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浅层高频瑞利面波群速度频散分析
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作者 yinhe luo 王亮 《四川建材》 2012年第5期145-148,共4页
面波多道分析法(MASW)是一种利用瑞利面波频散特征获得剪切波速垂直剖面的有效方法。除了少数MASW研究者利用面波群速度估计剪切波速外,大部分都是利用瑞利面波相速度频散估计剪切波速。在此,我们通过三个四层模型,其中分别包含一个低... 面波多道分析法(MASW)是一种利用瑞利面波频散特征获得剪切波速垂直剖面的有效方法。除了少数MASW研究者利用面波群速度估计剪切波速外,大部分都是利用瑞利面波相速度频散估计剪切波速。在此,我们通过三个四层模型,其中分别包含一个低速夹层或一个高速夹层,首先来比较基阶瑞利面波相速度和群速度的敏感性。然后通过有限差分模拟生成合成数据。合成数据的群速度频散能量图是利用多重滤波分析法MFA生成的。最后我们结合实例,对高频面波群速度频散曲线进行反演。结果证明:①群速度的敏感性比相速度的高,并且可利用的频率范围比相速度宽,这对提高反演稳定性非常有用,因为对于一个稳定的反演系统,相速度的微小变化不能对反演的剪切波速产生较大影响;②如果基阶面波能量占主要成分,那么利用一道数据就可以得到群速度频散能量图,这意味着利用群速度频散分析可以大量减少数据采集时的炮点数,且水平分辨率也可以大大提高;③应用实例的检测资料证明,利用MFA法进行的群速度反演可以成功估测出浅地表的剪切波速。 展开更多
关键词 瑞利面波 群速度 频散分析 浅层应用
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The influences of large earthquake signals on the recovery of surface waves from ambient noise cross-correlation functions
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作者 Huayi Zhu Xiaojin Xie +1 位作者 Xiaozhou Yang yinhe luo 《Earthquake Science》 2020年第5期221-231,共11页
Ambient noise tomography(ANT)has been widely used to image crust and upmost mantle structures.ANT assumes that sources of ambient noise are diffuse and evenly distributed in space and the energy of different modes is ... Ambient noise tomography(ANT)has been widely used to image crust and upmost mantle structures.ANT assumes that sources of ambient noise are diffuse and evenly distributed in space and the energy of different modes is equipartitioned.At present,the sources of the primary and the secondary microseisms are well studied,but there are only a few on the studies of long-period ambient noise sources.In this study,we study the effects of large earthquake signals on the recovery of surface waves from seismic ambient noise data recorded by seismic stations from the US permanent networks and Global Seismographic Network(GSN).Our results show that large earthquake signals play an important role on the recovery of long-period surface waves from ambient noise cross-correlation functions.Our results are consistent with previous studies that suggest the contribution of earthquake signals to the recovery of surface waves from cross-correlations of ambient noise is dominant at periods larger than 20–40 s. 展开更多
关键词 ambient noise tomography long-period surface wave large earthquake signals noise cross-correlation function
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Heat Shielding Effects in the Earth's Crust 被引量:1
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作者 Yixian Xu Lupei Zhu +2 位作者 Qinyan Wang yinhe luo Jianghai Xia 《Journal of Earth Science》 SCIE CAS CSCD 2017年第1期161-167,共7页
Knowledge of heat flow and associated variations of temperature with depth is crucial for understanding how the Earth functions. Here, we demonstrate possible heat shielding effects that result from the occurrence of ... Knowledge of heat flow and associated variations of temperature with depth is crucial for understanding how the Earth functions. Here, we demonstrate possible heat shielding effects that result from the occurrence of mafic intrusions/layers(granulitic rocks) within a dominantly granitic middle crust and/or ultramafic intrusions/layers(peridotitic rocks) within a dominantly granulitic lower crust; heat shielding is a familiar phenomenon in heat engineering and thermal metamaterials. Simple one-dimensional calculations suggest that heat shielding due to the intercalation of granitic, granulitic and peridotitic rocks will increase Moho temperatures substantially. This study may lead to a rethinking of numerous proposed lower crustal processes. 展开更多
关键词 GEOTHERM crustal laminated structure heat shielding heat conductivity peridotitic in-trusions North Tibet magnetotelluric data.
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Body Waves Revealed by Spatial Stacking on Long-Term Cross-Correlation of Ambient Noise 被引量:1
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作者 Kai Wang yinhe luo +1 位作者 Kaifeng Zhao Limeng Zhang 《Journal of Earth Science》 SCIE CAS CSCD 2014年第6期977-984,共8页
Theoretical and experimental studies indicate that complete Green's Function can be retrieved from cross-correlation in a diffuse field. High SNR(signal-to-noise ratio) surface waves have been extracted from cross-... Theoretical and experimental studies indicate that complete Green's Function can be retrieved from cross-correlation in a diffuse field. High SNR(signal-to-noise ratio) surface waves have been extracted from cross-correlations of long-duration ambient noise across the globe. Body waves, not extracted in most of ambient noise studies, are thought to be more difficult to retrieve from regular ambient noise data processing. By stacking cross-correlations of ambient noise in 50 km inter-station distance bins in China, western United States and Europe, we observed coherent 20–100 s core phases(Sc S, PKIKPPKIKP, PcP PKPPKP) and crustal-mantle phases(Pn, P, PL, Sn, S, SPL, SnS n, SS, SSPL) at distances ranging from 0 to 4000 km. Our results show that these crustal-mantle phases show diverse characteristics due to different substructure and sources of body waves beneath different regions while the core phases are relatively robust and can be retrieved as long as stations are available. Further analysis indicates that the SNR of these body-wave phases depends on a compromise between stacking fold in spatial domain and the coherence of pre-stacked cross-correlations. Spatially stacked cross-correlations of seismic noise can provide new virtual seismograms for paths that complement earthquake data and that contain valuable information on the structure of the Earth. The extracted crustal-mantle phases can be used to study lithospheric heterogeneities and the robust core phases are significantly useful to study the deep structure of the Earth, such as detecting fine heterogeneities of the core-mantle boundary and constraining differential rotation of the inner core. 展开更多
关键词 ambient noise cross-correlation body wave
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