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A Stochastic Programming Approach for the Planning and Operation of a Power to Gas Energy Hub with Multiple Energy Recovery Pathways

机译:具有多种能量回收途径的燃气发电中枢的规划和运行的随机规划方法

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There is a need for energy storage to improve the efficiency and effectiveness of energy distribution with the increasing penetration of renewable energy sources. Among the various energy storage technologies being developed, ‘power-to-gas’ is one such concept which has gained interest due to its ability to provide long term energy storage and recover the energy stored through different energy recovery pathways. Incorporation of such systems within the energy infrastructure requires analysis of the key factors influencing the operation of electrolyzers and hydrogen storage. This study focusses on assessing the benefits power-to-gas energy storage while accounting for uncertainty in the following three key parameters that could influence the operation of the energy system: (1) hourly electricity price; (2) the number of fuel cell vehicles serviced; and (3) the amount of hydrogen refueled. An hourly time index is adopted to analyze how the energy hub should operate under uncertainty. The results show that there is a potential economic benefit for the power-to-gas system if it is modeled using the two-stage stochastic programming approach in comparison to a deterministic optimization study. The power-to-gas system also offers environmental benefits both from the perspective of the producer and end user of hydrogen.
机译:随着可再生能源的日益普及,需要储能以提高能量分配的效率和效力。在正在开发的各种储能技术中,“天然气发电”就是一个这样的概念,由于其提供长期储能并通过不同的能量回收途径回收储能的能力而引起了人们的兴趣。要将此类系统并入能源基础设施,需要分析影响电解器和氢气存储的关键因素。这项研究的重点是评估电能对天然气储能的收益,同时考虑以下可能影响能源系统运行的三个关键参数的不确定性:(1)每小时电价; (2)服务的燃料电池汽车数量; (3)加氢量。采用每小时时间指数来分析能源枢纽在不确定情况下应如何运行。结果表明,与确定性优化研究相比,如果使用两阶段随机规划方法对电力气系统进行建模,则有潜在的经济利益。从氢气的生产者和最终用户的角度来看,燃气发电系统还具有环境效益。

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