Enhancing gas pipeline network efficiency through VIKOR method

Q1 Decision Sciences
Nourhan El. Gharieb Mohammad, Yassmen Youssef Rawash, S. Aly, M. Awad, Mostafa Hassanein Hussein Mohamed
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引用次数: 0

Abstract

The optimization of gas pipeline networks is critical for efficient and cost-effective transportation of natural gas. This study develops a mathematical model capable of analyzing different network configurations, including branched and branched-cyclic topologies, to explore the optimization of gas pipeline network conditions. The research provides valuable insights into the gas pipeline network optimization process, empowering industry stakeholders to make informed decisions and enhance performance in terms of efficiency, reliability, and cost-effectiveness. To attain these objectives, this study utilizes advanced simulation tools, state-of-the-art optimization algorithms, and sophisticated mathematical models that accurately represent the network's behavior. The optimization process aims to minimize the network's power requirements while simultaneously maximizing gas flow rate and optimizing line pack, ensuring optimal utilization of the pipeline infrastructure. The VIKOR (VIekriterijumsko KOmpromisno Rangiranje) method is identifying the most optimal network configuration and operating conditions. Our analysis applies this approach to three case studies, demonstrating its effectiveness in identifying the best network configurations. Additionally, the calculations of total cost and fuel consumption coincide with relative closeness, which confirms the accuracy of our proposed method, whereas optimal scenarios of the three cases have the minimum total cost among all scenarios. In conclusion, this research successfully develops a mathematical model and optimization approach to tackle the complexities of gas pipeline network optimization. The application of The VIKOR method and the analysis of case studies offer substantial evidence of its effectiveness.
利用VIKOR方法提高天然气管网效率
天然气管网的优化是实现天然气高效、低成本运输的关键。本研究建立了一个能够分析不同网络结构的数学模型,包括分支拓扑和分支循环拓扑,以探索天然气管网条件的优化。该研究为天然气管网优化过程提供了有价值的见解,使行业利益相关者能够做出明智的决策,并在效率、可靠性和成本效益方面提高绩效。为了实现这些目标,本研究利用先进的仿真工具、最先进的优化算法和复杂的数学模型来准确地表示网络的行为。优化过程旨在最大限度地减少网络的功率需求,同时最大限度地提高气体流速和优化管线包,确保管道基础设施的最佳利用。VIKOR (VIekriterijumsko KOmpromisno Rangiranje)方法用于识别最优的网络配置和运行条件。我们的分析将此方法应用于三个案例研究,展示了它在确定最佳网络配置方面的有效性。此外,总成本和燃料消耗的计算相对接近,这证实了我们所提出的方法的准确性,而三种情况的最优方案在所有方案中总成本最小。总之,本研究成功地建立了解决天然气管网优化问题的数学模型和优化方法。VIKOR方法的应用和案例分析为其有效性提供了充分的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Decision Making Applications in Management and Engineering
Decision Making Applications in Management and Engineering Decision Sciences-General Decision Sciences
CiteScore
14.40
自引率
0.00%
发文量
35
审稿时长
14 weeks
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