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Monitoring of Membrane Structures using Unmanned Aerial Vehicle Assisted Photogrammetry

机译:使用无人机辅助摄影测量法监测膜结构

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High-value assets demand rapid inspection and structural assessment methodologies to ensure maximum availability and operational capabilities. In the case of large structures (e.g. aircraft wings, dams, vertical tanks, elevated highways), the ability to add non-contact measurement capabilities to unmanned aerial vehicles (UAV) has resulted in new options in structural health monitoring and assessment. Large floating covers over anaerobic lagoons in wastewater treatment plants are a type of significant structure that will benefit from the development of this form of non-contact technique. Large membranes are used as floating covers at the anaerobic lagoons at Melbourne Water's Western Treatment Plant (WTP), Werribee, Victoria, Australia. A critical function of this high value asset pertains to the harnessing of the biogas gas emitted by these lagoons. Without these covers, the biogas will be released into the environment as a damaging greenhouse gas and the opportunity to generate electricity from the biogas will be lost. Therefore, a proactive inspection and management strategy is required to ensure the integrity of the cover and its continued operation. Demonstration of the UAV assisted photogrammetry surveys conducted over the floating cover at the WTP will be the subject of this paper. The results from monthly surveillance of the covers will be discussed. It will be shown that this is a proactive technique that facilitates quantification of the state of deformation of the floating cover due to the dynamics under the covers. These dynamics are attributed to the inflow of the raw sewage, accumulation of bio-gas, "scum-berg" formation and its movement, the effects of wind or a combination of these factors.
机译:高价值资产需要快速检查和结构评估方法,以确保最大的可用性和运营能力。对于大型结构(例如飞机机翼,水坝,垂直坦克,高架公路),为无人机提供非接触式测量功能的能力导致了结构健康监测和评估的新选择。废水处理厂厌氧池上方的大型浮盖是一种重要的结构,将从这种形式的非接触技术的发展中受益。在澳大利亚维多利亚州Werribee的墨尔本水务西部处理厂(WTP)的厌氧泻湖中,大型膜被用作浮盖。这种高价值资产的关键功能在于利用这些泻湖排放的沼气。没有这些覆盖物,沼气将作为有害的温室气体释放到环境中,并且将失去从沼气发电的机会。因此,需要采取积极的检查和管理策略以确保盖子的完整性及其持续运行。在WTP的浮动覆盖物上进行的无人机辅助摄影测量调查的演示将是本文的主题。将讨论每月对覆盖物进行监控的结果。将显示出这是一种主动技术,其有助于量化由于覆盖物下方的动力学而导致的浮动覆盖物的变形状态。这些动态归因于原污水的流入,沼气的积累,“浮渣”的形成及其运动,风的影响或这些因素的组合。

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