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Wind-induced ground motion

机译:风致地面运动

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摘要

Wind noise is a problem in seismic surveys and can mask the seismic signals at low frequency. This research investigates ground motions caused by wind pressure and shear stress perturbations on the ground surface. A prediction of the ground displacement spectra using the measured ground properties and predicted pressure and shear stress at the ground surface is developed. Field measurements are conducted at a site having a flat terrain and low ambient seismic noise. Triaxial geophones are deployed at different depths to study the wind-induced ground vibrations as a function of depth and wind velocity. Comparison of the predicted to the measured wind-induced ground displacement spectra shows good agreement for the vertical component but significant underprediction for the horizontal components. To validate the theoretical model, a test experiment is designed to exert controlled normal pressure and shear stress on the ground using a vertical and a horizontal mass-spring apparatus. This experiment verifies the linear elastic rheology and the quasi-static displacements assumptions of the model. The results indicate that the existing surface shear stress models significantly underestimate the wind shear stress at the ground surface and the amplitude of the fluctuation shear stress must be of the same order of magnitude as the normal pressure. Measurement results show that mounting the geophones flush with the ground provides a significant reduction in wind noise on all three components of the geophone. Further reduction in wind noise with depth of burial is small for depths up to 40cm.
机译:风噪声是地震勘探中的一个问题,可以掩盖低频的地震信号。这项研究调查了地面上的风压和剪应力扰动引起的地面运动。利用测得的地面特性以及地面的预测压力和剪切应力,对地面位移谱进行了预测。现场测量是在地形平坦且周围地震噪声低的现场进行的。三轴检波器部署在不同的深度,以研究由风引起的地面振动随深度和风速的变化。将预测的风向地面位移谱与实测的风向位移谱进行比较,可以看出垂直分量的一致性好,而水平分量的预测却明显不足。为了验证该理论模型,设计了一个试验实验,以使用垂直和水平质量弹簧设备在地面上施加受控的法向压力和剪切应力。该实验验证了模型的线性弹性流变学和准静态位移假设。结果表明,现有的表面切应力模型大大低估了地面的风切应力,并且波动切应力的幅值必须与常压处于同一数量级。测量结果表明,将地震检波器与地面齐平安装可大大降低地震检波器所有三个组件上的风噪声。对于深度达40厘米以下的深度,通过埋入深度来进一步减小风噪声很小。

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