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Modeling and Simulation of Gas Distribution Networks in a Multienergy System Environment

机译:多型系统环境中气体分配网络的建模与仿真

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摘要

The role of modeling and simulation in development and operational planning of gas distribution networks is crucially important for system designers and operators, since it allows to get a detailed knowledge of the hydraulic properties of the network. The challenges in simulation of gas distribution networks are usually that of computational efficiency of the methods due to large dimensionality of the simulated networks, though it can also be related to flexible incorporation of the peripheral equipment (e.g., valves, compressors, pressure, and flow regulators) into the network model. Today, however, new challenges emerge as a consequence of market changes facing the gas industry in a multienergy system environment. These changes are expected to bring about significant fluctuations and uncertainty in distributed gas supply and demand as a consequence of increased gas-to-power activities, and a number of decentralized entry points, where deliveries of both liquefied natural gas (LNG) and renewable gases, such as hydrogen and synthetic methane, can be achieved. In this article, technical challenges related to problems with maintaining a stable overall gas distribution system with growing diversification of gas quality combined with gas trading activities (nominations and allocations) in units of energy rather than volume are addressed. Models and selected methods of steady state and transient analysis of gas networks relevant to the ongoing discussion in the field of multienergy systems are considered. The simulation problems of a real large-scale gas distribution network are presented and discussed.
机译:建模和仿真在天然气分销网络的开发和运营规划中的作用对于系统设计人员和运营商来说至关重要,因为它允许提供网络液压特性的详细了解。气体分配网络模拟中的挑战通常是由于模拟网络的大维度导致的方法的计算效率,尽管它也可以与周边设备的灵活结合有关(例如,阀门,压缩机,压力和流量。调节器)进入网络模型。然而,今天,新的挑战出现了在多念系统环境中的市场变化面临的市场变化。这些变化预计将引起分布式气体供应和需求的显着波动和不确定性,因为增加了气体到电力活动,以及多种分散的入口点,其中液化天然气(LNG)和可再生气体的交付例如氢和合成甲烷,可以实现。在本文中,与在能量单位而不是体积的单位,维持稳定的整体气体分配系统与稳定的整体气体分配系统与储气活动(提名和分配)相结合的技术挑战。考虑了与多entergy系统领域持续讨论相关的气体网络稳态和瞬态分析的模型和选择的方法。提出和讨论了实际大规模气体分配网络的仿真问题。

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