首页> 外文会议>International Seminar on Sensors, Instrumentation, Measurement and Metrology >Study of seismic vulnerability index (Kg) from dominant frequency (f0) and amplification factor (A0) by means of microzonation data: Case study on Batubesi dam of Nuha, East Luwu, South Sulawesi, Indonesia
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Study of seismic vulnerability index (Kg) from dominant frequency (f0) and amplification factor (A0) by means of microzonation data: Case study on Batubesi dam of Nuha, East Luwu, South Sulawesi, Indonesia

机译:利用微区带数据从主频(f 0 )和放大因子(A 0 )研究地震脆弱性指数(Kg):以努哈巴布斯西大坝为例,印度尼西亚南苏拉威西省东卢武

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Study of seismic vulnerability index (Kg) from dominant frequency (f0) and amplification factor (A0) by means of microzonation data has been carried out. The study was conducted to obtain a map of the dominant frequency (f0), the dominant period (T0), and the amplification factor (A0). It was conducted in Batubesi dam of Nuha - East Luwu - South Sulawesi - Indonesia which is located at the coordinates of 2.71428°-2.70585°S and 121.3013°-121.3117°E. This research is expected to obtain spatial distribution of the dominant frequency (f0), the dominant period (T0), the amplification factor (A0), and the seismic vulnerability index (Kg). The Nakamura method was used in order to obtain the dominant frequency (f0) and amplification factor (A0) values. The spectral ratio between the vertical and horizontal components (H/V) of the HVSR analysis was used to estimate the dominant frequency (f0). The seismic vulnerability index (Kg) was obtained from the dominant frequency (f0) and amplification factor (A0) values which were used to estimate the earthquake hazards potential on the location. Based on the data results, the f0min is 0.59 Hz at the point of MSBB25, the f0max is 13.7 Hz at the point of MSBB21, the A0min is 1.35 at the point of MSBB22, the A0max is 11.5 at the point of MSBB10, the T0min is 0.07 s at the point of MSBB21, the T0max is 1.69 s at the point of MSBB25, the Kgmin is 0.28 at the point of MSBB22, and the Kgmax is 33.42 at the point of MSBB10. Based on the dominant period (T0), amplification factor (A0), and seismic vulnerability index (Kg), it can be estimated that the soil classification for Kanai model is in the range of II-IV and in the range of B-C for Omote-Nakajima model.
机译:利用微区带数据研究了主频(f 0 )和放大因子(A 0 )的地震脆弱性指数(Kg)。进行研究以获得主导频率(f 0 ),主导周期(T 0 )和放大因子(A 0 < / sub>)。它是在印尼哈鲁(Nuha)-东苏拉威西(South Sulawesi)-印度尼西亚努哈(Nuha)的Batubesi大坝中进行的,该大坝位于2.71428°-2.70585°S和121.3013°-121.3117°E的坐标处。该研究有望获得主导频率(f0),主导周期(T 0 ),放大因子(A 0 )和地震易损性的空间分布指数(公斤)。为了获得主频率(f 0 )和放大因子(A0),使用了Nakamura方法。 HVSR分析的垂直分量和水平分量之间的频谱比(H / V)用于估算主频(f0)。从主要频率(f0)和放大因子(A0)值获得地震易损性指数(Kg),这些值用于估计该地点的潜在地震危险。根据数据结果,在MSBB25点处,f0min为0.59 Hz,在MSBB21点处,f0 max 为13.7 Hz,在MSBB22点处,A0min为1.35,A 0max 为11.5,在MSBB21处T0min为0.07 s,在MSBB25处T0max为1.69 s,Kg min 处的Kg 0.28在MSBB22点,Kg max 在MSBB10点时为33.42。根据主要时期(T0),放大因子(A 0 )和地震脆弱性指数(Kg),可以估算出Kanai模型的土壤分类处于II-IV范围内在表参中岛模型的BC范围内。

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