首页> 外文期刊>Energy Conversion & Management >The complementary nature between wind and photovoltaic generation in Brazil and the role of energy storage in utility-scale hybrid power plants
【24h】

The complementary nature between wind and photovoltaic generation in Brazil and the role of energy storage in utility-scale hybrid power plants

机译:巴西风光和光伏发电的互补性与储能在公用规模混合动力厂的作用

获取原文
获取原文并翻译 | 示例
       

摘要

Solar and wind sources together provided more than half of the Brazilian Northeast electricity generation in 2019. This growing share of renewable energies in the Brazilian energy matrix increases the importance of portfolio optimization and the energy storage management. This paper assesses the complementary nature between wind and photovoltaic generation in the Brazilian Northeast, and how this complementarity, together with energy storage, can reduce the shortcomings that the corresponding natural resource intermittency imposes on these sources. The work consists of two main analyses: (i) analysis of the capability in supplying the Brazillian Northeast region power demand with a hybrid wind + solar + storage power plant; and (ii) contingency optimization analysis for hybrid wind + solar + storage power plants. The results show that wind and solar resources are consistently complementary in the region, with a daily Pearson's Correlation Coefficient of -0.51. Also, the load supply analysis shows that a renewable energy mix based on a 40% wind and 60% solar share would require the equivalent of only 6% of its annual generation in storage capacity. An energy curtailment analysis showed that the complementary nature of the wind and solar resources, together with energy storage, can lead to a reduction of up to 11% in transmission capacity demand.
机译:2019年,太阳能和风力源共同提供了一半以上的巴西东北发电。巴西能源矩阵中可再生能源的这种日益增长的份额增加了组合优化和能量存储管理的重要性。本文评估了巴西东北地区风和光伏发电的互补性,以及这种互补性如何与储能,可以减少相应的自然资源间歇性对这些来源产生的缺点。这项工作包括两个主要分析:(i)通过混合风+太阳能+储存电厂供应Brazillian东北地区电力需求的能力分析; [(ii)混合风+太阳能+蓄电厂的应急优化分析。结果表明,风和太阳能资源在该地区始终互补,每日Pearson的相关系数为-0.51。此外,负载供应分析表明,可再生能源混合基于40%的风和60%的太阳能股份需要相当于其在储存能力中的年度发电量的6%。能源缩减分析表明,风和太阳能资源的互补性质与储能,可以导致传输能力需求减少高达11%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号