In order to study the differences in vertical component between onshore and offshore motions,the vertical-to-horizontal peak ground acceleration ratio(V/H PGA ratio) and vertical-to-horizontal response spectral ratio(...In order to study the differences in vertical component between onshore and offshore motions,the vertical-to-horizontal peak ground acceleration ratio(V/H PGA ratio) and vertical-to-horizontal response spectral ratio(V/H) were investigated using the ground motion recordings from the K-NET network and the seafloor earthquake measuring system(SEMS).The results indicate that the vertical component of offshore motions is lower than that of onshore motions.The V/H PGA ratio of acceleration time histories at offshore stations is about 50%of the ratio at onshore stations.The V/H for offshore ground motions is lower than that for onshore motions,especially for periods less than 0.8 s.Furthermore,based on the results in statistical analysis for offshore recordings in the K-NET,the simplified V/H design equations for offshore motions in minor and moderate earthquakes are proposed for seismic analysis of offshore structures.展开更多
基岩面埋深是公路工程建设中的重要参考依据。本文通过福建地区两个探测实例,研究了微动H/V谱比法探测基岩面埋深的方法技术,介绍了微动H/V(Horizontal to Vertical)谱比法提取基岩面埋深的方法原理。首先对微动单个三分量检波器采集地...基岩面埋深是公路工程建设中的重要参考依据。本文通过福建地区两个探测实例,研究了微动H/V谱比法探测基岩面埋深的方法技术,介绍了微动H/V(Horizontal to Vertical)谱比法提取基岩面埋深的方法原理。首先对微动单个三分量检波器采集地震记录进行处理和分析,获取了测点的峰值频率F 0。在钻孔较多的情况下,可根据钻孔的中风化岩深度与峰值频率F 0的幂函数拟合,得到了该区的经验参数a和b,从而可以计算整个测区每个测点的中风化岩深度三维分布。在钻孔较少的情况下,可根据测区内部分钻孔的孔内剪切波值计算该区的覆盖层平均横波速度,进而根据经验公式计算覆盖层厚度和基岩面三维埋深分布。两个探测实例研究结果表明:微动H/V谱比法是一种快速获取公路工程三维基岩面的方法,在一定条件下,相对误差能够控制在5%左右,能够满足工程勘察的需求。微动谱比法具有简便性和易操作性,点位可随机布置,几乎不受场地条件限制,能够取得较好的地质效果,可推广应用。展开更多
The InSight(Interior Exploration using Seismic Investigations,Geodesy,and Heat Transport)mission has recorded continuous ambient noise signals with many spectral peaks since its landing in 2018.The majority of these p...The InSight(Interior Exploration using Seismic Investigations,Geodesy,and Heat Transport)mission has recorded continuous ambient noise signals with many spectral peaks since its landing in 2018.The majority of these peaks are modes produced by instrumental vibrations and are associated with environmental factors,such as temperature and wind energy fluctuations.Understanding how these modes react under various conditions is crucial because it aids in identifying their origins.In this study,we analyzed the three-component spectra of InSight recordings from sols 184–738 and obtained the horizontal-to-vertical spectral ratio(HVSR,also known as H/V)curves for different time intervals.The primary modes,such as those at 3.3 and 4.1 Hz,exhibited different behaviors,suggesting diverse origins.Some modes were sensitive to low temperature and some were sensitive to high temperature.Additionally,we investigated the influence of wind and temperature on the H/V curve.The peak frequency was mainly affected by temperature,whereas the H/V value was not associated with the temperature or wind only.Characterizing these modes and elucidating their origins are significant for processing signals from InSight and can provide valuable guidance for designing future planetary seismometers.展开更多
微动H/V谱比,即地表记录的不同频率地震背景噪声的水平分量与垂直分量的比值.在工程地震领域,通常用V表示微动记录的垂直分量,用H表示微动记录的水平分量,测得作为频率函数的H/V谱比曲线后,依据一定的关系(通常是经验的),建立H/V谱比曲...微动H/V谱比,即地表记录的不同频率地震背景噪声的水平分量与垂直分量的比值.在工程地震领域,通常用V表示微动记录的垂直分量,用H表示微动记录的水平分量,测得作为频率函数的H/V谱比曲线后,依据一定的关系(通常是经验的),建立H/V谱比曲线的峰值与地层结构基阶共振频率之间的关系,从而估计沉积层厚度或场地放大因子,有时也称为HVSR(Horizontal-to-Vertical Spectral Ratio)或QTS(Quasi Transfer Spectrum)方法.由于微动中波型成分的物理来源模糊不清,其主导能量究竟是Rayleigh波、S波或者其它波型成分存在争议,因此,虽然在工程地震领域获得了广泛应用,微动H/V谱比法仍然缺乏严格的理论解释.这导致该方法趋于两个方向发展:一是从地震记录中,识别出Rayleigh波能量,计算Rayleigh波的ZH幅度比,又称Rayleigh波椭率(ellipticity).之所以称为Rayleigh波ZH幅度比,是因为在地震层析成像领域,V常用来表示Rayleigh波水平分量的特征函数,多用Z表示Rayleigh波的垂直分量.作为独立变量,Rayleigh波ZH幅度比对浅层速度结构更为敏感,在区域尺度地震层析成像领域获得广泛应用,用于弥补单独相(群)速度对浅层结构,尤其是沉积层结构约束不够的缺点.这种方法意味着H/V谱比曲线中的主要能量是Rayleigh波,除了在区域尺度与Rayleigh波的频散和(或)接收函数联合反演地球结构之外,在工程物探领域,也利用Rayleigh波椭率反演近地表S波速度结构.基于H/V谱比曲线的峰值推断场地响应的理论假设是SH波占据微动的主导能量,这与微动观测记录通常由Rayleigh波能量占据主导地位的情况不符,因此H/V谱比法的另一个研究方向是发展不同的背景噪声源模型,考虑可能贡献的背景噪声能量,解释H/V谱比曲线.这样就避免了微动记录的主导成分是面波还是体波的争论,发展更适合或接近实际记录的微动模型解释H/V谱比曲线,该方向的发展是伴随地震干涉理论的发展而逐步发展起来的.我们曾经对区域尺度的(地震事件或背景噪声)Rayleigh波ZH幅度比的研究和应用进行了评述.本文主要评述微动H/V谱比法在工程地震领域和近地表S波速度结构反演中的应用及相应的理论解释.包括基于SH波共振频率解释的微动H/V谱比法估计场地特征,基于Rayleigh波占据微动主导能量的Rayleigh波椭率在反演近地表速度结构中的应用,以及为解释实际微动H/V谱比曲线而发展的背景噪声源模型.展开更多
基金Project(2011CB013605)supported by the National Basic Research Development Program of China(973 Program)Projects(51178071,51008041)supported by the National Natural Science Foundation of ChinaProject(NCET-12-0751)supported by the New Century Excellent Talents Program in University of Ministry of Education of China
文摘In order to study the differences in vertical component between onshore and offshore motions,the vertical-to-horizontal peak ground acceleration ratio(V/H PGA ratio) and vertical-to-horizontal response spectral ratio(V/H) were investigated using the ground motion recordings from the K-NET network and the seafloor earthquake measuring system(SEMS).The results indicate that the vertical component of offshore motions is lower than that of onshore motions.The V/H PGA ratio of acceleration time histories at offshore stations is about 50%of the ratio at onshore stations.The V/H for offshore ground motions is lower than that for onshore motions,especially for periods less than 0.8 s.Furthermore,based on the results in statistical analysis for offshore recordings in the K-NET,the simplified V/H design equations for offshore motions in minor and moderate earthquakes are proposed for seismic analysis of offshore structures.
文摘基岩面埋深是公路工程建设中的重要参考依据。本文通过福建地区两个探测实例,研究了微动H/V谱比法探测基岩面埋深的方法技术,介绍了微动H/V(Horizontal to Vertical)谱比法提取基岩面埋深的方法原理。首先对微动单个三分量检波器采集地震记录进行处理和分析,获取了测点的峰值频率F 0。在钻孔较多的情况下,可根据钻孔的中风化岩深度与峰值频率F 0的幂函数拟合,得到了该区的经验参数a和b,从而可以计算整个测区每个测点的中风化岩深度三维分布。在钻孔较少的情况下,可根据测区内部分钻孔的孔内剪切波值计算该区的覆盖层平均横波速度,进而根据经验公式计算覆盖层厚度和基岩面三维埋深分布。两个探测实例研究结果表明:微动H/V谱比法是一种快速获取公路工程三维基岩面的方法,在一定条件下,相对误差能够控制在5%左右,能够满足工程勘察的需求。微动谱比法具有简便性和易操作性,点位可随机布置,几乎不受场地条件限制,能够取得较好的地质效果,可推广应用。
基金supported by the Strategic Priority Research Program of the Chinese Academy of Sciences(Grant No.XDB 41000000).
文摘The InSight(Interior Exploration using Seismic Investigations,Geodesy,and Heat Transport)mission has recorded continuous ambient noise signals with many spectral peaks since its landing in 2018.The majority of these peaks are modes produced by instrumental vibrations and are associated with environmental factors,such as temperature and wind energy fluctuations.Understanding how these modes react under various conditions is crucial because it aids in identifying their origins.In this study,we analyzed the three-component spectra of InSight recordings from sols 184–738 and obtained the horizontal-to-vertical spectral ratio(HVSR,also known as H/V)curves for different time intervals.The primary modes,such as those at 3.3 and 4.1 Hz,exhibited different behaviors,suggesting diverse origins.Some modes were sensitive to low temperature and some were sensitive to high temperature.Additionally,we investigated the influence of wind and temperature on the H/V curve.The peak frequency was mainly affected by temperature,whereas the H/V value was not associated with the temperature or wind only.Characterizing these modes and elucidating their origins are significant for processing signals from InSight and can provide valuable guidance for designing future planetary seismometers.
文摘微动H/V谱比,即地表记录的不同频率地震背景噪声的水平分量与垂直分量的比值.在工程地震领域,通常用V表示微动记录的垂直分量,用H表示微动记录的水平分量,测得作为频率函数的H/V谱比曲线后,依据一定的关系(通常是经验的),建立H/V谱比曲线的峰值与地层结构基阶共振频率之间的关系,从而估计沉积层厚度或场地放大因子,有时也称为HVSR(Horizontal-to-Vertical Spectral Ratio)或QTS(Quasi Transfer Spectrum)方法.由于微动中波型成分的物理来源模糊不清,其主导能量究竟是Rayleigh波、S波或者其它波型成分存在争议,因此,虽然在工程地震领域获得了广泛应用,微动H/V谱比法仍然缺乏严格的理论解释.这导致该方法趋于两个方向发展:一是从地震记录中,识别出Rayleigh波能量,计算Rayleigh波的ZH幅度比,又称Rayleigh波椭率(ellipticity).之所以称为Rayleigh波ZH幅度比,是因为在地震层析成像领域,V常用来表示Rayleigh波水平分量的特征函数,多用Z表示Rayleigh波的垂直分量.作为独立变量,Rayleigh波ZH幅度比对浅层速度结构更为敏感,在区域尺度地震层析成像领域获得广泛应用,用于弥补单独相(群)速度对浅层结构,尤其是沉积层结构约束不够的缺点.这种方法意味着H/V谱比曲线中的主要能量是Rayleigh波,除了在区域尺度与Rayleigh波的频散和(或)接收函数联合反演地球结构之外,在工程物探领域,也利用Rayleigh波椭率反演近地表S波速度结构.基于H/V谱比曲线的峰值推断场地响应的理论假设是SH波占据微动的主导能量,这与微动观测记录通常由Rayleigh波能量占据主导地位的情况不符,因此H/V谱比法的另一个研究方向是发展不同的背景噪声源模型,考虑可能贡献的背景噪声能量,解释H/V谱比曲线.这样就避免了微动记录的主导成分是面波还是体波的争论,发展更适合或接近实际记录的微动模型解释H/V谱比曲线,该方向的发展是伴随地震干涉理论的发展而逐步发展起来的.我们曾经对区域尺度的(地震事件或背景噪声)Rayleigh波ZH幅度比的研究和应用进行了评述.本文主要评述微动H/V谱比法在工程地震领域和近地表S波速度结构反演中的应用及相应的理论解释.包括基于SH波共振频率解释的微动H/V谱比法估计场地特征,基于Rayleigh波占据微动主导能量的Rayleigh波椭率在反演近地表速度结构中的应用,以及为解释实际微动H/V谱比曲线而发展的背景噪声源模型.