Sarıçay Dam: A Case Study on In-Depth Seismic Evaluation, Deformation Modulus, and Key Geotechnical Parameters

IF 1.3 4区 工程技术 Q3 ENGINEERING, GEOLOGICAL
Sarper Demirdogen, Sefa Yildirim
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Abstract

The Sarıçay Dam project in southwestern Türkiye integrates advanced geotechnical evaluation methods for building dams in areas with challenging geology and seismic activity. This study foregrounds an in-depth analysis of deformation modulus, the efficacy of consolidation grouting, and shear strength parameters. It addresses critical issues such as encountering faults during construction and their mitigation, with the 'observational approach' being adopted to inform strategies and solutions and/or any modifications to these, including any design aspects. The appropriate selection of the deformation modulus and understanding its enhancement through consolidation grouting remain long-standing issues in geotechnical engineering. The comprehensive analyses of the deformation modulus revealed that certain empirical equations yield results comparable to those from in-situ tests, although some may significantly overestimate; hence, correlating these tests with geophysical methods is crucial for accurate evaluation. Moreover, the deformation modulus results, derived from both rock pressuremeter and dilatometer tests on similarly characterized rock masses, displayed a notable comparability, despite the inherent scatter attributed to rock masses' heterogeneity and anisotropy. The findings revealed that consolidation grouting, despite its minimal effect on increasing the deformation modulus (4% to 18%), plays a role in reinforcing the foundation by filling joints and fractures. The research experiences and outcomes on this project will contribute to the knowledge base for future dam projects.
Sarıçay 大坝:关于深层地震评估、变形模量和关键岩土参数的案例研究
位于土耳其西南部的萨尔恰伊大坝项目采用了先进的岩土工程评估方法,用于在地质条件恶劣、地震活动频繁的地区修建大坝。这项研究对变形模量、固结灌浆的效果以及剪切强度参数进行了深入分析。该研究解决了施工过程中遇到断层及其缓解等关键问题,并采用 "观察法 "为战略和解决方案提供信息和/或对其进行任何修改,包括任何设计方面。变形模量的适当选择以及对通过固结灌浆增强变形模量的理解仍是岩土工程中的长期问题。对变形模量的综合分析表明,某些经验公式得出的结果与原位测试结果相当,但有些公式可能会明显高估;因此,将这些测试与地球物理方法关联起来对于准确评估至关重要。此外,尽管岩体的异质性和各向异性会造成固有的散差,但在特征相似的岩体上进行岩石压力计和膨胀仪测试得出的变形模量结果具有显著的可比性。研究结果表明,尽管固结灌浆对提高变形模量(4% 至 18%)的作用微乎其微,但它通过填充节理和裂缝起到了加固地基的作用。该项目的研究经验和成果将为未来的大坝项目提供知识基础。
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来源期刊
CiteScore
3.40
自引率
14.30%
发文量
66
审稿时长
6 months
期刊介绍: Quarterly Journal of Engineering Geology and Hydrogeology is owned by the Geological Society of London and published by the Geological Society Publishing House. Quarterly Journal of Engineering Geology & Hydrogeology (QJEGH) is an established peer reviewed international journal featuring papers on geology as applied to civil engineering mining practice and water resources. Papers are invited from, and about, all areas of the world on engineering geology and hydrogeology topics. This includes but is not limited to: applied geophysics, engineering geomorphology, environmental geology, hydrogeology, groundwater quality, ground source heat, contaminated land, waste management, land use planning, geotechnics, rock mechanics, geomaterials and geological hazards. The journal publishes the prestigious Glossop and Ineson lectures, research papers, case studies, review articles, technical notes, photographic features, thematic sets, discussion papers, editorial opinion and book reviews.
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