2016
DOI: 10.1007/s11067-016-9328-8
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An Approach for Integrating Valuable Flexibility During Conceptual Design of Networks

Abstract: Energy and industrial networks such as pipeline-based carbon capture and storage infrastructures and (bio)gas infrastructures are designed and developed in the presence of major uncertainties. Conventional design methods are based on deterministic forecasts of most likely scenarios and produce networks that are optimal under those scenarios. However, future design requirements and operational environments are uncertain and networks designed based on deterministic forecasts provide sub-optimal performance. This… Show more

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Cited by 11 publications
(3 citation statements)
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“…Sadafi et al [23] highlighted that incorporating flexibility into project design is an indicator of the project designers' commitment to reducing waste during the project design phase. According to Gil and Tether [24], design flexibility is a concept where techniques such as adaptation (one space with multiple functions without architecture alternating [25]) and transformability (changing exterior and interior spaces [26]) could be considered to bring resource-efficiency and flexibility into the project design. Ellenberger [27] argued that buildings designed to change their functions over the project life-cycle reduce resource consumption, while Sadafi et al [23] asserted that incorporating flexibility into project design first requires identifying the design elements that can be altered into different forms of usage during the project's life.…”
Section: Commitment Indicators For Waste Reductionmentioning
confidence: 99%
“…Sadafi et al [23] highlighted that incorporating flexibility into project design is an indicator of the project designers' commitment to reducing waste during the project design phase. According to Gil and Tether [24], design flexibility is a concept where techniques such as adaptation (one space with multiple functions without architecture alternating [25]) and transformability (changing exterior and interior spaces [26]) could be considered to bring resource-efficiency and flexibility into the project design. Ellenberger [27] argued that buildings designed to change their functions over the project life-cycle reduce resource consumption, while Sadafi et al [23] asserted that incorporating flexibility into project design first requires identifying the design elements that can be altered into different forms of usage during the project's life.…”
Section: Commitment Indicators For Waste Reductionmentioning
confidence: 99%
“…Through this approach, engineering systems are designed with sufficient flexibility to minimize the negative effects of nonconsidered situations. This approach has been tested in several case studies such as: parking-size decisions (Zhao and Tseng, 2003), crash avoidance systems (de Neufville, 2008), oilfields (Lin, 2013 or pipeline-based networks (Melese et al, 2017). This is a long-term strategy, while the operation of our alternative lines is decided during operations.…”
Section: Related Conceptsmentioning
confidence: 99%
“…Multimodal flow analyses are critical to characterizing and solving problems within today's energy networks. The movement of fuels between nodes and across various levels within these networks involves multiple decisions under uncertainty and constraints of capacity, regulation and environmental impact limitation (Melese et al, 2016). As urgent steps are being taken to tackle climate change and related effects, greater efforts must be made to capture salient properties of various modes of energy transfer in order to provide reliable frameworks for best policy implementations (Heijnen et al, 2014).…”
Section: Introductionmentioning
confidence: 99%