内蒙古
电力工业
风力发电
电力系统
自然资源经济学
电力
电力设施
环境科学
环境经济学
业务
功率(物理)
工程类
运筹学
电
经济
电气工程
中国
地理
物理
量子力学
考古
作者
Jiarong Li,Jin Lin,Philipp Heuser,Heidi Heinrichs,Jinyu Xiao,Feng Liu,Martin Robinius,Yonghua Song,Detlef Stolten
标识
DOI:10.1109/tpwrs.2021.3089365
摘要
Converting wind energy into ammonia (WtA) has been recognized as a promising pathway to produce "green" ammonia compared with traditional coal-based technologies. As the key part of WtA, Power-to-Ammonia (PtA) has great potential to facilitate the usage of wind generation. This paper proposes a co-planning approach for regional wind resources-based ammonia industry and the electric network (EN). To this end, PtA is first modeled as a flexible power load of power systems with spatial and temporal constraints on hydrogen supply chains (HSC). Then a novel co-planning model of WtA and EN is established to optimize the WtA configuration and the EN expansion. An alternating direction method of multipliers (ADMM) based algorithm is introduced to effectively solve this model. Real data of Inner Mongolia Province in China is adopted to verify the effectiveness and significance of the proposed approach. It is shown that the siting and operation flexibility of PtA with HSC can reduce the expansion burden of EN. The co-planning of WtA and EN can significantly enhance wind power utilization and reduce total investment costs. Furthermore, feasibility analysis on WtA in comparison with coal-to-ammonia (CtA) and ultra-high voltage transmission (UHV) provides helpful guidelines for the realization of WtA.
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