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Use of multisensor and multitemporal geospatial datasets to extract the foundation characteristics of a large building: a case study

机译:使用多传感器和多立体地理空间数据集以提取大型建筑的基础特性:案例研究

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The assessment of the ground conditions for large buildings is important because the results are sensitive to the ground conditions, especially differential settlement. Additionally, slope stability also becomes crucial for buildings constructed on steep terrain. In this study, the foundation characteristics of a seven-story conservatory building constructed on a moderately steep slope on the Beytepe Campus of Hacettepe University (Turkey), and the shallow slope failures developed in the fill were evaluated by using geotechnical analysis methods, including limit-equilibrium and 3D numerical analyses, with the help of multisensor, multiresolution, and multitemporal photogrammetric datasets obtained before and after the construction with high spatial density and accuracy. The photogrammetric datasets taken from airplanes and unmanned aerial vehicles (UAVs) were employed to analyze the ground conditions in 2015 (before construction was started), 2018 (after the building was completed, when slope failure started), and 2019 (to monitor the most recent state of slope failure). Additional ground points were surveyed using Global Navigation Satellite System (GNSS) instruments in 2019. The results of the analyses performed in the present study show a consistency with the in situ conditions. Consequently, the geo-information technologies and photogrammetric datasets used here are very practical and provide accurate data to analyze the pre- and postconstruction states and the deformations of large buildings and their surroundings. The geoinformation-based methodology followed in the study is promising for undisturbed investigations of many geotechnical and engineering geology problems.
机译:对大型建筑物的地面条件的评估很重要,因为结果对地面条件敏感,特别是差异沉降。此外,坡度稳定性也对在陡峭地形上构建的建筑物的关键。在这项研究中,通过使用岩土学分析方法评估了在Hacettepe大学(土耳其)的Beytepe校园内构建的七层音乐库建筑的基础特征,以及填充中开发的浅层故障,包括限制 - 借助于在施工前后获得高空间密度和精度的多传感器,多型光度测量数据集,高胆和3D数值分析。从飞机和无人机航空车辆(无人机)采取的摄影测量数据集被用来分析2015年的地面条件(在建设开始之前),2018年(在建筑物完成后,当斜坡故障启动时)和2019(监测最多)最近的斜坡衰竭状态)。在2019年使用全球导航卫星系统(GNSS)仪器进行了调查了其他地点。本研究中进行的分析结果表现出与原位条件的一致性。因此,这里使用的地理信息技术和摄影测量数据集非常实用,并提供准确的数据,以分析预设和后施加的状态和大型建筑物的变形及其周围环境。在该研究中遵循的基于地理信息的方法是对许多岩土工程和工程地质问题的不受干扰的调查有望。

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