Ataköy Gözlem Kuyusunda Saha Tepki Tahminleri

Yusuf GUZEL, Fidan GÜZEL
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Abstract

Site response analyses are seen to be the reliable way of reproducing and predicting earthquake input motions. The analyses are generally performed by adopting equivalent linear or nonlinear approaches solving the problem in time or frequency domains. Instrumented geotechnical downhole arrays, in this regard, are very important as to obtaining earthquake data through the soil deposits. This data can eventually be used to verify the approaches developed for site response analyses. In this study, the input motions of the 24.05.2014 (Aegean) earthquake event recorded at relatively recently installed Atakoy geotechnical downhole array are assessed. Moreover, the recorded input motions at the bottom bedrock level of the downhole array are simulated in the East-West and North-South directions. The site response analyses are conducted based on frequency domain equivalent linear approach. The peak ground acceleration and the spectral accelerations of the predicted input motions are compared with the recorded ones at 70 m, 50 m, 25 m and at the ground surface. The results indicate that the spectral acceleration predictions can be simulated well until the depth of 50 m. At 25 m and at ground surface, the predictions are always greater than the recorded one. However, the predictions still exhibits good indication of actual values in the North-South direction. In terms of peak ground acceleration and shear strain profiles, the predictions display the soil layers featured with different soil properties. The equivalent linear approach appears to be suited reasonably well in site response analysis.
阿塔科伊观测井的现场响应估计值
场地反应分析被认为是再现和预测地震输入运动的可靠方法。分析一般采用等效的线性或非线性方法在时域或频域上求解问题。在这方面,仪器岩土井下阵列对于通过土壤沉积物获得地震数据是非常重要的。这些数据最终可用于验证为现场反应分析而开发的方法。在本研究中,评估了最近安装的Atakoy岩土井下阵列记录的2014年5月24日(爱琴海)地震事件的输入运动。此外,在东西和南北方向上模拟了井下阵列底部基岩水平记录的输入运动。基于频域等效线性方法进行了场地响应分析。在70 m、50 m、25 m和地面实测位置,将预测输入运动的峰值加速度和谱加速度与实测结果进行了比较。结果表明,在50 m深度之前,谱加速度预测可以很好地模拟。在25米和地面,预测结果总是大于记录值。然而,预测仍然很好地显示了南北方向的实际值。在峰值地面加速度和剪切应变剖面上,预测结果显示了具有不同土壤性质的土层。等效线性方法在场地响应分析中具有较好的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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