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Deformation during terrane accretion in the Saint Elias orogen, Alaska

机译:阿拉斯加圣伊莱亚斯造山带地层增生期间的变形

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The Saint Elias orogen of southern Alaska and adjacent Canada is a complex belt of mountains formed by collision and accretion of the Yakutat terrane into the transition zone from transform faulting to subduction in the northeast Pacific. The orogen is an active analog for tectonic processes that formed much of the North American Cordillera, and is also an important site to study (1) the relationships between climate and tectonics, and (2) structures that generate large- to great-magnitude earthquakes. The Yakutat terrane is a fragment of the North American plate margin that is partly subducted beneath and partly accreted to the continental margin of southern Alaska. Interaction between the Yakutat terrane and the North American and Pacific plates causes significant differences in the style of deformation within the terrane. Deformation in the eastern part of the terrane is caused by strike-slip faulting along the Fairweather transform fault and by reverse faulting beneath the coastal mountains, but there is little deformation immediately offshore. The central part of the orogen is marked by thrusting of the Yakutat terrane beneath the North American plate along the Chugach–Saint Elias fault and development of a wide, thin-skinned fold-and-thrust belt. Strike-slip faulting in this segment may be localized in the hanging wall of the Chugach–Saint Elias fault, or dissipated by thrust faulting beneath a north-northeast–trending belt of active deformation that cuts obliquely across the eastern end of the fold-and-thrust belt. Superimposed folds with complex shapes and plunging hinge lines accommodate horizontal shortening and extension in the western part of the orogen, where the sedimentary cover of the Yakutat terrane is accreted into the upper plate of the Aleutian subduction zone. These three structural segments are separated by transverse tectonic boundaries that cut across the Yakutat terrane and also coincide with the courses of piedmont glaciers that flow from the topographic backbone of the Saint Elias Mountains onto the coastal plain. The Malaspina fault–Pamplona structural zone separates the eastern and central parts of the orogen and is marked by reverse faulting and folding. Onshore, most of this boundary is buried beneath the western or "Agassiz" lobe of the Malaspina piedmont glacier. The boundary between the central fold-and-thrust belt and western zone of superimposed folding lies beneath the middle and lower course of the Bering piedmont glacier.
机译:阿拉斯加南部和邻近的加拿大 的圣伊利亚斯造山带是由雅库塔特地层碰撞和积聚 到从transform 在东北太平洋俯冲俯冲。造山带 是构造过程的活跃类似物,形成了北美山脉的大部分 ,也是研究的重要场所 (1)气候与构造, 以及(2)产生大到特大地震的结构之间的关系。 雅库塔特地块是北美板块的一部分 边缘部分俯冲到阿拉斯加南部大陆边缘之下,并在其中增加的部分 。雅库塔特地层与北美和太平洋板块之间的相互作用会导致该地块内变形样式的显着差异。地貌东部的变形是由沿Fairweather变换的断层走滑断层和沿海山脉下方的反向断层引起的。但近海几乎没有变形。造山带中部 的特征是沿着Chugach–Saint Elias断裂和发育的雅库塔特地壳 在北美板块之下宽皮薄的折叠和推拉皮带 皮带。该段的走滑断层可能位于Chugach-Saint Elias断层的悬挂壁中, ,或者由北-北-东向下的逆冲断层消散。 > 主动变形带,该带倾斜地穿过褶皱-冲断带的东侧 。复杂 形状的叠合褶皱和铰链线不断下陷,在造山带的西部(雅库塔特地区的沉积物 覆盖层)适应了水平缩短和延伸地形被增加到阿留申俯冲带的上板 中。这三个结构段 被横向构造边界隔开,这些边界跨越了 雅库塔特地貌,并且与从Saint Elias山的地形主干到沿海平原。 Malaspina断层-潘普洛纳 构造带将 造山带的东部和中部分开,并以逆断层和褶皱为标志。在陆地上, 的大部分边界都埋在了Malaspina山麓冰川的西部或“ Agassiz” 波瓣下。 中央褶皱冲断带与叠加的 褶皱的西部区域之间的边界位于白令 piedmont冰川的中下部。

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  • 来源
    《GSA Bulletin》 |2004年第8期|771-787|共17页
  • 作者单位

    Department of Geology and Geophysics, University of Utah, 135 South, 1460 East, Room 719, Salt Lake City, Utah 84112-0111, USA;

    Department of Geology and Geophysics, University of New Orleans, 2000 Lakeshore Drive, New Orleans, Louisiana 70148, USA;

    U.S. Geological Survey, 345 Middlefield Road, Menlo Park, California 94025, USA;

    Department of Geology and Geophysics, University of New Orleans, New Orleans, Louisiana, USA;

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