利用划时代分析和数字孪生技术实现有效的系统概念和执行:二氧化碳封存盐穴项目

Daniel P. Vieira, Í. A. Fonseca, Kazuo Nishimoto, Gustavo R. S. Assi, Henrique M. Gaspar, Donna H. Rhodes
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引用次数: 0

摘要

由于需要减少富含二氧化碳的气体排放到大气中,近海工业正在转向气体捕获和储存系统。为此,计划在巴西桑托斯盆地的盐层中建造一个洞穴;然而,众多因素给该项目带来了不确定性。我们建议将系统工程方法与数字孪生技术相结合,以实现系统概念和执行的稳健性为目标。系统建模包括任务、子系统、组件和设计属性。根据每个属性与利益相关者的相关性,对一系列可行解决方案的系统效用和成本进行估算。使用 "时代-年代分析 "框架对替代方案进行评估,以分析系统在不断变化的未来情景中的性能。该系统模型还概述了数字孪生概念,并确定了其如何支持盐洞的设计和运营。最后,研究了根据收集的数据调整和改进系统评估的可能性,并提出了进一步开发数字孪生系统的措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Leveraging epoch‐era analysis and digital twin for effective system concept and execution: A CO2 storage salt‐cave project
With the demand to reduce the release of CO2‐rich gases into the atmosphere, the offshore industry is turning to systems for gas capture and storage. The construction of a cave for that purpose is planned in the salt layer of the Santos Basin, Brazil; however, numerous factors bring uncertainties to the project. We propose combining systems engineering methods and digital twin technology to enable system concept and execution aiming at value robustness. The system is modeled in mission, subsystems, components, and design attributes. System utilities and costs are estimated for a range of viable solutions based on the relevance of each attribute to the stakeholders. The alternatives are evaluated using the Epoch‐Era Analysis framework for analyzing the system's performance over time in changing future scenarios. The system model also outlines a digital twin concept and identifies how it might support salt cave design and operations. Finally, the potential of tuning and improving system evaluation based on gathered data is examined, and measures toward further digital twin development are recommended.
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