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Wind power variations during storms and their impact on balancing generators and carbon emissions in the Australian National Electricity Market

机译:风暴期间的风能变化及其对澳大利亚国家电力市场中发电机和碳排放平衡的影响

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This paper examines changes in Frequency Control Ancillary Services (FCAS) generator output due to several large wind farm power variations occurring in the Australian National Electricity Market (NEM) during 2012 and 2013. Using data from actual FCAS generator output fluctuations during selected storm events and reconstructed heat rate curves for each FCAS generator, the authors address the research question of what effect such variations have on net carbon emissions from electricity generation, given balancing fossil-fueled FCAS generators will be pushed back into less efficient operating ranges. The study finds that, for all storm events evaluated, net carbon emissions decreased with each large increase in wind power, even though FCAS generator carbon intensity increased in two of the three events. This finding is consistent with the conclusions of other studies that while FCAS generators do move into less efficient operating ranges, the generation of zero carbon emission wind power displaces other fossil fuel generators and more than compensates for this efficiency reduction, creating an overall positive carbon effect. This is a significant finding as it shows that the inclusion of wind farms in the generation mix serving the Australian NEM can lower carbon emissions in both short and long time frames. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文研究了由于澳大利亚国家电力市场(NEM)在2012年和2013年期间发生了数次大型风电场功率变化而导致的频率控制辅助服务(FCAS)发电机输出的变化。通过重新构建每个FCAS发电机的热效率曲线,作者提出了这样的研究问题:在平衡化石燃料的FCAS发电机将被推回到效率较低的运行范围内时,这种变化会对发电的净碳排放产生什么影响。研究发现,对于所有评估的暴风雨事件,即使在三个事件中的两个中,FCAS发电机的碳强度增加,净碳排放量也会随着风能的每增加而减少。这一发现与其他研究的结论是一致的,尽管FCAS发电机确实进入了效率较低的运行范围,但零碳排放风能的产生取代了其他化石燃料发电机,并在很大程度上抵消了这种效率的降低,从而产生了总体上积极的碳效应。 。这是一项重大发现,因为它表明,在为澳大利亚NEM服务的发电组合中包含风电场可以在短期和长期内降低碳排放。 (C)2017 Elsevier Ltd.保留所有权利。

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