Nevşehir Castle Region in Turkey Interpreted by the Use of Seismic Surface Wave and Electrical Resistance Measurements Together

Ö. Çakır, N. Coşkun, M. Erduran
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引用次数: 1

Abstract

Abstract The underground city beneath the Nevşehir Castle located in the middle of Cappadocia region in Turkey with approximately cone shape is investigated by jointly utilizing the modern geophysical techniques of seismic surface waves and electrical resistivity. The systematic void structure under the Nevşehir Castle of Cappadocia, which is known to have widespread underground cities, is studied by the use of 33 separate two-dimensional profiles ~4-km long where electrical resistivities and seismic surface waves are concurrently measured. Seismic surface wave measurements are inverted to establish the shear-wave velocity distribution while resistivity measurements are inverted to resolve the resistivity distribution. Several high-resistivity anomalies with a depth range 8-20 m point to a systematic void structure beneath the Nevşehir Castle. We were able to effectively isolate the void structure from the embedding structure since the currently employed resistivity instrument has provided us high resolution quality measurements. Associated with the high resistivity anomalies there exist low-velocity depth zones acquired from the surface wave inversions also pointing to a systematic void structure where three-dimensional visualization techniques are used to show the extension of the void structure under the studied area.
用地震表面波和电阻测量一起解释土耳其的Nevşehir城堡地区
摘要利用地震表面波和电阻率的现代地球物理技术,对位于土耳其卡帕多西亚地区中部、形状近似圆锥形的Nevšehir城堡地下城市进行了研究。卡帕多西亚Nevşehir城堡下的系统空隙结构是通过使用33个独立的二维剖面进行研究的,该剖面长约4公里,同时测量电阻率和地震表面波。反演地震表面波测量值以建立剪切波速分布,而反演电阻率测量值以解析电阻率分布。几个深度范围为8-20 m的高电阻率异常表明涅夫希尔城堡下方存在系统性孔隙结构。我们能够有效地将空隙结构与嵌入结构隔离,因为目前使用的电阻率仪器为我们提供了高分辨率的高质量测量。与高电阻率异常相关的是,从表面波反演中获得的低速深度区也指向系统的孔隙结构,其中使用三维可视化技术来显示研究区域下方孔隙结构的延伸。
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