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Geophysical analysis of the soils for civil (Geotechnical) engineering and urban planning purposes: Some case histories from Turkey

机译:用于土木(土力工程)和城市规划目的的土壤的地球物理分析:来自土耳其的一些案例历史

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The aim of this study is to review the geophysical investigations in civil engineering and urban planning by some case histories in Turkey. Geophysics deals with a wide array of earth phenomena, including the temperature distribution of the earth's interior (the source, configuration and variations of the geomagnetic field) and the large-scale features of the terrestrial crust, such as rifts, continental sutures and mid-oceanic ridges. From the geophysical point of view, civil engineering and urban planning includes several geophysical topics used to investigate the physical properties, the physical techniques for regional and local land use planning or micro-zonation, the natural disaster risk estimation studies, etc. In this study, the geophysical approach, regarding civil engineering and urban planning against the natural or artificial disaster risk in macro (humanature) and micro (society/earth) scales, is given. Geophysical methods provide solutions to a wide range of geotechnical problems: Slope stability, soil liquefaction and amplification studies, site investigations and testing, water works, subways, etc. In this study, an evaluation of the geophysical methods applied to geotechnical problems related to the soils is presented. Soils consist of the products of physical and chemical weathering of the rocks of the earth’s crust. As a part of the engineering design, the aim of a site/soil investigation is to provide the basic data to evaluate the interaction of the natural environment with the proposed structure. As it is known, using physical measurements in geophysics, it is studied as the natural and artificially generated physical fields of the earth.
机译:这项研究的目的是通过土耳其的一些案例历史回顾土木工程和城市规划中的地球物理研究。地球物理学处理各种各样的地球现象,包括地球内部的温度分布(地磁场的来源,构造和变化)以及地壳的大尺度特征,例如裂谷,大陆缝线和洋中脊。从地球物理的角度来看,土木工程和城市规划包括几个地球物理主题,用于研究物理特性,用于区域和本地土地使用规划或微区划的物理技术,自然灾害风险估计研究等。给出了针对土木工程和城市规划以宏观(人类/自然)和微观(社会/地球)规模应对自然或人为灾害风险的地球物理方法。地球物理方法为广泛的岩土工程问题提供了解决方案:边坡稳定性,土壤液化和放大研究,现场调查和测试,水厂,地铁等。在这项研究中,对应用于与岩土工程相关的岩土工程问题的地球物理方法进行了评估提出了土壤。土壤由地壳岩石的物理和化学风化产物组成。作为工程设计的一部分,场地/土壤调查的目的是提供基本数据,以评估自然环境与拟议结构的相互作用。众所周知,在地球物理学中使用物理测量,将其作为地球的自然和人工生成的物理场进行研究。

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