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Soil liquefaction potential in Eski?ehir, NW Turkey

机译:土耳其西北部埃斯基埃希尔的土壤液化潜力

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Liquefaction is one of the critical problems in geotechnical engineering. High ground water levels and alluvial soils have a high potential risk for damage due to liquefaction, especially in seismically active regions. Eski?ehir urban area, studied in this article, is situated within the second degree earthquake region on the seismic hazard zonation map of Turkey and is surrounded by Eski?ehir, North Anatolian, Kütahya and Simav Fault Zones. Geotechnical investigations are carried out in two stages: field and laboratory. In the first stage, 232 boreholes in different locations were drilled and Standard Penetration Test (SPT) was performed. Test pits at 106 different locations were also excavated to support geotechnical data obtained from field tests. In the second stage, experimental studies were performed to determine the Atterberg limits and physical properties of soils. Liquefaction potential was investigated by a simplified method based on SPT. A scenario earthquake of magnitude M = 6.4, produced by Eski?ehir Fault Zone, was used in the calculations. Analyses were carried out for PGA levels at 0.19, 0.30 and 0.47 g. The results of the analyses indicate that presence of high ground water level and alluvial soil increase the liquefaction potential with the seismic features of the region. Following the analyses, liquefaction potential maps were produced for different depth intervals and can be used effectively for development plans and risk management practices in Eski?ehir.
机译:液化是岩土工程中的关键问题之一。较高的地下水位和冲积土具有由于液化而造成损坏的高潜在风险,特别是在地震活跃地区。本文研究的埃斯基谢希尔市区位于土耳其地震危险性分区地图上的二级地震区内,被埃斯基谢希尔,北安纳托利亚,库塔希亚和西马夫断裂带包围。岩土勘测分两个阶段进行:现场和实验室。在第一阶段,在不同位置钻了232个钻孔,并进行了标准渗透率测试(SPT)。还开挖了106个不同位置的测试坑,以支持从现场测试中获得的岩土数据。在第二阶段,进行了实验研究以确定土壤的阿特伯格极限和物理性质。通过基于SPT的简化方法研究液化潜力。在计算中使用了由埃斯基谢希尔断裂带产生的M = 6.4级大地震。对PGA含量分别为0.19、0.30和0.47 g的分析。分析结果表明,高地下水位和冲积土的存在增加了该地区地震特征的液化潜力。分析之后,生成了不同深度间隔的液化潜力图,可将其有效地用于埃斯基谢希尔的开发计划和风险管理实践。

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