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云南地区地震动V/H加速度峰值比和谱值比统计研究
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Abstract:
本文收集了云南地区共计620组的三分量加速度记录中的加速度峰值和加速度峰值比,按照场地条件、震中距、震级等因素统计分析了V/H加速度谱值比并给出了V/H谱值比的取值建议。结果表明:土层和基岩场地条件下V/H的均值并不相同,场地的软硬对V/H的数值变化影响较大;V/H地面峰值加速度的近场与远场处仅在I类场地下大于0.65,其余场地类型下均小于0.65;V/H的水平向和竖向反应谱谱值比是一个周期函数,竖谱值特征周期基本等于水平向反应谱特征周期,但在较长周期下速度慢于水平方向。
This paper collected the peak acceleration and peak acceleration ratio from a total of 620 sets of three-component acceleration records in the Yunnan region. It statistically analyzed the V/H accele- ration spectrum value ratio based on factors such as site conditions, epicentral distance, and magnitude, and provided suggestions for the value range of the V/H spectrum ratio. The results indicate that the mean V/H values under soil and rock site conditions are not the same, and the stiffness of the site has a significant impact on the numerical variation of V/H; the near-field and far-field ground peak acceleration of V/H is only greater than 0.65 under Class I sites, and is less than 0.65 under all other site types; the horizontal and vertical response spectrum value ratios of V/H are periodic functions, with the vertical spectrum characteristic period essentially equal to the horizontal response spectrum characteristic period, but the velocity is slower than the horizontal direction at longer periods.
[1] | 齐娟, 罗开海, 杨小卫. 竖向地震动特性的统计分析[J]. 地震工程与工程振动, 2014(S1): 253-260. |
[2] | 张莹, 孙广俊, 李鸿晶. 近断层强地震地面运动特征参数分析[J]. 南京工业大学学报(自然科学版), 2017, 39(1): 85-92. |
[3] | 赵培培, 王振宇, 薄景山, 等. 川滇甘陕地区地震的加速度峰值比和竖向反应谱的统计分析[J]. 世界地震工程, 2021, 37(3): 148-154. |
[4] | 何瑾, 王乐添, 侯瑞彬. 日本浅壳与上地幔地震水平与竖向加速度反应谱比的研究[J]. 世界地震工程, 2024, 40(3): 83-93. |
[5] | 李爽, 吕悦军, 方怡, 等. 北京地区中硬场地对地震动加速度反应谱的放大效应研究[J]. 震灾防御技术, 2017, 12(1): 133-144. |
[6] | 李恒, 李井冈, 王墩, 等. 竖向与水平向地震动加速度峰值比统计特征分析[J]. 地震研究, 2010, 33(2): 195-199, 238. |
[7] | Bozorgnia, Y. and Niazi, M. (1993) Distance Scaling of Vertical and Horizontal Response Spectra of the Loma Prieta Earthquake. Earthquake Engineering & Structural Dynamics, 22, 695-707. https://doi.org/10.1002/eqe.4290220805 |
[8] | Campbell, K.W. (1997) Empirical Near-Source Attenuation Relationships for Horizontal and Vertical Components of Peak Ground Acceleration, Peak Ground Velocity, and Pseudo-Absolute Acceleration Response Spectra. Seismological Research Letters, 68, 154-179. https://doi.org/10.1785/gssrl.68.1.154 |
[9] | 石树中, 沈建文, 楼梦麟. 基岩场地强地面运动加速度反应谱统计[J]. 同济学报, 2002, 30(11): 1300-1304. |
[10] | 耿淑伟, 陶夏新. 地震动加速度反应谱竖向分量与水平分量的比值[J]. 地震工程与工程振动, 2004, 24(5): 33-38. |
[11] | 陈清军, 张巍, 夏江. 基于PC集群的三维河谷场地长周期地震动响应并行计算[J]. 防灾减灾工程学报, 2013, 33(3): 263-268. |
[12] | 王玉石, 李小军, 李敏, 等. 地震动加速度反应谱场地条件影响调整系数研究[J]. 震灾防御技术, 2022, 17(3): 464-472. |
[13] | Bozorgnia, Y. and Campbell, K.W. (2016) Vertical Ground Motion Model for PGA, PGV, and Linear Response Spectra Using the Nga-West2 Database. Earthquake Spectra, 32, 979-1004. https://doi.org/10.1193/072814eqs121m |
[14] | 李明珂, 袁万城. 近场地震动竖向与水平分量统计特性对比[J]. 哈尔滨工程大学学报, 2024, 45(2): 230-237. |
[15] | 胡进军, 石昊, 谭景阳. 西南地区水平向地震动设计谱参数特征分析[J]. 地震工程与工程振动, 2023, 43(6): 1-13. |