首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part O. Journal of Risk and Reliability >Adequacy and security analysis of interdependent electric and gas networks
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Adequacy and security analysis of interdependent electric and gas networks

机译:相互依存电气网络的充分性与安全分析

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摘要

In this article, adequacy and security assessments on the coupled operations of the electric and gas networks are performed. Extreme operating conditions and fault of components are considered as events that can impact the interdependent systems. The electric and gas networks are represented by an event-based direct current power flow model and by a transient one-dimensional mass flow model, respectively. Furthermore, the automations and safety strategies enforced by transmission system operators are represented within an original modelling approach. A quantitative analysis is performed with reference to the simplified energy infrastructures of Great Britain. Results highlight the contingencies which can jeopardize security and identify the components that are prone to fail and induce large gas pressure instabilities and loss of supply, and the locations in the gas grid that are susceptible to pressure violation. Moreover, a simulated 30% increase of the peak gas demand in 2015 is a limit for safe operations of the gas network, but the coupled systems are robust enough to avoid the spread of a cascading failure across networks. These results allow preventing critical operating conditions induced by the interaction between networks and can guide safety-based decisions on system reinforcements and the development of mitigating actions.
机译:在本文中,执行对电气和天然气网络的耦合操作的充分性和安全评估。组件的极端操作条件和故障被视为可能影响相互依存系统的事件。电气和气体网络由基于事件的直流电流模型和瞬态一维质量流量模型表示。此外,传输系统运营商强制执行的自动化和安全策略在原始建模方法中表示。参考英国简化的能量基础设施进行定量分析。结果突出了可能危及安全性的突发事件,并识别易于失败的组件,并诱导大型气体压力不稳定性和供应损失,以及易受压力违规的气体网格中的位置。此外,2015年峰值气体需求的模拟30%是对气体网络安全操作的限制,但耦合系统足够坚固,以避免跨网络的级联失败的传播。这些结果允许防止网络之间的相互作用引起的关键操作条件,并可以指导基于安全的制度增强和减轻行动的发展的决策。

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