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An Equation-Based Approach to Transition Specifications in Material Flow Networks

dc.contributor.authorMoeller, Andreas
dc.contributor.editorGómez, Jorge Marx
dc.contributor.editorSonnenschein, Michael
dc.contributor.editorVogel, Ute
dc.contributor.editorWinter, Andreas
dc.contributor.editorRapp, Barbara
dc.contributor.editorGiesen, Nils
dc.date.accessioned2019-09-16T03:12:57Z
dc.date.available2019-09-16T03:12:57Z
dc.date.issued2014
dc.description.abstractMaterial flow analysis (MFA) describes a class of methods that allow analysing and designing material and energy flow systems like supply chains, eco-industrial parks or production sites. Material flow networks are one of the methods in the field of MFA. Based on the Petri nets, the material flow network make it possible to conduct static MFA (steady-state modelling) as well as dynamic MFA (continuous and discrete-event simulation). In this contribution focus will be on the important building blocks of material flow networks: transitions. Transition specifications can be regarded as parameterized sub-models, which may exhibit nonlinear behaviour. Linear transition specifications that consist of fixed production coefficients are always not adequate to represent the sub-models. In the following a more powerful equation-based approach to process flowsheeting is discussed. The equation-based approach makes it possible to specify a transition with aid of a system of non-linear algebraic equation including parameters, design specifications and loops.de
dc.description.urihttp://enviroinfo.eu/sites/default/files/pdfs/vol8514/0165.pdfde
dc.identifier.urihttps://dl.gi.de/handle/20.500.12116/25724
dc.publisherBIS-Verlag
dc.relation.ispartofProceedings of the 28th Conference on Environmental Informatics - Informatics for Environmental Protection, Sustainable Development and Risk Management
dc.relation.ispartofseriesEnviroInfo
dc.titleAn Equation-Based Approach to Transition Specifications in Material Flow Networksde
dc.typeText/Conference Paper
gi.citation.publisherPlaceOldenburg
gi.conference.date2014
gi.conference.locationOldenburg
gi.conference.sessiontitleMaterial Flow Management and LCAs

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