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Natural gas as a bridge to sustainability: Infrastructure expansion regarding energy security and system transition

机译:天然气作为可持续性的桥梁:关于能源安全和系统过渡的基础设施扩展

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摘要

Energy security and the transformation of energy systems towards a sustainable energy supply are two central challenges with respect to planning the expansion of gas infrastructure. Taking the gas transmission system in Germany as an example, this work examines how the transformation of energy systems affects energy security in the long term (up to the year 2050) and why this should be taken into account when planning the expansion of transmission networks in the short to medium term. To achieve this, we use energy system modeling to derive scenario based future gas demands and our optimization model GASOPT to solve derived load flow problems. The results show how gas can act as a bridging energy source in the transformation of energy systems from a fossil-based to a renewable energy supply, as it produces comparatively less climate-damaging emissions than coal and oil. However, the gas demand decreases in both the energy transition scenario Energiewende (- 55,0% by 2050 compared to 2015) and the current measures scenario Reference ( - 72,1%), leading to an increase in natural-gas-related energy security. This is understood as an interaction between import dependency, security of supply, and affordability. Load flow analyses of the current grid design considering lacking imports or empty gas storages with combined full load operation of gas fired power plants demonstrate the technical feasibility of challenging grid situations in the long term. Further significant transmission grid expansions should therefore be avoided, with freed-up transmission and storage capacity instead being used for other gaseous energy sources such as hydrogen or other gases.
机译:能源安全和能源系统对可持续能源供应的转变是对规划扩大天然气基础设施的核心挑战。以德国为例,为德国的燃气传输系统为例,研究了能源系统的转型如何长期影响能源安全性(最多2050年)以及为什么在规划传输网络的扩展时应考虑这一点短至中期短期。为实现这一目标,我们使用能源系统建模来导出基于环境的未来气体需求和我们的优化模型加法,以解决导出的负载流问题。结果表明,气体如何充当能源系统的桥接能源,从化石为基于化石的可再生能源供应,因为它产生比煤和油的气候损坏的气候损害相对较低。然而,能量转换场景EnergiewEnde( - 与2015年相比,55,0%到2050)的气体需求减少,目前的措施方案参考( - 72,1%),导致天然气相关能量增加安全。这被理解为进口依赖性,供应安全性和可负担性之间的互动。考虑缺乏进口或空气储存的电流设计的负载流程分析,随着燃气发电厂的组合全负荷运行,展示了长期挑战栅格情况的技术可行性。因此,应避免进一步的显着的传输电网膨胀,以释放传输和存储容量,而是用于其他气态能源,例如氢气或其他气体。

著录项

  • 来源
    《Applied Energy 》 |2019年第2期| 113377.1-113377.16| 共16页
  • 作者单位

    Forschungszentrum Julich Syst Anal & Technol Evaluat IEK STE Inst Energy & Climate Res D-52425 Julich Germany|Rhein Westfal TH Aachen Inst Reactor Safety & Reactor Technol LRST D-52072 Aachen Germany;

    Forschungszentrum Julich Syst Anal & Technol Evaluat IEK STE Inst Energy & Climate Res D-52425 Julich Germany;

    Forschungszentrum Julich Syst Anal & Technol Evaluat IEK STE Inst Energy & Climate Res D-52425 Julich Germany;

    Forschungszentrum Julich Nucl Waste Management & Reactor Safety IEK 6 Inst Energy & Climate Res D-52425 Julich Germany|Rhein Westfal TH Aachen Inst Reactor Safety & Reactor Technol LRST D-52072 Aachen Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy security; Energy system transition; Gas grid modeling; Infrastructure expansion planning; Energy scenarios; Natural gas;

    机译:能源安全;能量系统转换;气体网格建模;基础设施扩展规划;能源场景;天然气;

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