Integrated Modeling and Optimal Operation of Multi-Energy System for Coastal Community

Yang Chen, Jun Chen, Chen-Zhe Liu, Guodong Liu, Maximiliano F. Ferrari, Aditya Sundararajan
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Abstract

Focusing on remote, isolated, and underserved communities, a multi-energy system is designed in this research which is capable of utilizing different energy sources in a more coordinated and energy-efficient way to support various demands, such as fresh water, electricity, hydrogen, thermal demand, etc. The energy sources considered are renewables (wind, solar, marine) and natural gas. The energy conversion process includes water desalination, gas combustion, water electrolyzation, and different types of storage (hydrogen tank, electricity, thermal, etc.) are designed to serve as buffers in supply-demand balancing. Sets of experiments are designed to demonstrate the effectiveness of the proposed operating model and investigate the impact of uncertainties from renewable generations and demands.
沿海社区多能源系统集成建模与优化运行
本研究针对偏远、隔离和服务不足的社区,设计了一种多能源系统,能够以更协调和节能的方式利用不同的能源,以支持各种需求,如淡水、电力、氢气、热需求等。考虑的能源是可再生能源(风能、太阳能、海洋)和天然气。能源转换过程包括海水淡化、气体燃烧、水电解,不同类型的储存(氢罐、电、热等)被设计为供需平衡的缓冲。设计了一系列实验来证明所提出的运行模型的有效性,并研究了来自可再生能源发电和需求的不确定性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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