Autonomous energy supply based on the wind-energy complex and hydrogen energy storage

S. I. Nefedkin, A. O. Barsukov, M. I. Mozgova, M. S. Shichkov, M. Klimova
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引用次数: 1

Abstract

The paper proposes an alternative scheme of guaranteed electricity and heat supply of an energy-insulated facility with a high potential of wind energy without the use of imported or local fuel. The scheme represents a wind power complex containing the park of wind generators located at the points with high wind potential. The wind generators provide guaranteed power supply even in periods of weak wind. For heat supply of the consumer, all surplus of the electric power goes on thermoelectric heating of water in tanks of accumulators, and also on receiving hydrogen by a method of electrolysis of water. The current heat supply is carried out with the use of hot water storage tanks, and the heat supply during the heat shortage is carried out by burning the stored hydrogen in condensing hydrogen boilers. We have developed the algorithm of calculation and the program "Wind in energy" which allows calculating annual balance of energy and picking up necessary quantity of the equipment for implementation of the scheme proceeding from the annual schedule of thermal and electric loading, and also potential of wind energy in the chosen region. The calculation-substantiation of the scheme proposed in relation to the real energy-insulated object Ust-Kamchatsk (Kamchatka) is carried out. The equipment for the implementation of an alternative energy supply scheme without the use of imported fuel is selected and compared with the traditional energy supply scheme based on a diesel power plant and a boiler house operating on imported fuel. With the introduction of an alternative power supply scheme, the equipment of the traditional scheme that has exhausted its resource can be used for backup power supply. Using climate databases, a number of energy-insulated facilities in the North and East of Russia with high wind energy potential are considered and the conditions for the successful implementation of the energy supply scheme are analyzed. This requires not only a high average annual wind speed, but also a minimum number of days of weak wind. In addition, it is necessary that the profile of the wind speed distribution in the annual section coincides with the profile of the heat load consumption.
基于风能综合体和氢能储存的自主能源供应
本文提出了一种替代方案,即在不使用进口或本地燃料的情况下,保证具有高风能潜力的能源绝缘设施的电力和热量供应。该方案代表了一个风力发电综合体,包含位于风力潜力高的地点的风力发电机园区。风力发电机即使在弱风时期也能提供有保障的电力供应。对于用户的供热,所有剩余的电力都用于蓄热器水箱中的水的热电加热,也用于通过电解水的方法获得氢气。目前的供热是利用热水储罐进行的,缺热时的供热是通过燃烧冷凝氢锅炉中储存的氢气进行的。我们开发了计算算法和“风能”程序,可以计算年度能源平衡,并从年度热电负荷计划和所选地区的风能潜力中提取实施方案所需的设备数量。并结合实际的堪察加半岛上的耗能隔热体,对所提出的方案进行了计算验证。选择了实施不使用进口燃料的替代能源供应方案的设备,并与传统的柴油发电厂和使用进口燃料的锅炉房能源供应方案进行了比较。随着替代供电方案的引入,传统方案中资源耗尽的设备可以作为备用电源。利用气候数据库,考虑了俄罗斯北部和东部具有高风能潜力的一些能源隔离设施,并分析了能源供应方案成功实施的条件。这不仅需要较高的年平均风速,还需要最低的弱风天数。此外,年段风速分布廓线必须与热负荷消耗廓线吻合。
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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