Mapping the soil thickness in the Main Ethiopian Rift using passive seismic data and HVSR, case for Northern water divided between the Ziway-Shala lakes basin and the Awash basin

Hailemichael Kebede
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Abstract

A passive seismic survey wasconducted in the northern water dividebetween the Ziway-Shala Lakes Basin, Central Main Ethiopian Rift (CMER), and Awash basin. Previous geophysical studies in the same areahad mainly focused on mapping intermediate to deeper Earth geological structures, and little attention given to shallowest layer.In contrast, the study aimed to map these shallow geologic structures of soil layer undulations at this specific location of CMER. A rapid and non-invasive technique was employed, which involve recording three component measurements of ambient seismic noise data. The collected seismic noise data was processed and analyzed using the average of Horizontal to Vertical Spectral Ratio (HVSR) which helpsto determine resonance frequencies of the survey stations. After frequency estimatesweremadefor each station, corresponding depth estimates were obtained using the method of Nakamura.The point depth to the shallowest layer was determined for each siteand these depth valueswere gridded and mapped to show subsurface topographic undulations or thickness of topsoil cover.The result showed that the shallowest bedrock layer wasthickening northwards, toward the Awash basin.
利用被动地震数据和HVSR绘制埃塞俄比亚主要裂谷的土壤厚度图,以Ziway-Shala湖泊盆地和Awash盆地之间的北部水域为例
在Ziway-Shala湖泊盆地、埃塞俄比亚中部裂谷(CMER)和Awash盆地之间的北部水域进行了被动地震调查。以往在同一地区的地球物理研究主要集中在中深层地球地质构造的测绘上,对最浅层的研究很少。相比之下,该研究旨在绘制CMER特定位置的土层波动的浅层地质结构。采用了一种快速、无创的技术,记录环境地震噪声数据的三分量测量。对采集到的地震噪声数据进行处理和分析,利用水平与垂直频谱比(HVSR)平均值确定各测点的共振频率。在对每个台站进行频率估计后,利用Nakamura方法得到相应的深度估计。为每个站点确定到最浅层的点深度,这些深度值被网格化并映射,以显示地下地形波动或表土覆盖厚度。结果表明,最浅的基岩层向北加厚,朝向阿瓦什盆地方向。
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