CNPC Uses an Iterative Two-Stage Convex Relaxation Approach to Operate Natural Gas Pipelines

Published Online:https://doi.org/10.1287/inte.2016.0867

References

  • Andre J, Auray S, Jean Brac J, De Wolf D, Maisonnier G, Ould-Sidi M-M, Simonnet A (2013) Design and dimensioning of hydrogen transmission pipeline networks. Eur. J. Oper. Res. 229(1):239–251.CrossrefGoogle Scholar
  • Babonneau F, Nesterov Y, Vial J-P (2012) Design and operations of gas transmission networks. Oper. Res. 60(1):34–47.LinkGoogle Scholar
  • Borraz-Sanchez C, Haugland D (2011) Minimizing fuel cost in gas transmission networks by dynamic programming and adaptive discretization. Comput. Indust. Engrg. 61(2):364–372.CrossrefGoogle Scholar
  • Borraz-Sanchez C, Ríos-Mercado RZ (2009) Improving the operation of pipeline systems on cyclic structures by tabu search. Comput. Chemical Engrg. 33(1):58–64.CrossrefGoogle Scholar
  • Carter RG (1998) Pipeline optimization: Dynamic programming after 30 years. Pipeline Simulation Interest Group (PSIG) Annual Meeting (Pipeline Simulation Interest Group, Houston, TX).Google Scholar
  • De Wolf D, Smeers Y (2000) The gas transmission problem solved by an extension of the simplex algorithm. Management Sci. 46(11):1454–1465.LinkGoogle Scholar
  • Hellemo L, Midthun K, Tomasgard A, Werner A (2012) Natural gas infrastructure design with an operational perspective. Energy Procedia 26:67–73.CrossrefGoogle Scholar
  • Li X, Armagan E, Tomasgard A, Barton PI (2011) Stochastic pooling problem for natural gas production network design and operation under uncertainty. Amer. Inst. Chemical Engrg. J. 57(8):2120–2135.CrossrefGoogle Scholar
  • Percell PB, Ryan MJ (1987) Steady state optimization of gas pipeline network operation. Pipeline Simulation Interest Group (PSIG) Annual Meeting (Pipeline Simulation Interest Group, Houston, TX).Google Scholar
  • Ríos-Mercado RZ, Kim S, Boyd EA (2006) Efficient operation of natural gas transmission systems: A network-based heuristic for cyclic structures. Comput. Oper. Res. 33(8):2323–2351.CrossrefGoogle Scholar
  • Rømo F, Tomasgard A, Hellemo L, Fodstad M, Eidesen BH, Pedersen B (2009) Optimizing the Norwegian natural gas production and transport. Interfaces 39(1):46–56.LinkGoogle Scholar
  • Sanaye S, Mahmoudimehr J (2013) Optimal design of a natural gas transmission network layout. Chemical Engrg. Res. Design 91(12):2465–2476.CrossrefGoogle Scholar
  • Wong Pl, Larson R (1968) Optimization of natural-gas pipeline systems via dynamic programming. IEEE Trans. Automation 13(5):475–481.CrossrefGoogle Scholar
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