风能在煤基系统可持续发展中的作用:科索沃案例

Q3 Energy
Bukurije HOXHA, Risto FİLKOSKİ
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引用次数: 0

摘要

东南欧大多数国家主要依靠化石燃料来满足其能源需求。本文讨论了该国风能的未来前景,该国90%以上的能源是由燃煤火力发电厂产生的。鉴于能源危机已笼罩全球,目前正在研究满足日益增长的能源需求的可能性,特别是在冬季。根据目前的能源生产趋势,在风能、水能和太阳能象征性参与的情况下,考虑最大限度地利用风能的潜力,这意味着在全国范围内利用每一种确定的适当地点。这里的主要优点是,风能产生的最大能量是在冬季需求增加的时候。重要的是要知道科索沃面临着严重的供暖问题,其需求是由电力满足的。分析证明,该国拥有丰富的风力发电能力,这在一定程度上减少了对进口能源的需求,甚至在某些条件下可以出口能源。科索沃的潜在装机容量为510.9兆瓦,其中32.4兆瓦目前处于运行状态。从目前运行风电场的分析来看,电厂容量系数为31.8%。研究结果表明,冬季负荷的增加与风电场的发电量直接相关,可以充分满足能源需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of wind energy in sustainable development in coal-based systems: Case of Kosovo
Most of the countries in South-East Europe primarily depend on fossil fuels to cover their energy demands. The paper discusses the future perspective on wind energy in the country, where over 90% of energy is generated in coal-fired thermal power plants. Given the energy crisis, that has gripped the world, the possibility of covering the increased energy demand is being studied, especially during the winter. Based on current trends on energy generation, with just symbolic participation of wind, hydro and solar energy, the potential for maximization of the use of wind energy is considered, which means the use of each identified adequate location throughout the country. The main advantage here is that the maximum energy produced by wind is during winter when demand increases. This is important to know that Kosovo faces significant heating problems and its demand is covered with electricity. Analyzes prove that the country has a generous wind capacity, which reduces to a certain extent the need to import and even enables the export of energy under certain conditions. The potential installation capacity in Kosovo is 510.9 MW, of which 32.4 MW is currently in operating conditions. From the analysis made for the current wind farm in operation, the plant capacity factor is 31.8%. The study of the results indicates a direct correlation between the increase in load during the winter season and the electricity production by wind farms, thereby, the energy demand can be sufficiently covered.
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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