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Ground-level climate at a peatland wind farm in Scotland is affected by wind turbine operation

机译:苏格兰泥炭地风电场的地面气候受风机运行的影响

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摘要

The global drive to produce low-carbon energy has resulted in an unprecedented deployment of onshore wind turbines, representing a significant land use change for wind energy generation with uncertain consequences for local climatic conditions and the regulation of ecosystem processes. Here, we present high-resolution data from a wind farm collected during operational and idle periods that shows the wind farm affected several measures of ground-level climate. Specifically, we discovered that operational wind turbines raised air temperature by 0.18 °C and absolute humidity (AH) by 0.03 g m−3 during the night, and increased the variability in air, surface and soil temperature throughout the diurnal cycle. Further, the microclimatic influence of turbines on air temperature and AH decreased logarithmically with distance from the nearest turbine. These effects on ground-level microclimate, including soil temperature, have uncertain implications for biogeochemical processes and ecosystem carbon cycling, including soil carbon stocks. Consequently, understanding needs to be improved to determine the overall carbon balance of wind energy.
机译:全球生产低碳能源的驱动力导致了陆上风力涡轮机的空前部署,这代表着用于风能发电的重大土地利用变化,对当地气候条件和生态系统过程的调节带来不确定的后果。在这里,我们提供了在运营和闲置期间从风电场收集的高分辨率数据,这些数据显示了风电场影响了几种地面气候指标。具体而言,我们发现可操作的风力涡轮机在夜间将空气温度提高了0.18°C,将绝对湿度(AH)升高了0.03 g m-3,并且在整个昼夜循环中都增加了空气,表面和土壤温度的变化性。此外,涡轮机对气温和AH的微气候影响随距最近涡轮机的距离呈对数递减关系。这些对地面微气候的影响,包括土壤温度,对生物地球化学过程和生态系统碳循环(包括土壤碳储量)具有不确定的影响。因此,需要提高对确定风能总体碳平衡的理解。

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