Please use this identifier to cite or link to this item: http://hdl.handle.net/10071/14582
Author(s): Paulo, H.
Cardoso-Grilo, T.
Relvas, S.
Barbosa-Póvoa, A. P.
Date: 2017
Title: Designing integrated biorefineries supply chain: combining stochastic programming models with scenario reduction methods
Pages: 901-906
Reference: Paulo, H., Cardoso-Grilo, T., Relvas, S. & Barbosa-Póvoa, A. P. (2017). Designing integrated biorefineries supply chain: combining stochastic programming models with scenario reduction methods. In Antonio Espuña, Moisès Graells and Luis Puigjaner (Ed.), 27th European Symposium on Computer Aided Process Engineering – ESCAPE 27. (pp. 901-906). Barcelona: Elsevier.
DOI (Digital Object Identifier): 10.1016/B978-0-444-63965-3.50152-5
Keywords: Supply chain design
MILP model
Integrated biorefinery
Stochastic programming
Scenario reduction methods
Abstract: This paper addresses the design and planning of integrated biorefineries supply chain under uncertainty. A two-stage stochastic mixed integer linear programming (MILP) model is proposed considering the presence of uncertainty in the residual lignocellulosic biomass availability and technology conversion factors. Nevertheless, when the scenario tree approach is applied to a large real world case study, it generates a computationally complex problem to solve. To address this challenge the present paper proposes the improvement of the scenario tree approach through the use of two scenario reduction methods. The results illustrate the impact of the uncertain parameters over the network configuration of a real case when compared with the deterministic solution. Both scenario reduction methods appear promising and should be further explored when solving large scenario trees problems.
Peerreviewed: yes
Access type: Open Access
Appears in Collections:DMOG-CRI - Comunicações a conferências internacionais

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