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集成到朝鲜半岛电网系统中的光伏-电解-质子交换膜混合系统的可行性研究。

A Feasibility Study of Photovoltaic-Electrolysis-PEM Hybrid System Integrated Into the Electric Grid System Over the Korean Peninsula.

作者信息

Kim Chang Ki, Cho Hyun-Seok, Kim Chang-Hee, Cho Wonchul, Kim Hyun-Goo

机构信息

New and Renewable Energy Resource Map Laboratory, Korea Institute of Energy Research, Daejeon, South Korea.

Hydrogen Research Department, Korea Institute of Energy Research, Daejeon, South Korea.

出版信息

Front Chem. 2021 Sep 14;9:732582. doi: 10.3389/fchem.2021.732582. eCollection 2021.

Abstract

A photovoltaic-electrolysis-PEM hybrid model was developed for a feasibility study, and simulations of several scenarios in Korea were performed. The solar irradiance was derived from the University of Arizona solar irradiance based on satellite-Korea Institute of Energy Research model which provides the satellite imagery over the Korean peninsula every 15 min. In Korea, the annual average solar irradiance is 1,310 kWh m with a maximum of 1,440 kWh m in 2017. Electricity load and solar irradiance information were used to test the performance model of the photovoltaic-electrolysis-PEM hybrid system for baseload and several peak load shave runs. When the baseload was set at 4200 MW, the total capacity of the Photovoltaic plants was 58.5 GW. In contrast, the hybrid system reduced the peak load more efficiently during daytime. In particular, the capacity factor of the Proton Exchange Membrane system increased in winter because the solar irradiance is relatively weak in that season. These results provide useful insights for the development of control logic models for the PV-electrolysis-PEM system in micro-grid setups.

摘要

为进行可行性研究,开发了一种光伏 - 电解 - 质子交换膜混合模型,并对韩国的几种情景进行了模拟。太阳辐照度基于亚利桑那大学太阳辐照度数据,采用卫星 - 韩国能源研究所模型推导得出,该模型每15分钟提供一次朝鲜半岛的卫星图像。在韩国,年平均太阳辐照度为1310千瓦时/平方米,2017年最高达到1440千瓦时/平方米。利用电力负荷和太阳辐照度信息,对光伏 - 电解 - 质子交换膜混合系统的性能模型进行了基荷和几次削峰运行测试。当基荷设定为4200兆瓦时,光伏电站的总容量为58.5吉瓦。相比之下,混合系统在白天能更有效地降低峰值负荷。特别是,质子交换膜系统的容量系数在冬季有所增加,因为该季节太阳辐照度相对较弱。这些结果为微电网设置中光伏 - 电解 - 质子交换膜系统控制逻辑模型的开发提供了有用的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a478/8476797/ee823d961ae8/fchem-09-732582-g001.jpg

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