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Facade inspections with drones-theoretical analysis and exploratory tests

机译:门面检查无人机 - 理论分析和探索性测试

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Purpose - This paper presents a reflection on the effectiveness of using drones in the technical inspection of building facades, as a practical alternative to more expensive and heavier conventional means. In order to verify this assumption qualitatively, a number of field tests are presented and discussed. Design/methodology/approach - The first stage consisted of a literature review. The analysis initially investigated drone technology. Then, an insight into some general applications in Civil Engineering was compiled, focusing in particular on the Construction Industry (CI), as well as the scope of building envelope inspections. In the second stage, field tests with drones were performed and the resulting data was appraised in order to get facade pathologies diagnosis as accurate as possible. Findings - Through this study, the adaptability and versatility of using drones were checked. Thus, it has been confirmed that drone technology is an effective and promising alternative methodology to support technical inspection and diagnosis of building envelope pathologies. In fact, drones seem to be a worthwhile tool for supporting certain Civil Engineering activities-particularly when displaying a multirotor configuration, loading high-definition (HD) cameras, for both stills photography and video. Research limitations/implications - As the main goal of this approach was simply a qualitative assessment of evidence on the advantages of using drones compared with conventional means, other kinds of comparative analysis were not discussed in depth. However, this and other potential restrictive issues may represent an opportunity to push more developments. A deeper knowledge of data handling and clear procedures for the use of drones could be very valuable for the CI and for building envelope inspections. Practical implications - In investigating this subject, this research can offer valuable input to enable a greater awareness of the use of drones in the technical inspection of buildings, particularly in hard-to-reach locations, to the detriment of conventional means. In these circumstances, this methodology can bring great benefits, particularly from an environmental impact point of view, since the resources used are much lower. In addition, a very reliable diagnosis can be achieved more quickly, and at a much lower cost. Originality/value - The introduction of a standard for drone inspection practice is still at an early stage, with initial steps being taken in an apparently well-focused effort to achieve consolidation. Research studies of this kind may have an important role to play in drawing the stakeholders' attention to the benefits of using this technique, particularly for those working in the building usage phase.
机译:目的 - 本文提出了一种对建筑物外观技术检验中使用无人机的有效性的反思,作为更昂贵和更重的传统手段的实用替代方案。为了定性地验证这种假设,呈现并讨论了许多现场测试。设计/方法/方法 - 第一阶段包括文献综述。分析最初研究了无人机技术。然后,编制了对土木工程中的一些一般应用的洞察,特别是在建筑业(CI),以及建筑信封检查的范围。在第二阶段中,进行与无人驾驶飞机现场试验和所得到的数据是为了评估,以获取门面病理诊断尽可能准确。调查结果 - 通过本研究,检查使用无人机的适应性和多功能性。因此,已经证实,无人机技术是一种有效和有前途的替代方法,可支持构建包络病理学的技术检验和诊断。事实上,无人机似乎是支持某些土木工程活动,特别是显示多转子构造一个很有价值的工具,装载高清晰度(HD)摄像机,对于剧照摄影和视频。研究限制/影响 - 作为这种方法的主要目标只是对与常规手段相比使用无人机的优势的定性评估,而其他类型的比较分析未深入讨论。但是,这一和其他潜在的限制性问题可能代表推动更多发展的机会。对数据处理和清晰程序的更深入了解,用于使用无人机对CI和建立信封检查非常有价值。实际意义 - 在调查这一主题时,该研究可以提供有价值的投入,以更高意识到在建筑物技术检查中使用无人机,特别是在难以到达的位置,损害常规手段。在这种情况下,这种方法可以带来很大的益处,特别是从环境影响的角度来看,因为所用的资源要低得多。此外,可以更快地实现非常可靠的诊断,并且成本低得多。独创性/价值 - 引进的无人驾驶飞机检验规范做法的是仍处于早期阶段,采取以明显有重点的努力来实现整合的初始步骤。这些研究的研究可能具有重要作用,可以在利用利益相关者对利用这种技术的益处的关注方面发挥重要作用,特别是对于在建筑物使用阶段工作的人。

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