某压缩站供电系统的优化与可靠性研究

N. Benchouia, Mohammed Saaidia
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引用次数: 0

摘要

随着天然气管道系统变得越来越大,越来越复杂,对这些设施进行优化操作和规划的重要性也越来越高。管道系统的资本成本和运营费用是如此之大,以至于即使是对系统使用的微小改进也可能涉及大笔资金。目的。本文提出了一种提高压缩机站供电系统可靠性和优化的方法。提出的工作的新颖之处在于开发了一种新的数学模型,该模型允许以最佳方式选择最合适的维护策略,以显着降低成本,并优化有用的关键性能指标-故障率,平均故障间隔时间,压缩机站供电系统设备的平均维修时间。从五个压缩站的不同能源示意图出发,应用图论来表示该数学模型就足够了。方法。未来的作业者面临的问题是,如何平衡两个主要方面:技术方面和经济方面。该方法引入了一种研究算法,从技术和经济两方面结合,计算压缩机站供电系统运行参数的最优值,以降低成本,提高性能指标。该算法可以在FORTRAN代码中实现。结果。该算法是一种计算维修费用的有效工具,并允许通过编程来定义最合适的维修策略。另一方面,该技术可作为其他设备的重要经济评价指标,以便在所有技术上可能的解决方案中选择能够获得最佳经济效果的解决方案。实用价值。本文提出的算法已在具有两台汽轮发电机的供电系统的第三种变体中进行了检验。优化的结果表明,选择C站作为管道的明显偏好,因为这表示最小的成本,这是算法优化器的定义。然后,重要的是采用最推荐的维护策略和实践,以确保供电系统的可用性,并避免意外停机,从而导致生产损失。
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Optimization and Reliability of the Power Supply Systems of a Compressor Station
As gas pipeline systems become larger and more complex, the importance of optimally operating and planning these facilities has increased. The capital costs and operating expenses of pipeline systems are so large that even small improvements in the use of the system can involve large sums of money. Purpose. This article proposes a method to improve the reliability and optimization of power supply systems for compressor stations. The novelty of the proposed work is the development of a new mathematical model that allows the choice of the most appropriate maintenance policies in the best way to significantly reduce costs as well as to optimize useful key performance indicators – failure rate, average time between breakdowns, the average repair time for equipment in compressor station electrical supply systems. Applying graph theory to represent this mathematical model from the schematic diagram of the different energy sources with respect to the five compressor stations is adequate. Methods. The problem that arises for the future operator or operator is, among others, how to balance two main aspects: a technical aspect and an economic aspect. The proposed methodology introduces a research algorithm to calculate the optimal values of the operating parameters of the power supply systems of compressor stations by combining technical and economic aspects in order to reduce costs and increase performance indicators. The proposed algorithm can be implemented in FORTRAN code. Results. The algorithm developed is an efficient tool for calculating maintenance costs and allows by means of programming to define the most appropriate maintenance policy. On the other hand, this technique could be used as an essential economic evaluation indicator for other equipment in order to choose among all the technically possible solutions the one which allow obtaining the best economic result. Practical value. The proposed algorithm has been examined in this third variant of the supply system with two turbogenerators. The result of the optimization shows a clear preference for selecting station C for the pipeline as this presents the minimum cost which is the definition of the algorithm optimizer. Then, it is important to adopt the most recommended maintenance policies and practices in order to ensure the availability of the power supply systems and to avoid unplanned outages with the resulting loss of production.
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