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Life-cycle energy analysis of wind turbines - an assessment of the effect of size on energy yield

机译:风力涡轮机的生命周期能量分析 - 评估规模对能量产量的影响

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Wind turbines, used to generate non-fossil fuel based electrical power, are typically considered to take only a number of months to produce as much energy as is required in their manufacture and operation. With a life-expectancy of upwards of 20 years, the renewable energy produced by wind turbines over their life can be many times greater than that embodied in their production. Many previous studies of the life-cycle energy requirements of wind turbines are based on methods of assessment now known to be incomplete. These studies may underestimate the energy embodied in wind turbines by more than 50%, potentially overestimating the energy yield of those systems and possibly affecting the comparison of energy generation options. With the increasing trend towards larger scale wind turbines comes a respective increase in the energy required for their manufacture. It is important to consider whether or not these increases in wind turbine size, and thus embodied energy, can be adequately justified by equivalent increases in the lifetime energy yield of such systems. This paper presents the results of an assessment of the effect of wind turbine size on their life-cycle energy yield and addresses the issue of incompleteness associated with many past life-cycle energy studies. Energy yield ratios of 21 and 23 were found for a small and large scale wind turbine, respectively. This represents an 11% increase in the energy yield ratio of the larger turbine over that of the smaller turbine. The embodied energy component was found to be more significant than in previous studies, emphasised here due to the innovative use of a hybrid embodied energy analysis method. The life-cycle energy requirements were shown to be offset by the energy produced within the first 12 months of operation.
机译:用于产生非化石燃料基的电力的风力涡轮机通常被认为只需要多个月的时间来生产制造和操作所需的能量。由于20年来的预期寿命,风力涡轮机在其生命中产生的可再生能源可能比其生产所体现的多倍。许多先前对风力涡轮机的生命周期能量要求的研究基于现在已知不完整的评估方法。这些研究可能低估了风力涡轮机中体现的能量超过50%,可能估计这些系统的能量产量,并且可能影响能量产生选项的比较。随着较大尺度的趋势越来越大,风力涡轮机的趋势来自其制造所需的能量的相应增加。重要的是要考虑这些风力涡轮机尺寸和因此所体现的能量的这些增加,可以通过等同的增加这些系统的寿命能量产量的等效增加来充分证明。本文提出了对风力涡轮机尺寸对其生命周期能源产量的影响的评估结果,并解决了与许多过去生命周期能源研究相关的不完整性问题。分别为小型和大型风力涡轮机发现了21和23的能量率比。这表示较小涡轮机的较大涡轮机的能量屈服比增加11%。由于混合体现的能量分析方法的创新使用,发现了所体现的能量分量比以前的研究更重要。终身能量要求被证明是由操作的前12个月内产生的能量抵消。

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