应用创新技术解决方案为海上结构退役/改造提供支持

D. Speranza, Andrea Vignali, A. Pacini, G. Ori, A. Palucci
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引用次数: 0

摘要

从事平台退役工作的公司需要工具来做出更明智、更明智的业务决策,管理和分析业务数据,提高工人的安全性,并在严格的环保法规下运营。INSURE旨在评估一项新服务的可行性,通过在每个过程步骤中提供技术创新来支持海上设施的退役。为了实现这一目标,该项目聚集了高影响力的意大利公司,汇集了最适用的技术和科学知识。INSURE预计将结合这些专业知识,创造一种新的工具,为行业服务,以促进更好、更安全的操作方法。INSURE项目的目标是提高工人的安全,加强环境监测,提高运营效率,降低运营成本,为未来的可持续发展提供一条途径。项目目标可以通过增强虚拟现实平台(AVRP)的实现来实现,该平台将支持退役过程,在退役过程中,多个传感器采集/传输的数据将汇聚在一起。利用全球卫星导航系统(GSNS)和卫星通信(SatCom),舰队控制工具集成了安装在自主空中和水下航行器上的传感器的信息。一流技术(增强/虚拟现实、3D、机器人、传感器、5G和卫星服务)与基础设施云的融合,使人们能够以非常高的分辨率快速、完整地访问实时数据。该提案旨在将物联网的实际数据和信息访问带入知识互联网范式。面对国内和国际可能的最终用户,产生了一套用户需求,指导设计实现一种具体产品的可行性研究。该研究还包括对经济、非经济可行性的评估,以及对其实现可能存在的监管限制。INSURE可行性研究为该过程的进一步步骤创造了知识背景:实现和开发为此目的量身定制的试点项目。这种新技术的结合使用代表了一种创新的综合方法,适用于正在退役或为其他目的重新配置的海上结构的管理。此外,它还涉及促进对地区和资产进行商业、社会和教育开发的可持续机会(包括例如生态旅游、可再生能源、碳捕获和储存的范围)。
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Supporting Decommissioning/Conversion of Offshore Structures Applying Innovative Technological Solution INSURE project
Companies that work in the decommissioning of platforms need tools to make smarter and informed business decisions, manage and analyse business data, increase the security of workers and operate under strict environmental protection regulations. INSURE aims at assessing the feasibility of a new service to support the decommissioning of offshore installations by means of technological innovation made available throughout each process’ step. In order to accomplish this, the project gathers high-impact Italian companies bringing together the best applicable technological and scientific know-how. INSURE foresees to combine these know-hows and create a novel tool at the service of the industry to promote a better and safer approach to the operations. Targets of the INSURE project are improving workers’ safety, enhancing environmental monitorings, increasing operations’ efficiency, reducing operational costs, offering a route for future sustainability. Project targets can be achieved through the realisation of an augmented virtual reality platform (AVRP) that will be operated in support of the decommissioning process where the data acquired/transmitted by a plurality of sensors will converge. A fleet control tool integrates information from sensors installed on autonomous aerial and underwater vehicles making use of the Global Satellite Navigation Systems (GSNS) and Satellite Communications (SatCom). The convergence of top-notch technologies (augmented/virtual reality, 3D, robotics, sensors, 5G and Satellite services), together with a cloud of infrastructure, enables a fast and complete access to real-time data at very high resolution. The proposal aims to bring the actual data and information access from the Internet of Things to the Internet of Knowledge paradigm. Confrontation with national and international possible end-users produced a set of user requirements guiding the design of a feasibility study for the realisation of one specific product. The study also includes the evaluation of economic, non-economic viability and possible regulatory constraints to its realisation. The INSURE feasibility study creates the intellectual background for the further step of the process: the realisation and development of a pilot project tailored for the purpose. This combined use of novel technologies represents an innovative integrated approach applied to the management of offshore structures undergoing decommissioning or reconfiguration for other purposes. In addition, it also involves the promotion of sustainable opportunities for commercial, social and educational exploitation of areas and assets (including, for example, the ambit of eco-tourism, renewable energies, carbon capture and storage).
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