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Optimal design and global sensitivity analysis of a 100% renewable energy sources based smart energy network for electrified and hydrogen cities

机译:基于100%可再生能源的电气化和氢城市智能能源网络的最佳设计与全局敏感性分析

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摘要

This study aims to develop a new optimization model in order to design and analyze a 100% renewable energy network. Two distinct smart energy systems are proposed: electrified and hydrogen cities, in which electricity and hydrogen are used to transfer energy from a variety of renewable sources to different energy demands (electricity, thermal energy, and hydrogen). The proposed optimization model includes minimizing the total annual cost as an objective function subject to various constraints that represent the features of the smart energy cities, such as different types of communities (urban and rural) and energy distribution methods (electricity and hydrogen grids). We then applied the proposed model to the design problem of a 100% RES energy network in Jeju Island, Korea. As a result, we identified the optimal system configuration and energy flow in each smart energy system and analyzed the major cost drivers in the levelized cost of energy of 0.43-0.65 $/kWh. Based on the results of the case study, we investigated the sensitivity of crucial factors such as the cost of the technology, the quantity and structure of the demand, and renewable sources potentials on the system configuration and economics. The global sensitivity analysis study provides comprehensive solutions for the design and operation of two smart energy systems in different locations and types of city.
机译:本研究旨在开发新的优化模型,以设计和分析100%可再生能源网络。提出了两个不同的智能能量系统:电气化和氢气城,其中电力和氢气用于将能量从各种可再生源转移到不同的能量需求(电力,热能和氢)。所提出的优化模型包括将年度成本最小化,以考虑到各种限制的客观函数,这些限制代表智能能源城市的特征,例如不同类型的社区(城乡)和能量分配方法(电力和氢网)。然后,我们将拟议模型应用于韩国济州岛100%res能源网络的设计问题。因此,我们确定了每个智能能量系统中的最佳系统配置和能量流量,并分析了大型成本驱动因素,以0.43-0.65 $ / kWh的能源成本。根据案例研究的结果,研究了关键因素,如技术成本,需求的数量和结构等关键因素,以及对系统配置和经济学的可再生源潜力的敏感性。全球敏感性分析研究为两个智能能源系统的不同地点和城市类型的设计和运行提供了全面的解决方案。

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