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Estimation of Ground Stiffness, Ground Viscosity and Captured Ground Mass Using Vibrator Field Measurements

机译:使用振动器场测量估计地面刚度,地面粘度和捕获的研磨质量

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Near-surface velocity measurements are very valuable for making static corrections in data processing to improve the quality of subsurface images in land seismic surveys.Ali et al (2003) show that the near- surface velocity can be estimated by using ground elastic properties produced from modern vibrator control systems. Direct measurements via uphole surveys can be cost prohibitive. The modern seismic vibrator driven by the feedback control system produces a force to the ground as it vibrates.As the vibrator pushes against the ground, it gets a counter force from the ground. The motion of the ground responding to the applied force is detected through the movements of the baseplate. The dynamic of the vibrator normally is described by the accelerations of the reaction mass and the baseplate, which can be used to estimate underlying ground properties.Accurate estimates for ground properties can only be achieved when key elements are in place including a valid reaction mass-baseplate-ground model and a properly implemented good estimation algorithm. This paper describes a useful method for estimation of ground properties using the reaction mass and baseplate accelerations as a vibrator shakes.
机译:近表面速度测量对于在数据处理中进行静态校正是非常有价值的,以提高陆地地震勘测中的地下图像的质量。(2003)表明,可以通过使用由产生的地面弹性性能来估计近表面速度现代振动器控制系统。通过遮孔调查直接测量可能是成本持久的。由反馈控制系统驱动的现代地震振动器在接地上产生力,因为它振动。振动器推动地面,它得到了地面的反力。通过底板的运动检测地面响应施加施加力的地面的运动。通常通过反应物质的加速度和底板的加速来描述振动器的动态,该底板可用于估计下面的地面特性。当在适当的键元件包括有效的反应质量时,只能实现地面性质的准确估计。基础地面模型和适当实现的良好估计算法。本文描述了一种使用反应物质和底板加速度作为振动器奶昔估计接地性能的有用方法。

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