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Value of gas network infrastructure flexibility in supporting cost effective operation of power systems

机译:燃气网络基础设施的灵活性,有助于支持电力系统的成本效益运行

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摘要

The electricity system balancing is becoming increasingly challenging due to the integration of Renewable Energy Sources (RES). At the same time, the dependency of electricity network on gas supply system is expected to increase, as a result of employing flexible gas generators to support the electricity system balancing. Therefore the capability of the gas supply system to deliver gas to generators under a range of supply and demand scenarios is of a great importance. As potential solutions to improve security of gas and electricity supply, this paper investigates benefits of employing flexible multi-directional compressor stations as well as adopting a fully integrated approach to operate gas and electricity networks. A set of case studies for a GB gas and electricity networks in 2030 have been defined to quantify the value of an integrated operation paradigm versus sequential operation of gas and electricity networks. The results indicate there are significant overall system benefits (up to 65% in extreme cases) to be gained from integrated optimization of gas and electricity systems, emphasizing the important role of gas network infrastructure flexibility in efficiently accommodating the expected expansion of intermittent RES in future power systems.
机译:由于集成了可再生能源(RES),电力系统的平衡正变得越来越具有挑战性。同时,由于采用灵活的气体发生器来支持电力系统的平衡,因此电网对天然气供应系统的依赖性有望增加。因此,在一系列供需情况下,供气系统将气体输送到发电机的能力非常重要。作为提高天然气和电力供应安全性的潜在解决方案,本文研究了采用灵活的多向压缩机站以及采用完全集成的方法来运行天然气和电力网络的好处。已经定义了一组2030年的GB燃气和电力网络案例研究,以量化燃气和电力网络的综合运营范式与顺序运营的价值。结果表明,通过天然气和电力系统的集成优化,可以显着提高整体系统效益(在极端情况下,最高可达65%),强调了天然气网络基础设施灵活性在有效适应未来预期的间歇性RES扩展中的重要作用。电力系统。

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    Ameli, H; Strbac; Qadrdan;

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  • 年度 2017
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