A Facility Location Model for Bidirectional Flows

Published Online:https://doi.org/10.1287/trsc.1070.0215

References

  • Ahuja R. K., Magnanti T. L., Orlin J. B.Network Flows (1993) (Prentice Hall, Upper Saddle River, NJ) Google Scholar
  • Balinski M. L. Integer programming: Methods, uses, computation. Management Sci. (1965) 12:253–313LinkGoogle Scholar
  • Barros A. I., Dekker R., Scholten V. A two-level network for recycling sand: A case study. Eur. J. Oper. Res. (1998) 110:199–214CrossrefGoogle Scholar
  • Beamon B. M., Fernandes C. Supply chain network configuration for product recovery. Production Planning Control (2004) 15:270–281CrossrefGoogle Scholar
  • Bloemhof-Ruwaard J. M., Salomon M., Van Wassenhove L. The capacitated distribution and waste disposal problem. Eur. J. Oper. Res. (1996) 88:490–503CrossrefGoogle Scholar
  • CIAThe World Fact Book—Rank Order GDP (2006) . http://www.cia.gov/cia/publications/factbook/rankorder/2001rank.htmlGoogle Scholar
  • Crainic T. G., Frangioni A., Gendron B. Bundle-based relaxation methods for multicommodity capacitated fixed charge network design. Discrete Appl. Math. (2001) 112:73–99CrossrefGoogle Scholar
  • Crowder H. Computational improvements for subgradient optimization. Symposia Mathematica (1976) 19(Academic Press, New York) 357–372Google Scholar
  • De Brito M. Managing reverse logistics or reversing logistics management? (2003) . ERIM Ph.D. Series N.35, Erasmus University Rotterdam, Rotterdam, The NetherlandsGoogle Scholar
  • Enright T. Post holiday logistics. trafficWORLD (2003) 20:5–13Google Scholar
  • Fisher M. L. The Lagrangian relaxation method for solving integer programming problems. Management Sci. (1981) 32:1–18LinkGoogle Scholar
  • Fisher M. L. An applications oriented guide to Lagrangian relaxation. Interfaces (1985) 15:1–121LinkGoogle Scholar
  • Fleischmann M., Bloemhof-Ruwaard J., Beullens P., Dekker R., Dekker R., Fleishmann M., Inderfurth K., Van Wassenhove L. Reverse logistics network design. Reverse Logistics: Quantitative Models for Closed-Loop Supply Chains (2004) (Springer-Verlag, New York) 120–153CrossrefGoogle Scholar
  • Fleischmann M., Buellens P., Boemhof-Ruwaard J., Van Wassenhove L. The impact of product recovery on logistics network design. Production Oper. Management (2001) 10:156–173CrossrefGoogle Scholar
  • Fleischmann M., Krikke H. R., Dekker R., Flapper S. D. P. A characterisation of logistics networks for product recovery. Omega (2000) 28:653–666CrossrefGoogle Scholar
  • Jayaraman V., Guide V. D. R., Srivastava R. A closed-loop logistics model for remanufacturing. J. Oper. Res. Soc. (1999) 50:497–508CrossrefGoogle Scholar
  • Jayaraman V., Patterson R. A., Rolland E. The design of reverse distribution networks: Models and solution procedures. Eur. J. Oper. Res. (2003) 150:128–149CrossrefGoogle Scholar
  • Krikke H. Recovery strategies and reverse logistic network design. (1998) . Ph.D. thesis, University of Twente, Enschede, The NetherlandsGoogle Scholar
  • Krumwiede D. W., Chwen S. A model for reverse logistics entry by third-party providers. Omega (2002) 30:325–333CrossrefGoogle Scholar
  • Majumder P., Groenevelt H. Competition in remanufacturing. Production Oper. Management (2001) 10(2):125–141CrossrefGoogle Scholar
  • Marin A., Pelegrin B. The return plant location problem: Modelling and resolution. Eur. J. Oper. Res. (1998) 104:375–392CrossrefGoogle Scholar
  • Rogers D. S., Tibben-Lembke R.Going Backwards: Reverse Logistics Trends and Practices (1999) (Reverse Logistics Executive Council, Reno, NV) Google Scholar
  • Savaskan R. C. Strategic decentralization of reverse channel in a closed loop supply chain: The case of competing retailers. Management Sci. (2006) 52:1–14LinkGoogle Scholar
  • Savaskan R. C., Aytekin U. A dynamic life cycle pricing model with product remanufacturing. (2007) . Working paper, Kellogg School of Management, Northwestern University, Evanston, ILGoogle Scholar
  • Savaskan R. C., Corbett C., Guide V. D. R., Van Wassenhove L. N. Contracting and coordination in closed-loop supply chains. Business Aspects of Closed-Loop Supply Chains (2002) 2(Carnegie Mellon University Press, Pittsburgh, PA) 110–125Google Scholar
  • Savaskan R. C., Bhattacharya S., Van Wassenhove L. N. Closed-loop supply chain models with remanufacturing. Management Sci. (2004) 50:239–252LinkGoogle Scholar
  • Savaskan R. C., Coughlan A., Shulman J. Product returns policies and value of information. (2007a) . Working paper, Kellogg School of Management, Northwestern University, Evanston, ILGoogle Scholar
  • Savaskan R. C., Coughlan A., Shulman J. Product returns policies under competition. (2007b) . Working paper, Kellogg School of Management, Northwestern University, Evanston, ILGoogle Scholar
  • Savaskan R. C., Debo L., Van Wassenhove L. N., Dekker R., Fleishman M., Inderfurth K., Van Wassenhove L. N. Coordination in closed-loop supply chains. Reverse Logistics: Quantitative Models for Closed-Loop Supply Chains (2003) (Springer-Verlag, New York) 253–272Google Scholar
  • Spengler T., Puchert H., Penkuhn T., Rentz O. Environmental integrated production and recycling management. Eur. J. Oper. Res. (1997) 97:308–326CrossrefGoogle Scholar
  • Zhao X., Luh P. B. New bundle methods for solving Lagrangian relaxation dual problems. J. Optim. Theory Appl. (2002) 113(2):373–397CrossrefGoogle Scholar
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