedimentation in a modern arc-trench gap, southwestern Guatemala
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Effect of volcanic activity on fluvial-deltaic sedimentation in a modern arc-trench gap, southwestern Guatemala

机译:危地马拉西南部弧弧隙中火山活动对河流三角洲沉积的影响

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摘要

The Pacific coastal plain in Central America forms the subaerial part of an arc-trench gap that is terminated as much as 60 km inland from the Pacific shoreline by the steep slopes of a row of active Quaternary volcanoes. The Samalá fluvial-deltaic system, which heads inland from the volcanic arc, displays a combination of all of the Holocene features (frequently shifting braided channel, flanking elongate dendritically branched lakes, and a high-destructive wave-dominated arcuate delta) that characterize the coastal plain in southwestern Guatemala. Historical records indicate that the catastrophic eruption of Santa María Volcano in 1902 dramatically increased the amount of sediment supplied to the Samalá River. Within a few years, deposition of sand and gravel raised the river bed 10 to 15 m, blocking the drainage of the river's tributaries to produce flanking lakes and allowing the river to easily shift its channel. Frequently, the braided system was diverted laterally into a flanking lake, interrupting deposition of organic-rich muds and locally filling the lake with prograding deltaic deposits. Continued channel shifting and aggradation of sand and gravel on the lower 25 km of the coastal plain have contributed to the growth of an elongate alluvial fan that probably originated during the Pleistocene. Contemporaneous with aggradation of the fluvial system, an elongate deltaic platform prograded about 7 km seaward, between 1902 and 1922, in response to the deposition of approximately 4 km3 of deltaic sediments. However, with waning sediment supply, the delta entered a destructive phase, and sands were redistributed laterally to prograding shoreface and beach environments, developing the present arcuate shoreline. The position of the arcuate shoreline has remained essentially unchanged since sometime before 1947; the volume of sediment derived from the active Santiaguito–Santa María volcanic complex and contributed to the shore zone by the Samalá River has been sufficient, since that time, to prevent further shoreline retreat. A new constructive phase of deltation would begin in the event of another great eruption. Fluvial-deltaic sedimentation in arc-trench geologic settings, under conditions of torrential rainfall, differs significantly from fluvial-deltaic sedimentation in other geologic settings. This difference may be attributed to periodic catastrophic volcanic eruptions, which locally produce high-relief unvegetated slopes and allow extremely high local rates of erosion and subsequent fluvial-deltaic sedimentation.
机译:中美洲的太平洋沿岸平原形成弧形沟缝隙的海底 部分,该弧槽缝隙从太平洋海岸线向内陆延伸了多达60 km 的陡峭斜坡。活动第四纪火山的第 行。从火山弧向内陆前进的Samalá河流三角洲 系统显示所有全新世特征的 组合(经常移动 辫状河道,位于细长的树枝状分枝湖的两侧, 和高破坏性的波浪为主的弧形三角洲),这些特征表征了危地马拉西南沿海的平原。历史记录 表明,1902年圣玛丽亚火山(santaMaría Volcano)的灾难性喷发大大增加了向萨马拉河提供的沉积物 。几年之内,沙子和砾石的沉积物 将河床抬高了10至15 m,阻塞了河支流的排水,从而产生了侧翼 湖泊,让河流轻松地转移其河道。通常, 辫状系统被横向转移到侧翼的湖泊中, 中断了富含有机物的泥浆的沉积,并在局部沉积了 的三角洲沉积物。沿海平原下25 km处持续的通道 砂砾移动和凝结,导致了 长冲积扇的生长, 与河床系统的侵蚀同时发生,一个细长的 deltaic平台在1902 到1922年之间向海前进约7 km,响应约4 km 3 三角洲沉积物的沉积。但是,随着沉积物供应量的减少,三角洲进入破坏阶段,沙粒被重新分配到侧向以改善海岸和海滩环境,从而发展了目前的状况。弧形的海岸线。自1947年之前的某个时间以来,弧形海岸线 的位置基本保持不变; 来自活跃的Santiaguito–Santa 玛丽亚火山复合体的沉积物量从那时起,萨马拉河对海岸带 的贡献就足够了, 可以防止海岸线进一步退缩。如果发生另一次大喷发,则将开始新的建设性阶段 弧槽地质环境中的河三角洲沉积, 暴雨的数量,与其他地质环境中的河流-三角洲沉积物显着不同。 该差异可能归因于周期性的灾难性火山 喷发产生高起伏的无植被斜坡 ,并允许极高的局部侵蚀速率和随后的 河流三角洲沉积。

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  • 来源
    《GSA Bulletin》 |1979年第9期|827-838|共12页
  • 作者单位

    Department of Geology, Western Michigan University, Kalamazoo, Michigan 49008;

    Department of Geography, Western Michigan University, Kalamazoo, Michigan 49008;

    Division of Earth and Physical Sciences, University of Texas at San Antonio, San Antonio, Texas 78285;

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