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Wind Farm Site Characterisation using MASW Survey

机译:使用Masw调查的风电场现场表征

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This study presents a non-intrusive geophysical investigation using Seismic Refraction and the Multichannel Analysis of surface waves (MASW) techniques at the consented 10- wind turbine generator (WTG) locations at Tullo Wind Farm, in Aberdeenshire, Scotland. The aim was to provide geotechnical parameters including the ground stiffness profile at each turbine location. The results are intended to inform ongoing Site Investigation (SI) activity and inform detail design of turbine foundation across the site. At some turbine locations, the attenuation of relatively high frequency components of the transmitted seismic energy was recorded. This is most likely as a result of boggy nature of the near surface conditions. It is highlighted that there is a reduced confidence of the estimated P-wave velocity values for these cases. The S-wave velocity estimates including Vs30 were derived from MASW analyses. Data from most locations exhibited good dispersive characteristics that provided clear, laterally consistent phase-velocity frequency plots enabling 2D visualisation. However, a lack of dispersive behaviour at STI1, ST3 & TET3 locations limited the lateral extent of S-wave velocity determination. The deformation properties such as Elastic moduli were calculated based upon assumed densities of 1.8Mg/m3 for each geological units across the site.
机译:该研究介绍了在苏格兰阿伯丁郡的Tullo Wind涡轮发电机(WTG)位置的地震折射和表面波(MasW)技术的抗震性地球物理研究。目的是提供包括每个涡轮机位置的地面刚度曲线的岩土参数。结果旨在通知正在进行的现场调查(SI)活动,并通知全场涡轮机基础的详细设计。在一些涡轮机位置,记录了透射地震能量的相对高频分量的衰减。这是近地表条件的沼泽性的结果。突出显示,对于这些情况,对估计的P波速度值具有降低的置信度。包括VS30的S波速度估计来自MASW分析。来自大多数位置的数据表现出良好的分散特性,提供了透明,横向一致的相位速度频率图,其能够实现2D可视化。然而,STI1,ST3和TET3位置缺乏分散行为限制了S波速度测定的横向范围。基于该部位上每个地质单位的假设密度为1.8mg / m3的假设密度计算诸如弹性模量的变形性质。

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