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Optimal Planning of Gas Storage In Natural Gas System Considering N-1 Failures of Pipelines

机译:考虑管道N-1故障的天然气系统储气优化规划

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In natural gas transmission system, maintaining all load nodes, especially the nodes with gas-fired power plants, within their required operational pressure ranges under N-l failures of pipelines is a challenging problem. In this paper, considering the slow dynamics of gas travelling, the transient model of natural gas network is used to represent the dynamic evolutions of mass flow rates through the branches and pressures at nodes after the occurrence of N-l failures of pipelines, including the pipeline connecting directly or non-directly with source node. For a specific storage candidate installation site, the determination of its optimal capacity to cope with a specific pipeline failure is formulated as a mixed integer linear programming (MILP) problem. Considering all N-l pipelines failures and storage candidate installation sites, the optimal planning of gas storage, including its optimal capacity and installation site, is then obtained. A test natural gas network with 25 nodes and 26 branches is established and the effectiveness of the optimal gas storage planning model is demonstrated.
机译:在天然气传输系统中,在管道的N-1故障下,将所有负载节点(尤其是燃气发电厂的节点)保持在其所需的工作压力范围内是一个具有挑战性的问题。本文考虑了天然气运移的缓慢动力学过程,利用天然气网络的瞬态模型来表示管道发生N1失效(包括管道连接)后,通过分支的质量流量和节点处压力的动态演变。直接或非直接与源节点。对于特定的存储候选安装站点,确定其应对特定管道故障的最佳能力的公式表示为混合整数线性规划(MILP)问题。考虑到所有的N-1条管道故障和可能的储气库安装地点,便获得了包括最佳容量和安装地点在内的储气库的最佳计划。建立了具有25个节点和26个分支的天然气测试网络,并证明了最佳储气计划模型的有效性。

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