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Separation of Source, Propagation and Site Effects from S Waves of Local Earthquakes in Bursa Region, Northwestern Turkey

机译:土耳其西北布尔萨地区局部地震S波的震源,传播和站点效应的分离

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— We have used micro-earthquake recordings (M= 1.8–4.1) of local events in the distance range of 5–60 km in order to quantify the attenuation and site effects in the vicinity of the Bursa city, Marmara region, Turkey. The data set consists of 120 three-component recorded accelograms from 69 earthquakes, recorded at six stations. Each station is deployed on different geologic units, such as massive limestone, slope deposit and Quaternary young sediments, in the framework of the Marmara Poly-Project.¶In this study a nonparametric inversion method was applied to acceleration records from the Bursa region to estimate source, site and path effects using a two-step inversion. At the first step, we determined attenuation functions by analyzing the distance dependence of the spectral amplitudes and retrieved values of Q s (f) = 46.59f 0.67. At the second step, the corrected S-waves spectral records for the attenuation function, including the geometrical spreading effect, were inverted to separate source and site response for 21 different frequencies selected between 0.5 and ∼25 Hz. The near-surface attenuation, κ value, was also estimated by using the model proposed by Anderson and Hough (1984) at each site. We observed that κ0 is smaller for stations located on rock site (Iğdιr, SIGD, κ0∼0.004) compared to the one that is located on Neogene sediment (Çukurca, SCKR, κ0∼0.018).¶Site amplifications from inversion showed that the station located within the Bursa basin, Çukurca (SCKR), is the most important site with about 4.0 amplification value at 1.8 Hz. Demirtaş (SDEM) amplifies the spectral amplitudes about 3.0 times at 2.0 Hz, SHMK about 3.5 times between 2.5 and 3.5 Hz and SHMT nearly reaching 3.5 times between 1.5 and 4.0 Hz. However, stations located on the Uludağ Mountain Massif (SKAY and SIGD), which correspond to a deep limestone geological unit, have the smallest amplification, that values between 0.6 and 1.4.
机译:—我们使用了5-60 km距离范围内的局部事件的微地震记录(M = 1.8–4.1),以量化土耳其马尔马拉地区布尔萨市附近的衰减和场地影响。该数据集由六个站点记录的来自69次地震的120个三分量加速度记录组成。在Marmara Poly-Project的框架下,每个站点都部署在不同的地质单元上,例如块状石灰岩,斜坡沉积物和第四纪年轻沉积物.¶本研究采用非参数反演方法对布尔萨地区的加速度记录进行估算源,站点和路径效应使用两步反演。第一步,我们通过分析频谱幅度的距离依赖性和检索到的Q s (f)= 46.59f 0.67 来确定衰减函数。在第二步中,将针对衰减函数的校正后的S波频谱记录(包括几何扩展效应)进行反转,以分离出在0.5至25 Hz之间选择的21个不同频率的源和站点响应。还使用每个站点上的Anderson和Hough(1984)提出的模型来估计近地表衰减κ值。我们发现,与位于新近纪沉积物(Çukurca,SCKR,κ0〜)的岩石相比,位于岩石站点(Iğdιr,SIGD,κ0〜0.004)的站点的κ0更小。 0.018)。反演的站点放大表明,位于布尔萨盆地Çukurca(SCKR)的台站是最重要的站点,在1.8 Hz处的放大率约为4.0。 Demirtaş(SDEM)在2.0 Hz时将频谱幅度放大约3.0倍,在2.5和3.5 Hz之间SHMK放大约3.5倍,而SHMT在1.5和4.0 Hz之间几乎达到3.5倍。但是,与深石灰岩地质单元相对应的位于Uludağ山地块(SKAY和SIGD)上的测站的放大率最小,介于0.6和1.4之间。

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