当前位置: X-MOL 学术Phys. Earth Planet. Inter. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Attenuation of ground-motion spectral amplitudes in central and eastern Iran
Physics of the Earth and Planetary Interiors ( IF 2.3 ) Pub Date : 2021-01-01 , DOI: 10.1016/j.pepi.2020.106598
H. Yazdi Makiabadi , A. Nasrabadi , M.R. Sepahvand

Abstract More than 2769 seismogram of 633 earthquakes recorded by 18 stations of the Iranian Seismological Center (IRSC) during 2006–2016, was selected to estimate spectral attenuation relation in the Central and eastern Iran. For each rotated combine horizontal record, a shear-wave window was selected, and a 5% taper was applied at each end of the window. In frequency domain by using a local regression smoothing method (robust LOWESS), through considering Hinged trilinear function, the distances at which the nature of geometrical spreading attenuation changes significantly was graphically found in 80 km and 124 km distances. Using the Brute Force optimization, we found that b1 = −1.11 ± 0.27, b2 = 0.09 ± 0.22, and b3 = −0.70 ± 0.23 minimize the average absolute value of the Fourier spectrum amplitude residuals. Finally, the direct quality factor Q in the study region is obtained as Q = 166 ± 1.08f0.62±0.02, using an anelastic attenuation coefficient at different frequencies. Because the calculated value of Q0 (Q at 1 Hz) is equal to 166, which is less than 200, and because the frequency parameter is equal to 0.62, which is close to 1, then the Central and eastern Iran are seismotectonically active regions. The geographical distribution of station corrections at1 Hz shows stations in eastern Iran and the southeastern part of Iran in Kerman province that has positive station correction. Because in these regions there is a sedimentary cover and as a result, stations show low attenuation.

中文翻译:

伊朗中部和东部地面运动频谱振幅的衰减

摘要 选取伊朗地震中心(IRSC)18个台站2006-2016年记录的633次地震的2769余次地震图来估计伊朗中东部的谱衰减关系。对于每个旋转的组合水平记录,选择一个横波窗口,并在窗口的每一端应用 5% 的锥度。在频域中,通过使用局部回归平滑方法(robust LOWESS),通过考虑Hinged三线性函数,在80公里和124公里的距离上,以图形方式找到了几何传播衰减性质发生显着变化的距离。使用蛮力优化,我们发现 b1 = -1.11 ± 0.27、b2 = 0.09 ± 0.22 和 b3 = -0.70 ± 0.23 最小化傅立叶频谱幅度残差的平均绝对值。最后,研究区域的直接品质因数 Q 为 Q = 166 ± 1.08f0.62±0.02,使用不同频率的非弹性衰减系数。由于Q0(Q at 1 Hz)的计算值等于166,小于200,并且由于频率参数等于0.62,接近于1,因此伊朗中东部为地震活动区。1 Hz 的台站改正地理分布显示了伊朗东部和伊朗东南部克尔曼省台站改正为正的台站。因为在这些地区有沉积盖层,因此站点显示低衰减。由于Q0(Q at 1 Hz)的计算值等于166,小于200,并且由于频率参数等于0.62,接近于1,因此伊朗中东部为地震活动区。1 Hz 的台站改正地理分布显示了伊朗东部和伊朗东南部克尔曼省台站改正为正的台站。因为在这些地区有沉积盖层,因此站点显示低衰减。由于Q0(Q at 1 Hz)的计算值等于166,小于200,并且由于频率参数等于0.62,接近于1,因此伊朗中东部为地震活动区。1 Hz 的台站改正地理分布显示了伊朗东部和伊朗东南部克尔曼省台站改正为正的台站。因为在这些地区有沉积盖层,因此站点显示低衰减。1 Hz 的台站改正地理分布显示了伊朗东部和伊朗东南部克尔曼省台站改正为正的台站。因为在这些地区有沉积盖层,因此站点显示低衰减。1 Hz 的台站改正地理分布显示了伊朗东部和伊朗东南部克尔曼省台站改正为正的台站。因为在这些地区有沉积盖层,因此站点显示低衰减。
更新日期:2021-01-01
down
wechat
bug