4.7 Article

Multi-period supply and demand balance of large-scale and complex natural gas pipeline network: Economy and environment

期刊

ENERGY
卷 264, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.energy.2022.126104

关键词

Natural gas pipeline network; Supply and demand balance; Multi-period; Flow allocation; Hydraulic characteristics

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This paper proposes an optimization method for the supply and demand balance of natural gas pipeline networks by considering carbon emission targets and making peak shaving and flow rate allocation schemes. The method accurately describes the hydraulic situation under each allocation scheme and can optimize economic efficiency by 15.58%. It also reduces annual carbon emissions by 58% in large-scale pipeline networks.
The dual carbon goal and one country network indicate the greater challenge of balancing supply and de-mand in natural gas pipeline networks. This paper proposes an optimization method for supply and demand balance of large and complex natural gas pipeline network to respond the demand changes of downstream users by making the peak shaving and flow rate allocation scheme, considering carbon emission targets to improve economic and environmental benefits. This method considers the pipeline network elements including bidirec-tional pipeline, multiple pipeline structure, compressor station and gas storage so on, and couples the hydraulic characteristics to accurately describe the hydraulic situation of the pipeline under each allocation scheme. Case 1 shows that the economic efficiency is optimized by 15.58% and compensates for the overgrowth demand generated through the initial stage. Compared with TGNET, the average relative error of hydraulic was only 2.89%. Case 2 shows that the optimal flow rate allocation scheme can be further improved in the case of multiple pipelines. Case 3 for a large-scale pipeline network reduces 58% annual carbon emissions by adjusting the flow rate allocation scheme. This study can provide decision support for the allocation and operation of natural gas pipeline network.

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