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Modeling of hydrogen and electrical energy storages in wind/PV energy system on the Lake Baikal coast

机译:贝加尔湖沿岸风能/光伏能源系统中氢和电能存储的建模

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The paper presents a research on a green power supply system (producing no carbon dioxide and other harmful emissions) in the area of Baikal Lake, for the maximum loads of 10 kW and 100 kW. The system includes photovoltaic converters, wind turbines, batteries for electric energy storage and a system for hydrogen production, storage and energy use. Calculations based on the optimization mathematical model demonstrated the efficiency of the combined use of wind and solar energy in the considered areas, as well as the simultaneous storage of electric energy and hydrogen. The electric energy storage is most efficient for short-term time intervals whereas an increase in the duration of continuous energy "standstills" up to several days makes the storage of hydrogen more cost-effective. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文介绍了贝加尔湖地区最大功率为10 kW和100 kW的绿色电源系统(不产生二氧化碳和其他有害排放物)的研究。该系统包括光伏转换器,风力涡轮机,用于电能存储的电池以及用于氢气生产,存储和能源使用的系统。基于最优化数学模型的计算证明了在所考虑的区域中风能和太阳能的联合利用以及电能和氢气的同时存储的效率。电能存储在短期时间间隔内效率最高,而连续能量“停顿”的持续时间长达数天的增加使氢气的存储更具成本效益。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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