首页> 外文期刊>Bulletin of the Seismological Society of America >High-resolution seismic reflection imaging of growth folding and shallow faults beneath the Southern Puget Lowland, Washington State
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High-resolution seismic reflection imaging of growth folding and shallow faults beneath the Southern Puget Lowland, Washington State

机译:华盛顿州南普吉特低地以下的生长褶皱和浅层断层的高分辨率地震反射成像

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Marine seismic reflection data from southern Puget Sound, Washington, were collected to investigate the nature of shallow structures associated with the Tacoma fault zone and the Olympia structure. Growth folding and probable Holocene surface deformation were imaged within the Tacoma fault zone beneath Case and Carr Inlets. Shallow faults near potential field anomalies associated with the Olympia structure were imaged beneath Budd and Eld Inlets. Beneath Case Inlet, the Tacoma fault zone includes an ~350-m wide section of south-dipping strata forming the upper part of a fold (kink band) coincident with the southern edge of an uplifted shoreline terrace. An ~2 m change in the depth of the water bottom, onlapping postglacial sediments, and increasing stratal dips with increasing depth are consistent with late Pleistocene to Holocene postglacial growth folding above a blind fault. Geologic data across a topographic lineament on nearby land indicate recent uplift of late Holocene age. Profiles acquired in Carr Inlet 10 km to the east of Case Inlet showed late Pleistocene or Holocene faulting at one location with ~3 to 4 m of vertical displacement, south side up. North of this fault the data show several other disruptions and reflector terminations that could mark faults within the broad Tacoma fault zone. Seismic reflection profiles across part of the Olympia structure beneath southern Puget Sound show two apparent faults about 160 m apart having 1 to 2 m of displacement of subhorizontal bedding. Directly beneath one of these faults, a dipping reflector that may mark the base of a glacial channel shows the opposite sense of throw, suggesting strike-slip motion. Deeper seismic reflection profiles show disrupted strata beneath these faults but little apparent vertical offset, consistent with strike-slip faulting. These faults and folds indicate that the Tacoma fault and Olympia structure include active structures with probable postglacial motion.
机译:收集了来自华盛顿州普吉特海湾南部的海洋地震反射数据,以调查与塔科马断裂带和奥林匹亚构造有关的浅层构造的性质。在Case和Carr入口下方的Tacoma断层带内成像了生长折叠和可能全新世的表面变形。与奥林匹亚结构有关的潜在场异常附近的浅层断层在Budd和Eld入口下方成像。塔科马断层带下方的塔科马断裂带包括一个南倾层的〜350 m宽部分,形成了褶皱(扭结带)的上部,与隆起的海岸线阶地的南部边缘重合。水底深度变化〜2 m,冰川后沉积物重叠,且随着深度增加地层倾角增加,这与晚更新世至全新世的冰川后生长折叠在盲断层之上是一致的。邻近土地上地形地貌的地质数据表明,晚全新世时代的近期隆升。在Case入口以东10公里处的Carr入口处获得的剖面显示,晚更新世或全新世断层在一个位置,南侧朝上,垂直位移约3-4m。在该断层以北的数据显示,还有其他几次破坏和反射器的终止,可能标志着塔科马断层范围内的断层。横跨普吉特海湾南部奥林匹亚部分结构的地震反射剖面显示,两个明显的断层相距约160 m,其水平下层理位移为1-2 m。在这些断层之一的正下方,可能标志着冰河通道底部的浸入反射器显示出相反的投掷感,表明走滑运动。较深的地震反射剖面显示出这些断裂之下的地层被破坏,但几乎没有明显的垂直偏移,与走滑断层一致。这些断层和褶皱表明塔科马断层和奥林匹亚构造包括可能的冰川后运动的活动构造。

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