首页> 外文学位 >Investigating coarse-grained glacio-fluvial outwash with Ground Penetrating Radar (GPR), Harpursville, Susquehanna Valley, New York.
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Investigating coarse-grained glacio-fluvial outwash with Ground Penetrating Radar (GPR), Harpursville, Susquehanna Valley, New York.

机译:纽约州萨斯奎哈那谷地Harpursville的探地雷达(GPR)研究了粗粒度的冰河冲积物。

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摘要

The relationship between Ground Penetrating Radar (GPR), Earth Resistivity Ground Imaging (ERGI) and sedimentary facies was examined in coarse-grained glacio-fluvial outwash exposed in two quarries in the Susquehanna River Valley between Harpursville and Windsor, NY. GPR profiles, ERGI profiles and outcrop studies were conducted along exposed quarry faces. GPR Common Offset Profiles (COP) were taken with 110, 225, and 450 MHz antennae along the top of quarry faces, and processed with Seismic Unix software that was modified for application at the scale of GPR-reflections. Both GPR and ERGI were able to image large-scale geometries of the deposits and GPR was able to image reflections that correspond to large-scale inclined (cross) strata. Both geophysical methods were not able to image all scales of sedimentary stratification, large, medium and small, needed to adequately interpret depositional environments. Outcrop studies combined with GPR and ERGI reveal deposits consisting of multiple superimposed scales of stratification relating to the migration of bars, dunes bedload sheets and ripples. Geometry, texture and orientation of sedimentary structures indicate the deposits were formed in a braided river and Gilbert-type deltaic environment, both common in proglacial valley deposits. The success of GPR and ERGI investigations in delineating the sedimentary structure of silt to cobble sized outwash sediments strongly depends on the electrical contrasts of sedimentary structures. Specifically, the water content of the deposits, the amount of silt, and the presence of point scatterers within the deposits controls resolution attained in a GPR or ERGI investigation.
机译:在位于萨斯奎汉纳河谷的两个采石场(位于哈珀斯维尔和纽约州温莎之间)暴露的粗粒冰川-河水冲刷物中,研究了探地雷达(GPR),地电阻率地面成像(ERGI)与沉积相之间的关系。 GPR剖面,ERGI剖面和露头研究是沿着裸露的采石场进行的。 GPR通用偏移剖面(COP)是沿采石场顶部使用110、225和450 MHz天线获取的,并使用Seismic Unix软件进行了处理,该软件已针对GPR反射的规模进行了修改。 GPR和ERGI都可以对沉积物的大尺寸几何图像进行成像,而GPR则可以对与大规模倾斜(交叉)地层相对应的反射图像进行成像。两种地球物理方法都无法对充分解释沉积环境所需的所有规模的沉积分层(大,中,小)成像。露头研究与GPR和ERGI相结合,揭示了由多层叠加的分层组成的沉积物,这些分层与钢筋,沙丘的床单和波纹的迁移有关。沉积物结构的几何形状,质地和方向表明,这些沉积物是在辫状河和吉尔伯特型三角洲环境中形成的,这两种沉积物都常见于冰川谷沉积物中。 GPR和ERGI研究成功地将粉砂的沉积结构描述为卵石大小的冲刷沉积物,这在很大程度上取决于沉积结构的电学对比。具体来说,矿床中的水含量,淤泥量以及矿床中点状散射的存在控制着GPR或ERGI研究获得的分辨率。

著录项

  • 作者

    Wells, Colleen M. E.;

  • 作者单位

    State University of New York at Binghamton.$bGeological Sciences and Environmental Studies.;

  • 授予单位 State University of New York at Binghamton.$bGeological Sciences and Environmental Studies.;
  • 学科 Geology.; Geophysics.
  • 学位 M.S.
  • 年度 2007
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;地球物理学;
  • 关键词

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