Choosing the best solutions for multimodal oil transportation

G. V. Gogrichiani, A. Lyashenko
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引用次数: 2

Abstract

Background: to organize multimodal transportation and choose the best route option for fuel delivery, it is necessary to develop an algorithm for choosing the best solution from the considered ones. This is indicated in the Strategy of scientific and Technological Development of the Russian Railways Holding Company for the period up to 2025 and for the future of 2030 ("White Paper", where on pages 25-26 it is said about the need to develop new transport and logistics products and services in global transport chains in the development of multimodal transport and the need to develop and organize new multimodal freight transport). Federal Railway Administrations of the United States, page 127 of the White Paper, points to the need to improve the methodology of integrated multimodal transport planning at the global, national and regional levels, increase the demand for transport and logistics services, and transition to supply chain management. Aim: to develop a method for multi-criteria rationalization of the choice of multimodal transport routes with the possibility of considering hypothetical options. Materials and Methods: the fundamental works of leading scientists in the field of improving the efficiency of production in accordance with the needs of the economy in transportation A.V. Annenkov, P.B. Romanova were used. In the field of justification of decisions on cargo terminals, determining the volume of tank farms with the possibility of their expansion O.B. Malikov, V.N. Sapronov. The application of multi-criteria rationalization by comparing the criteria under consideration is given in the work of A.T. Osminin, which developed a scientifically based method aimed at creating analytical and control systems. In the field of risk analysis and assessment of the work of A.G. Kotenko. The works of A.Y. Akhriev, A.B. Egorov, A.A. Kalushin, V.N. Mirushkin, E.V. Pasyunin, and A.V. Savelyev were studied in the field of improving the optimization of the oil transshipment complex, and the works of M.A. Nazarov and O.M. Sergeeva in the segment of logistics of river and sea oil transportation. Results: it consists in improving the quality of solutions to problems in the transportation of liquid fuel by means of transport in multimodal communication based on the use of the developed method. The set of criteria considered in the method allows you to set and solve transport problems with almost no restrictions on complexity, which in each case allows you to get better results. Conclusion: Using the method in practice allows not only to objectively find the best solution from the considered ones, but also to study hypothetical transportation schemes with the possible construction of new tracks and their elements, and compare existing and new schemes by a set of criteria, including construction costs and payback time of new tracks, and as a result find the best solution to the task.
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选择多式联运的最佳解决方案
背景:为了组织多式联运,选择最佳的燃料输送路线,需要开发一种算法,从考虑的方案中选择最佳方案。这在俄罗斯铁路控股公司到2025年和2030年未来的科技发展战略中得到了体现(“白皮书”,其中25-26页提到了在多式联运发展中需要在全球运输链中开发新的运输和物流产品和服务,以及需要开发和组织新的多式联运货运)。美国联邦铁路管理局在白皮书第127页指出,需要在全球、国家和地区各级改进综合多式联运规划方法,增加对运输和物流服务的需求,并向供应链管理过渡。目的:在考虑假设选项的可能性下,开发一种多式联运路线选择的多准则合理化方法。材料和方法:根据运输经济的需要,采用了A.V. Annenkov, P.B. Romanova在提高生产效率方面的领先科学家的基础工作。在货运站决策的正当性领域,确定油库的容量及其扩展的可能性。在A.T. Osminin的工作中,通过比较所考虑的标准来应用多标准合理化,他开发了一种基于科学的方法,旨在创建分析和控制系统。在风险分析和评估领域的工作A.G. Kotenko。研究了A.Y.阿赫里耶夫、A.B.叶戈罗夫、A.A.卡卢申、V.N.米鲁什金、E.V.帕尤宁和A.V.萨维利耶夫在改善石油转运综合体优化领域的工作,以及M.A.纳扎罗夫和O.M.谢尔盖耶娃在河海石油运输物流领域的工作。结果:基于该方法的应用,提高了多式联运中液体燃料运输问题解决方案的质量。该方法中考虑的一组标准允许您在几乎没有复杂性限制的情况下设置和解决传输问题,这在每种情况下都允许您获得更好的结果。结论:在实际应用中,该方法不仅可以客观地从考虑的方案中找到最优方案,而且可以研究可能新建轨道的假设交通方案及其要素,并根据新建轨道的建设成本和投资回报时间等一套标准对现有方案和新方案进行比较,从而找到任务的最佳解决方案。
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