...
首页> 外文期刊>物理探查 >An experimental study on the upper limits of wavelength of Rayliegh wave estimated by the Frequency-Wavenumber spectrum method or the Spatial Autocorrelation method using a microtremor array technique
【24h】

An experimental study on the upper limits of wavelength of Rayliegh wave estimated by the Frequency-Wavenumber spectrum method or the Spatial Autocorrelation method using a microtremor array technique

机译:频率 - 波数谱法估计的RAYLIEGH波的上限或使用微型阵列技术的空间自相关方法的实验研究

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In a microtremor array technique phase velocities must be obtained in a wide-range of wavelength in order to estimate underground structures precisely. Frequency-wavenumber spectrum (F-K) method and Spatial auto-correlation (SPAC) method are used to estimate phase velocities of surface waves in microtremors. Recent studies using techniques of numerical simulation or field experiment show that SPAC method can observe longer wavelength possible to estimate phase velocities in microtremors than F-K method. We also examine and discuss the upper limits of wavelength calculated using microtremor array data by the two kinds of methods. For the above purpose, microtremor array observations were carried out in four sites of Morioka city, Iwate Prefecture. The array configuration is a triangle with seven vertical seismometers. The array size defined by the distance between a center and an apex of the triangle ranges from 10 m to 100 m. Three or four arrays with different sizes were used at one observation site. Phase velocities of Rayleigh wave in microtremors were observed by F-K method and SPAC method. We defined a standard phase velocity which was calculated from all the array records at one site. To estimate the upper limits of wavelength, a residual between standard phase velocity and observed phase velocity for each array was defined within 0.1. The range of the estimated upper limits of wavelengths by F-K method were from 2.3 to 6.8 times for a distance between a center and an apex of the triangle array, and those by SPAC method were ranging from 3.2 to 17.2 times. These results show that SPAC method can observe longer wavelength possible to estimate phase velocities in microtremors than F-K method.
机译:在微调阵列中,必须在宽范围的波长中获得相速度,以精确地估计地下结构。频率波数频谱(F-K)方法和空间自相关(SPAC)方法用于估计微调中表面波的阶段速度。最近使用数值模拟或现场实验的技术表明,SPAC方法可以观察到比F-K方法估计微调的阶段速度的更长的波长。我们还通过两种方法检查和讨论使用Microtremor阵列数据计算的波长的上限。对于上述目的,微良阵列观测在岩手县的森田市四个地点进行了。阵列配置是具有七个垂直地震仪的三角形。由中央和三角形顶点之间的距离定义的阵列大小范围为10 m至100米。在一个观察部位使用三个或四个不同尺寸的阵列。通过F-K法和SPAC方法观察到微调中瑞利波的思维波的相速度。我们定义了一个标准相速度,该速度是从一个站点的所有阵列记录计算的。为了估计波长的上限,在0.1内定义了每个阵列的标准相速度和观察到的相位速度之间的残余。 F-K方法的估计上限的估计上限范围为三角形阵列的中心和顶点之间的距离的2.3至6.8倍,并且通过SPAC方法的距离为3.2至17.2倍。这些结果表明,SPAC方法可以观察到比F-K方法在微反射器中估计阶段速度的更长的波长。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号