THE USING OF TERRESTRIAL LASER (POINT CLOUD) SCANNING TECHNOLOGIES ON URBAN SCALE: EXAMPLE OF THE HISTORICAL URBAN TEXTURE OF LAPSEKİ

Hatice Çiğdem Zağra, Sibel Özden
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Abstract

Aim: This study aims to comparatively evaluate the use potential of orthophoto images obtained by terrestrial laser scanning technologies on an urban scale through the "Old Lapseki Finds Life Project" prepared using terrestrial laser scanning technologies and the "Enez Historical City Square Project" prepared using traditional methods. Method: In the study, street improvement projects of 29.210 m2 Lapseki and 29.214 m2 Enez city designed on an urban scale were evaluated and compared with descriptive statistics based on different parameters. Results: In the study, it has been determined that terrestrial laser (point cloud) technologies are 99,9% accurate when compared to traditional methods, save time by 83,08% and reduce workforce by 80%. In addition, it has been determined that terrestrial laser scanning technologies accelerate project processes compared to traditional methods. Conclusion: In this study, the use of laser scanning technologies, which are basically reverse engineering applications, in architectural restoration projects, determination of the current situation and damage, architectural documentation of structures and preparation of three-dimensional models, in terms of efficiency in survey studies are evaluated. It has been observed that orthophoto images obtained by terrestrial laser scanning technologies in architectural relief-restoration-restitution projects have potentials' worth using in different stages of the project.
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地面激光(点云)扫描技术在城市尺度上的应用:以lapsekİ的历史城市肌理为例
目的:通过地面激光扫描技术制备的“Old Lapseki Finds Life Project”和传统方法制备的“Enez historic City Square Project”,对比评价地面激光扫描技术获得的正射影像在城市尺度上的使用潜力。方法:采用基于不同参数的描述性统计方法,对城市尺度上29.210 m2的Lapseki和29.214 m2的Enez城市街道改造项目进行评价和比较。结果:在研究中,与传统方法相比,地面激光(点云)技术的准确率为99.9%,节省时间83,08%,减少劳动力80%。此外,与传统方法相比,已经确定地面激光扫描技术可以加快项目进程。结论:在本研究中,对激光扫描技术在建筑修复项目、确定现状和损伤、结构的建筑文献和三维模型的制备等方面的应用效率进行了评价,这基本上是逆向工程的应用。利用地面激光扫描技术获得的正射影像在建筑救济修复工程的不同阶段具有潜在的应用价值。
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