Multichannel Analysis of Surface Waves (MASW) to Estimate the Shear Wave Velocity for Engineering Characterization of Soils at Hawassa Town, Southern Ethiopia

IF 1 Q3 GEOCHEMISTRY & GEOPHYSICS International Journal of Geophysics Pub Date : 2022-12-19 DOI:10.1155/2022/7588306
A. Ayele, Kifle Woldearegay, M. Meten
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引用次数: 2

Abstract

Site characterization is a prerequisite for the successful and economic design of engineering structures and earthworks by providing geological information for any proposed project. Until now, no detail study has been carried out on the site characterization and classification using shear wave velocity (Vs) up to the top 30 m depth in Hawassa town. For this study, multichannel analysis of surface waves (MASW) was used to determine the variation of Vs for a proper civil engineering design in the town. In addition, vertical electrical sounding (VES) and standard penetration test (SPT) were employed to characterize the near-surface materials. The Vs30 map was prepared for Hawassa town using the estimated Vs30 values which ranges from 248.9 m/s to 371.3 m/s while the SPT-N values were ranges from 5bpf to 50bpf. The correlation of Vs and SPT-N values has been done by considering both corrected and uncorrected SPT-N values. The VES result showed that groundwater is found at a shallow depth. The correlation of Vs and SPT-N value was validated using regression model. The 1D Vs profile and 2D cross-section showed low Vs at a shallow depth. The near-surface soils of the town are classified based on the Vs30 as site class C (stiff soil and soft rock) and D class (stiff soils) according to the NEHRP (Natural Earthquake hazards Reduction Program) and as subsoil classes B and C according to the Eurocode 8. The geotechnical tests also showed that the soils in the study area are silty sand, sand and silty sand with some gravel. The low Vs values observed at a shallow depth should be given much attention during foundation design for the stability of civil engineering structures.
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多通道表面波分析(MASW)估算工程表征土壤的剪切波速,埃塞俄比亚南部哈瓦萨镇
通过为任何拟建项目提供地质信息,现场表征是工程结构和土方工程成功经济设计的先决条件。到目前为止,还没有对使用剪切波速(Vs)达到前30的场地特征和分类进行详细研究 m深处的Hawassa镇。在本研究中,使用了表面波的多通道分析(MASW)来确定Vs的变化,以便在该镇进行适当的土木工程设计。此外,采用垂直电测深(VES)和标准贯入试验(SPT)对近地表材料进行了表征。使用估计的Vs30值为Hawassa镇绘制Vs30地图,Vs30值范围为248.9 m/s至371.3 m/s,而SPT-N值范围为5bpf至50bpf。Vs和SPT-N值的相关性是通过考虑校正和未校正的SPT-N值来完成的。VES结果表明,地下水分布在浅层。使用回归模型验证了Vs与SPT-N值的相关性。1D Vs剖面和2D横截面在浅深度处显示出低Vs。根据NEHRP(自然地震灾害减少计划),根据Vs30,该镇的近地表土壤被划分为场地类别C(硬土和软岩)和D类别(硬土),根据欧洲规范8,被划分为底土类别B和C。岩土工程试验还表明,研究区域的土壤为粉砂、砂和粉砂,并带有一些砾石。在土木工程结构的稳定性基础设计过程中,应特别注意浅层观测到的低Vs值。
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来源期刊
International Journal of Geophysics
International Journal of Geophysics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.50
自引率
0.00%
发文量
12
审稿时长
21 weeks
期刊介绍: International Journal of Geophysics is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles in all areas of theoretical, observational, applied, and computational geophysics.
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