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A cross-border natural gas supply system to support the electricity industry in the countries of the Gulf Cooperation Council-GCC: A large scale mixed integer linear mathematical programming model of the production, transportation, and storage of natural gas.

机译:支持海湾合作委员会(GCC)国家电力行业的跨境天然气供应系统:天然气生产,运输和储存的大型混合整数线性数学规划模型。

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摘要

To deign a natural gas transmission network for the GCC, a mixed integer linear mathematical programming model has been proposed. The gas network will permit the free flow of gas among the GCC countries in order for them to meet increasing, fluctuating, predicted electricity demands. The objective function that needs to be minimized holds the cost components of the network; these are the capital costs of new gas sources, storage areas, and pipelines, and the operating costs of the system: gas production, storage, and transportation. The linear constraints in the model descript the conservation of flow at each node of the network, system capacities, inventory, and demand requirements. During the 20 years which are the length set for the planning horizon, the model chooses the components that should be added to the network and the timings at which they become part of the network. The 0--1 variables are the decision variables associated with the decisions to add to the network the different components. The GCC gas transmission network is too large to be solved in a reasonable time; this is due to the presence of large number of binary variables. A two-step method has been proposed in this study to solve the problem to a satisfactory solution in a competitive time. Three gas network designs have been proposed; each design is the recommended design under one of the three electricity demand growth rate scenarios in Saudi Arabia. The three designs have shown to be superior to the electricity transmission option for the GCC in terms of the system total discounted cost.
机译:为了设计GCC的天然气传输网络,提出了混合整数线性数学规划模型。天然气网络将允许海湾合作委员会国家之间的天然气自由流动,以使它们能够满足不断增长的,波动的,可预测的电力需求。需要最小化的目标函数包含网络的成本部分;这些是新的气源,存储区域和管道的资本成本,以及系统的运营成本:天然气的生产,存储和运输。模型中的线性约束描述了网络每个节点的流量守恒,系统容量,库存和需求需求。在为计划范围设定的20年期限内,该模型选择应添加到网络中的组件以及它们成为网络一部分的时间。 0--1变量是与将不同组件添加到网络的决策相关联的决策变量。 GCC气体传输网络太大,无法在合理的时间内解决;这是由于存在大量的二进制变量。在这项研究中提出了一种两步法来在竞争时间内将问题解决为令人满意的解决方案。提出了三种燃气网络设计方案。在沙特阿拉伯的三种电力需求增长率方案之一下,每种设计都是推荐的设计。就系统总折扣成本而言,这三种设计已显示出优于GCC的电力传输选项。

著录项

  • 作者

    Al-Salamah, Muhammad.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 403 p.
  • 总页数 403
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;
  • 关键词

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