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首页> 外文期刊>Australian Geomechanics >UNMANNED AERIAL VEHICLES (UAV) AND THEIR CONTINUING APPLICATION TO GEOTECHNICAL SLOPE RISK ASSESSMENT AND DESIGN
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UNMANNED AERIAL VEHICLES (UAV) AND THEIR CONTINUING APPLICATION TO GEOTECHNICAL SLOPE RISK ASSESSMENT AND DESIGN

机译:无人驾驶航空公司(UAV)及其继续应用于岩土坡风险评估和设计

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摘要

Unmanned aerial vehicle (UAV) data capture is becoming a ubiquitous tool in the geotechnical practitioner's field kit, but the potential benefits are often not fully realised. UAV data capture has advanced rapidly over the last few years, both in the field and post-processing methods. This includes the application of laser scanning technology to UAVs and the incorporation of 3D modelling capabilities within many different software packages. However, there are still issues that need to be considered such as the required precision and accuracy of spatial data, how to achieve this precision and accuracy, the proximity constraints and legal restrictions on using UAV data capture in certain environments. This paper looks at the current state of play in UAV technology as it applies to geotechnical engineering and engineering geology. It provides examples of typical planning and workflow considerations for using UAV captured data, based on the authors' own experience. Finally, it describes two case studies where UAV technology has been utilised as an integral part of the geotechnical analysis, using an in-house software application which utilises a commercially available 3D physics engine.
机译:无人驾驶飞行器(UAV)数据捕获正在岩土医生现场套件中成为普遍存在的工具,但往往没有完全实现潜在的益处。在过去几年中,UAV数据捕获在现场和后处理方法中迅速提升。这包括在许多不同软件包中将激光扫描技术应用于无人机和3D建模能力的应用。但是,仍有需要考虑的问题,例如空间数据所需的精度和准确性,如何实现这种精度和准确性,在某些环境中使用UAV数据捕获的邻近约束和法律限制。本文介绍了UAV技术的当前发挥状态,因为它适用于岩土工程和工程地质。它提供了基于作者自己的经验,提供了使用UAV捕获数据的典型规划和工作流程考虑的示例。最后,它描述了使用内部软件应用程序使用市售的3D物理发动机的内部软件应用来描述两种情况研究,其中UAV技术已被用作岩土分析的组成部分。

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