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首页> 外文期刊>Journal of Applied Geophysics >GPR to constrain ERT data inversion in cavity searching: Theoretical and practical applications in archeology
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GPR to constrain ERT data inversion in cavity searching: Theoretical and practical applications in archeology

机译:GPR约束腔搜索中的ERT数据反演:考古学的理论和实际应用

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摘要

I used theoretical forward models to show that a cavity embedded in a stratified sedimentary sequence can induce an equivalence problem in the ERT data inversion. Conductive top soil increases the misfit between the ground feature and the ERT model. The misfit depends on array and stratigraphy sequences. The latter induce an equivalence problem that manifests itself as wrong cavity depth positioning. The misfit is greater in the data acquired with Schlumberger array than with dipole-dipole.The ambiguity of ERT data inversion problems was tested in the detection of cavities linked to an 8th-6th century B.C. Sabine tomb, 3. m wide × 3. m long × 2. m high, excavated from a shaly gray volcanic ash (cinerite) layer covered by semi-lithoid tuff and top soil layers. In the real study I reduced the ambiguity in the inverse problem of ERT data using a priori information on geometry and resistivity of the cavity. The constrains were carried out from georadar data acquired with 80 and 200. MHz antenna. I demonstrate that this procedure has a practical application in cavity detection, and is a key to the reduction of the uncertainty inherent in the inversion process of ERT data.
机译:我使用理论正向模型表明,嵌入分层沉积序列中的腔体会在ERT数据反演中引起等效问题。导电的顶层土壤会增加地面特征和ERT模型之间的不匹配。失配取决于阵列和地层层序。后者引起一个等效问题,表现为腔深度定位错误。 Schlumberger阵列获取的数据比偶极子-偶极子的失配更大.ERT数据反演问题的歧义性在检测与公元前8-6世纪有关的空腔时得到了检验。萨宾陵墓,宽3.m×长3.m×高2.m,出自半灰石凝灰岩和表层土层覆盖的泥质灰色火山灰(红土)层。在实际研究中,我使用关于腔体的几何形状和电阻率的先验信息减少了ERT数据反问题中的歧义。约束条件是通过使用80和200 MHz天线获取的地雷达数据进行的。我证明了该程序在空腔检测中有实际应用,并且是减少ERT数据反演过程中固有的不确定性的关键。

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