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Juan de Fuca subducting plate geometry and intraslab seismicity.

机译:胡安·德富卡俯冲板的几何形状和板内地震活动性。

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摘要

The geometry of the subducting Juan de Fuca plate beneath the Olympic Peninsula of Western Washington is modeled using wide-angle P mP reflections off the slab Moho. Active-source reflection data collected from the 1998 WET SHIPS project were augmented with earthquake-source reflections to increase the spatial distribution of reflection points over the Juan de Fuca arch structure. Approximately 1100 WET SHIPS and 500 earthquake-source reflections were used in our inversion. PmP travel-times from active sources and PmP--P differential times from earthquakes sources were simultaneously inverted for slab-Moho depth, using a combination of finite-difference and 3-D ray-tracing methods. Results show a tighter arch structure than in previous models with the shallowest dipping portion (∼ 10° dip) concentrated directly beneath the Olympic Mountains. Comparison of our slab model to intraslab earthquake hypocenters reveals a southwest-northeast trending lineament of seismicity situated just beneath the subducted Moho in the slab mantle. We interpret this seismicity as the manifestation of a subducting pseudofault along which high levels of upper mantle hydration occurred prior to subduction. Most of the remaining intraslab seismicity is concentrated on the northern and southern flanks of the arch and is likely due to increased strain rates in these regions from the combined effect of slab arch and subsequent steepening of slab dip. Earthquakes in the northern region appear to occur above the slab Moho in the crust of the oceanic plate, while uncertainties in earthquake locations and 3-D velocities in the southern region prevent an unambiguous interpretation at this time. The southern patch is especially important as it contains 3 large (magnitude 6.5 to 7.1) earthquakes during that past 60 years, including the 2001, Mw 6.8, Nisqually earthquake. Earthquakes occurring between 45 and 65 km depth in these two regions also systematically produce an anomalous low-frequency, high-amplitude secondary P arrival on updip stations with an average horizontal velocity of 6.0 km/s. We identified 13 earthquakes producing this anomalous phase. These arrivals are typically observed for rays that pass under the Olympic Mountains. 2-D ray-tracing was used to interpret travel times of these arrivals as S-to-P conversions at the interface between the top of the subducted oceanic crust and mantle wedge. Efficient conversion from S-to-P required high velocity oceanic crust and an anomalously low velocity mantle wedge. We therefore interpret this secondary phase to indicate eclogitization of the oceanic crust and serpentinization of the mantle wedge in the vicinity of earthquakes producing the phase. Along paths where these phases are observed, 3-D tomography models exhibit a dipping low-velocity zone formed by accretionary sediments underthrusting high-velocity Eocene volcanics. 2-D ray tracing indicates that this acts as a wave guide along which high-amplitude, low-frequency waves can propagate great distances to the seismic stations.
机译:在华盛顿西部半岛奥林匹克半岛下方俯冲的胡安·德·富卡板块的几何形状是利用板块莫霍面附近的广角P mP反射建模的。从1998年WET SHIPS项目收集的主动源反射数据增加了地震源反射,以增加Juan de Fuca拱结构上反射点的空间分布。在我们的反演中,大约使用了1100次WET SHIPS和500次地震源反射。结合有限差分法和3-D射线追踪方法,同时将活动源的PmP传播时间和地震源的PmP--P差分时间同时反演为平板莫霍深度。结果表明,拱形结构比以前的模型更紧密,最浅的倾斜部分(约10°倾斜)集中在奥林匹克山脉的正下方。将我们的平板模型与平板内地震震源进行比较,可以发现板状地幔俯冲莫霍面正下方的西南-东北向地震活动趋势线。我们将这种地震活动解释为俯冲的假断层的表现,沿着俯冲的假断层在俯冲之前就发生了高水平的上地幔水化作用。其余大部分板内地震活动都集中在拱的南北两侧,这很可能是由于板拱和随后的板倾角陡增共同作用,这些区域的应变率增加所致。北部地区的地震似乎发生在大洋板地壳平板莫霍面上方,而南部地区的地震位置和3-D速度的不确定性阻止了目前的明确解释。南部地区特别重要,因为它在过去60年中发生了3次大地震(6.5至7.1级),包括2001年的6.8兆瓦,尼斯奎利地震。在这两个地区,深度在45至65 km之间发生的地震也系统地产生了低频,高幅次要P异常到达上倾站,平均水平速度为6.0 km / s。我们确定了发生此异常阶段的13次地震。通常会观察到这些到达的光线穿过奥林匹克山脉下方。在俯冲的洋壳顶部和地幔楔之间的界面处,使用二维射线追踪将这些到达的传播时间解释为S-P转换。从S到P的有效转换需要高速洋壳和异常低速地幔楔。因此,我们将这个次生阶段解释为表明在发生该阶段的地震附近,洋壳的胶结化和地幔楔的蛇形化。沿着观察到这些相的路径,3-D层析成像模型显示出由低速带形成的低速带,这些低速带是由在高速始新世火山喷发作用下沉积的沉积物形成的。二维射线追踪表明,这是一个波导,高振幅,低频波可以沿着该波导传播很远的距离到地震台。

著录项

  • 作者

    Medema, Guy Frederick.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

  • 入库时间 2022-08-17 11:40:34

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