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Exploring flexible strategies in engineering systems using screening models : applications to offshore petroleum projects

机译:使用筛选模型探索工程系统中的灵活策略:海上石油项目的应用

摘要

Engineering Systems, such as offshore petroleum exploration and production systems, generally require a significant amount of capital investment under various technical and market uncertainties. Choosing appropriate designs and field development strategies is a very challenging task for decision makers because they need to integrate information from multiple disciplines to make decisions while the various uncertainties are still evolving. Traditional engineering practice often focuses on finding "the optimal" solution under deterministic assumptions very early in the conceptual study phase, which leaves a large amount of opportunity unexploited, particularly the value of flexible strategies. This thesis proposes a new approach to tackle this issue - exploring flexible strategies using midfidelity screening models. The screening models interconnect and model physical systems, project development, and economics quantitatively at the mid-fidelity level, which allows decision-makers to explore different strategies with significantly less computational effort compared to high fidelity models. The screening models are at a level of detail that gives reliable rank orders of different strategies under realistic assumptions. Flexibilities are identified and classified at strategic, tactical, and operational levels over a system's lifecycle. Intelligent decision rules will then exercise flexible strategies as uncertainties unfold. This approach can be applied as a "front-end" strategic tool to conduct virtual experiments. This helps identify good strategies from a large number of possibilities and then discipline-based tools can be used for detailed engineering design and economics evaluation.
机译:在各种技术和市场不确定性的情况下,诸如海上石油勘探和生产系统之类的工程系统通常需要大量的资本投资。对于决策者来说,选择合适的设计和现场开发策略是一项非常艰巨的任务,因为他们需要整合来自多个学科的信息来制定决策,同时各种不确定性仍在不断发展。传统的工程实践通常在概念研究阶段的早期就着重于在确定性假设下找到“最佳”解决方案,这留下了大量机会,尤其是灵活策略的价值。本文提出了一种解决该问题的新方法-使用中保真度筛选模型探索灵活的策略。筛选模型在保真度中等级别对物理系统,项目开发和经济学进行互连和建模,与高保真度模型相比,决策者可以用更少的计算量来探索不同的策略。筛选模型的详细程度可根据实际假设给出不同策略的可靠排名。在系统生命周期的战略,战术和运营级别上对灵活性进行了识别和分类。然后,随着不确定性的发展,智能决策规则将采用灵活的策略。这种方法可以用作进行虚拟实验的“前端”战略工具。这有助于从众多可能性中确定好的策略,然后可以将基于学科的工具用于详细的工程设计和经济评估。

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