首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Integrated Electrical and Gas Network Flexibility Assessment in Low-Carbon Multi-Energy Systems
【24h】

Integrated Electrical and Gas Network Flexibility Assessment in Low-Carbon Multi-Energy Systems

机译:低碳多能源系统中的综合电气和燃气网络灵活性评估

获取原文
获取原文并翻译 | 示例
           

摘要

In power systems with more and more variable renewable sources, gas generation is playing an increasingly prominent role in providing short-term flexibility to meet net-load requirements. The flexibility provided by the gas turbines in turn relies on the flexibility of the gas network. While there are several discussions on the ability of the gas network in providing this operational flexibility, this has not been clearly modeled or quantified. In addition, the gas network may also be responsible for supplying heating technologies, and low-carbon scenarios see a tighter interaction between the electricity, heating and gas sectors, which calls for a holistic system assessment. On these premises, this paper presents an original methodology to quantify the flexibility the gas network can provide to the power system, as well as the constraints it may impose on it, with also consideration of different heating scenarios. This is achieved by a novel multi-stage integrated gas and electrical transmission network model, which uses electrical DC OPF and both steady-state and transient gas analyses. A novel metric that makes use of the concept of is also introduced to assess the integrated gas and electrical flexibility, which is then used to impose gas-related inter-network inter-temporal constraints on the electrical OPF. Case studies are performed for the Great Britain transmission system for different renewables and heating scenarios to demonstrate the proposed integrated flexibility assessment methodology, provide insights into the effects of changes to the heating sector on the multi-energy system’s combined flexibility requirements and capability, and assess how the electrical network can experience local generation and reserve constraints related to the gas network’s lack of flexibility.
机译:在具有越来越多可变的可再生资源的电力系统中,天然气发电在提供短期灵活性以满足净负荷要求方面发挥着越来越重要的作用。燃气轮机提供的灵活性又取决于燃气网络的灵活性。尽管对燃气网络提供这种操作灵活性的能力进行了多次讨论,但尚未对其进行清晰的建模或量化。此外,天然气网络还可能负责提供供暖技术,低碳情景中,电力,供热和天然气部门之间的相互作用更加紧密,这需要进行整体系统评估。在这些前提下,本文提出了一种新颖的方法来量化燃气网络可为电力系统提供的灵活性,以及​​可能对电力系统施加的约束,同时还要考虑不同的供热方案。这是通过新颖的多级集成气体和电气传输网络模型实现的,该模型使用电气DC OPF以及稳态和瞬态气体分析。还引入了利用的概念的新颖度量来评估集成的气体和电气灵活性,然后将其用于对电气OPF施加与气体相关的跨网络时际约束。针对不同的可再生能源和供暖情景,对英国输电系统进行了案例研究,以证明拟议的综合灵活性评估方法,深入了解供热行业变化对多能源系统综合灵活性要求和能力的影响,并进行评估电网如何体验本地发电以及与天然气网络缺乏灵活性相关的储备限制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号