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Based on the data synthesis simulation and the actual processing of the airgun seismic source signal, three quantitative indicators of signal-to-noise ratio, waveform correlation coefficient and phase offset, are superimposed. We systematically evaluate the functions of the following three stack methods including linearity, phase weighting and S-transform in the extraction of weak signals under strong background noise and quantitatively estimate the reliability of the stack results. Through the comprehensive discussion of the above three methods of stack results, the preliminary comparative analysis believes that the linear stack signal-to-noise ratio is low, but the waveform distortion is minimal; the phase-weighted superimposed signal-to-noise ratio is high and the phase offset is small, but the results of the waveform quality and linear stack are larger than the deviation; the S-transform stack has a relatively higher signal-to-noise ratio and a small loss of waveform amplitude, but there is a certain phase shift phenomenon. It is therefore suggested that linear stack technology should be used when the requirements of both waveform quality and time precision are high. However, the selection of the stack method when the airgun source excitation is limited should be emphasized. If high fidelity is required, the S-transform stack method should be selected; if the required time is high, accuracy can be selected by phase-weighted stack method to achieve reasonable extraction of weak signals.  相似文献   
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远震相对走时数据快速计算方法及应用   总被引:5,自引:2,他引:3  
江国明  张贵宾  徐峣 《地球物理学报》2012,55(12):4097-4105
远震层析成像技术已成为研究地球深部速度结构最为主要的方法,而其所用数据通常为初至震相的相对走时残差值.本文针对信噪比差的远震波形资料提出一种计算远震相对走时残差数据的快速方法,整个计算过程全部由计算机自动完成.该方法主要有两大特点:(1)利用互相关方法计算波形间的偏移时间时引入波形相位信息,有效压制噪声,增强有用震相的识别;(2)改进常规方法中计算相对走时残差的理论公式,避免求解超定方程组,提高计算精度.为验证新方法的可行性和实用性,以长江中下游地区远震波形资料为例,采用常规方法和新方法分别计算相对走时残差数据,对比结果显示:新方法比常规方法的工作效率和数据精度都高.  相似文献   
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I have examined precisely the differential travel times and waveforms of SmKS seismic phases propagating under the southern Indian Ocean obtained from African broadband seismic arrays. The SmKS phases analyzed in this study travel in the mantle with weak heterogeneity confirmed by a global tomographic study for the distance range of 115-135°. The SmKS differential times were obtained from a vespagram (a stack intensity on a time-slowness diagram), and comparison with the vespagram created from synthetic waveforms with PREM gives the travel-time residual for each event-array pair. Although the residuals of S3KS-S2KS times exhibit apparently a systematic dependence on epicentral distance, this is likely due to small-scale heterogeneity beneath the Oceania where is covered by the SmKS ray entering points at the CMB. Waveform modeling was applied to a record section with a small travel-time residual that suggests a small effect from the mantle heterogeneity on the data set, I found that a low-velocity zone in the outermost 50 km in the core rather than PREM can explain an additional arrival detected just after the S3KS phase. This result is still inconclusive because of the small number of data and non-uniqueness of the model and ambiguity due to mantle structure. However, accumulation of the precise measurement described in this study may help the reduction of uncertainty and trade-offs.  相似文献   
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宋超  盖增喜 《地球物理学报》2018,61(4):1225-1237
据中国地震台网测定,北京时间2015年4月15日15时39分,在内蒙古自治区阿拉善左旗(39.8°N,106.3°E)发生MS5.8地震,震源深度为10 km.地震发生后多家机构对其开展了研究,本文使用喜马拉雅Ⅱ期布设在南北地震带北段的台站观测数据,通过走时反演和波形拟合反演的迭代,获得了该地区地壳一维速度结构,接着利用直达P波观测与理论走时差对震中位置重定位,然后反演地震的最佳双力偶解以及震源深度,最终得到了区域速度结构、地震的三维坐标、发震时刻以及震源机制解.结果显示,此次地震发生于世界时2015年4月15日7时39分26.718s,震中(39.7663°N,106.4304°E),震源矩心深度18 km,矩震级MW5.25,节面Ⅰ走向176°,倾角85°,滑动角-180°,节面Ⅱ走向86°,倾角90°,滑动角-5°.结合该区域断裂带构造运动分析,本文认为此次地震是左旋走滑破裂,略带正断分量,断层面是节面Ⅱ,走向为NEE(近E-W)向,发震构造为震中附近的E-W向隐伏断裂.  相似文献   
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