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Imaging shallow structure with active-source surface wave signal recorded by distributed acoustic sensing arrays 被引量:4
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作者 zhenghong song Xiangfang Zeng +2 位作者 Clifford H.Thurber Hebert F.Wang Dante Fratta 《Earthquake Science》 CSCD 2018年第4期208-214,共7页
Distributed acoustic sensing(DAS) is one recently developed seismic acquisition technique that is based on fiber-optic sensing. DAS provides dense spatial spacing that is useful to image shallow structure with surface... Distributed acoustic sensing(DAS) is one recently developed seismic acquisition technique that is based on fiber-optic sensing. DAS provides dense spatial spacing that is useful to image shallow structure with surface waves.To test the feasibility of DAS in shallow structure imaging,the PoroTomo team conducted a DAS experiment with the vibroseis truck T-Rex in Brady’s Hot Springs, Nevada, USA.The Rayleigh waves excited by the vertical mode of the vibroseis truck were analyzed with the Multichannel Analysis of Surface Waves(MASW) method. Phase velocities between5 and 20 Hz were successfully extracted for one segment of cable and were employed to build a shear-wave velocity model for the top 50 meters. The dispersion curves obtained with DAS agree well with the ones extracted from co-located geophones data and from the passive source Noise Correlation Functions(NCF). Comparing to the co-located geophone array, the higher sensor density that DAS arrays provides help reducing aliasing in dispersion analysis, and separating different surface wave modes. This study demonstrates the feasibility and advantage of DAS in imaging shallow structure with surface waves. 展开更多
关键词 distributed acoustic sensing surface wave multiple channel analysis shallow structure
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利用城市通信光缆进行地震观测和地下结构探测 被引量:20
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作者 王宝善 曾祥方 +2 位作者 宋政宏 李孝宾 杨军 《科学通报》 EI CAS CSCD 北大核心 2021年第20期2590-2595,共6页
在城市地区开展地震观测和地下结构探测有助于提升城市防震减灾能力和城市地下空间利用能力.然而城市地区密集的建筑和频繁的人类活动一定程度上阻碍了在城市地区开展地震观测.利用近年来发展的分布式声波传感技术在云南省宾川县城区开... 在城市地区开展地震观测和地下结构探测有助于提升城市防震减灾能力和城市地下空间利用能力.然而城市地区密集的建筑和频繁的人类活动一定程度上阻碍了在城市地区开展地震观测.利用近年来发展的分布式声波传感技术在云南省宾川县城区开展实验,以探索城市地区地震观测新方法.总长5.2 km的地下通信光缆被分成上千个传感单元(单元间隔为数米).光缆记录信号中可以识别出车辆运动、气枪震源、人工落锤等不同振动信号.利用从光缆记录的背景噪声,提取了面波信号,并获得了地表200 m以内的横波速度结构,这为工程场地评价提供了重要信息.以上初步结果表明,城市地下通信光缆为城市精细结构探测、交通监测和地震预警等工作提供了一种新型观测手段. 展开更多
关键词 分布式声波传感 通信光缆 地震观测 地震成像 城市地区
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