A Geological and Geotechnical Information System (GEO-GIS) for urban planning and its application to the Acıpayam Basin (Denizli-Turkey), with some observations from Mw 5.5 earthquake on 20 March, 2019

IF 1.3 4区 工程技术 Q3 ENGINEERING, GEOLOGICAL
Halil Kumsar, Tuğba Sarayköylü
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Abstract

There are many site investigation projects used for the urban planning of a city. They are archived in hard copy or scanned in image files stored on computers. In this study, geological, geotechnical and geophysical data obtained from different site investigation projects in the Acıpayam district were evaluated in the same coordinate system using a geological and geotechnical information system (GEO-GIS) computer program. The Acıpayam GEO-GIS database includes field tests in 82 boreholes, 85 observation pits, laboratory test results of soil samples, 99 seismic refraction measurements and 70 microtremor measurements. Required information from the database can be displayed at its spatial coordinates on a base map and new maps can also be drawn using the GEO-GIS database system. Resultant maps drawn using the Acıpayam GEO-GIS database show that in the northern and eastern parts of the Acıpayam district, where the Oğuz, Kırca, Yassıhöyük, Apa, Ovayurt, Karahüyük, Ucarı and Gedikli villages are located, weak soil layers exist. This means that some damage may be caused to adobe and masonry buildings in the villages during shaking associated with strong earthquakes, as observed after the 5.5 (M w ) earthquake that occurred on 20 March 2019. The Acıpayam GEO-GIS database system is a useful tool for engineers and planners that can assist in drawing GIS-produced maps for geotechnical evaluations of the basin. These maps can be used in decision-making projects for urban planning. Thematic collection: This article is part of the Leading to Innovative Engineering Geology Practices collection available at: https://www.lyellcollection.org/topic/collections/leading-to-innovative-engineering-geology-practices
用于城市规划的地质和岩土信息系统(GEO-GIS)及其在Acıpayam盆地(土耳其denizli)的应用,以及2019年3月20日5.5级地震的一些观测数据
一个城市的城市规划中有许多现场调查项目。它们以硬拷贝的形式存档,或者扫描成图像文件存储在计算机中。在本研究中,利用地质与岩土信息系统(GEO-GIS)计算机程序,在同一坐标系下对Acıpayam地区不同站点调查项目获得的地质、岩土和地球物理数据进行了评价。Acıpayam GEO-GIS数据库包括82个钻孔的现场试验、85个观测坑、土壤样品的实验室试验结果、99次地震折射测量和70次微震测量。数据库所需的资料可以在底图上以其空间坐标显示,也可以利用地理信息系统数据库系统绘制新的地图。利用Acıpayam GEO-GIS数据库绘制的结果图显示,在Acıpayam区的北部和东部,Oğuz、Kırca、Yassıhöyük、Apa、Ovayurt、karah y k、ucaryi和Gedikli村所在的地方,存在薄弱的土壤层。这意味着,在2019年3月20日发生的5.5级地震后观测到的强震期间,村庄的土坯和砖石建筑可能会受到一定程度的破坏。Acıpayam GEO-GIS数据库系统是工程师和规划人员的一个有用工具,可以协助绘制地理信息系统制作的地图,以便对盆地进行地质技术评价。这些地图可用于城市规划的决策项目。专题合集:本文是Leading to Innovative Engineering Geology Practices合集的一部分,可在https://www.lyellcollection.org/topic/collections/leading-to-innovative-engineering-geology-practices找到
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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