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首页> 外文期刊>GSA Bulletin >Isostatic rebound, active faulting, and potential geomorphic effects in the Lake Lahontan basin, Nevada and California
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Isostatic rebound, active faulting, and potential geomorphic effects in the Lake Lahontan basin, Nevada and California

机译:内洪达州和加利福尼亚州拉洪坦湖盆地的等静回弹,活动断层和潜在的地貌作用

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摘要

The high shoreline of the late Pleistocene (Sehoo) lake in the Lahontan basin is used as a passive strain marker to delineate the magnitude and character of regional deformation since 13 ka. The elevations of 170 high shoreline sites document that the once horizontal (equipotential) shoreline, which traverses almost 4° of latitude and 3° of longitude, is now deflected vertically about 22 m. Most of the deformation is attributed to isostatic rebound, but a small down-to-the-north regional tilting also appears to contribute to the overall deformation pattern. Active faults locally offset the high shoreline, but cannot explain the regional upwarping attributed to isostatic rebound since 13 ka. Preliminary models of the rebound yield an upper mantle viscosity of 1018 Pa s that implies a Maxwell relaxation time of about 300 yr. The rapid Earth response, coupled with the rapid fall in lake level at the end of Pleistocene time, may have acted to divert some of the major rivers flowing into the basin from one terminal subbasin to another. The regional deformation caused by the rebound may also have acted to control the present location of Honey Lake. These shoreline data, therefore, support the potential for a link between climate change, deep Earth processes, and surficial processes.
机译: Lahontan盆地晚更新世(Sehoo)湖的高海岸线被用作被动应变标记来描绘 自13 以来区域变形的幅度和特征 ka。 170个高海岸线站点的海拔高度记录了 曾经横过 近纬度4度和经度3°的水平(等势)海岸线,现在已偏转 垂直约22 m。大部分变形 归因于等静回弹,但是从小到北的区域 倾斜也似乎有助于整体变形 模式。活动断层局部抵消了高海岸线,但是 无法解释自13 ka以来由于等静压 回弹所引起的区域翘曲。回弹屈服 上地幔粘度为10 18 Pa s的初步模型,这表明麦克斯韦 松弛时间约为300年。地球的快速响应,再加上更新世 时间结束时湖泊水位的迅速下降,可能已经导致了部分主要河流的流动 变形也可能起到了控制 蜂蜜湖目前位置的作用。因此,这些海岸线数据 支持在气候变化,深部 地球过程和表面过程之间建立联系。

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  • 来源
    《GSA Bulletin》 |1999年第12期|1739-1756|共18页
  • 作者单位

    Center for Neotectonic Studies and Department of Geological Sciences, University of Nevada, Reno, Nevada 89557-0135;

    Center for Neotectonic Studies and Department of Geological Sciences, University of Nevada, Reno, Nevada 89557-0135;

    Institute for Geophysics and Planetary Physics, Scripps Institution of Oceanography, University of California–San Diego, La Jolla, California 92093-0208;

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