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Improving the performance of natural gas pipeline networks fuel consumption minimization problems

机译:改善天然气管道网络的性能,将油耗最小化问题

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As the gas industry has developed, gas pipeline networks have evolved over decades into very complex systems. A typical network today might consist of thousands of pipes, dozens of stations, and many other devices, such as valves and regulators. Inside each station, there can be several groups of compressor units of various vintages that were installed as the capacity of the system expanded. The compressor stations typically consume about 3–5% of the transported gas. It is estimated that the global optimization of operations can save considerably the fuel consumed by the stations. Hence, the problem of minimizing fuel cost is of great importance. Consequently, the objective is to operate a given compressor station or a set of compressor stations so that the total fuel consumption is reduced while maintaining the desired throughput in the line. Two case studies illustrate the proposed methodology. Case 1 was chosen for its simple and small-size design, developed for the sake of illustration. The implementation of the methodology is thoroughly presented and typical results are analyzed. Case 2 was submitted by the French Company Gaz de France. It is a more complex network containing several loops, supply nodes, and delivery points, referred as a multisupply multidelivery transmission network. The key points of implementation of an optimization framework are presented. The treatment of both case studies provides some guidelines for optimization of the operating performances of pipeline networks, according to the complexity of the involved problems. © 2009 American Institute of Chemical Engineers AIChE J, 2010
机译:随着天然气工业的发展,天然气管道网络已经发展了数十年,成为非常复杂的系统。如今,典型的网络可能包含数千个管道,数十个站点以及许多其他设备,例如阀门和调节器。随着系统容量的扩大,在每个站内可以安装几组不同年份的压缩机单元。压缩机站通常消耗大约3–5%的运输气体。据估计,操作的全局优化可以大大节省加油站消耗的燃料。因此,使燃料成本最小化的问题非常重要。因此,目的是操作给定的压缩机站或一组压缩机站,以便减少总燃料消耗,同时保持管线中的期望产量。两个案例研究说明了所提出的方法。选择Case 1的原因是其简单小巧的设计,出于说明目的而开发。彻底介绍了该方法的实现,并分析了典型结果。案例2由法国Gaz de France公司提交。它是一个包含多个回路,供应节点和交付点的更复杂的网络,称为多供应源多交付传输网络。介绍了优化框架实施的关键点。根据所涉及问题的复杂性,两个案例研究的处理为优化管网的运行性能提供了一些指导。 ©2009美国化学工程师学会AIChE J,2010

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