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利用地震光照成像法研究青藏高原东南缘岩石圈间断面结构及其动力学意义 被引量:2
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作者 李伟 丁志峰 孙伟家 《地震学报》 CSCD 北大核心 2019年第5期549-568,I0001,共21页
为了进一步认识青藏高原东南缘的构造演化等动力学问题以及该区域的深部孕震机理,本文使用位于该区域内的中国地震科学台阵探测项目的台站所记录到的远震P波波形数据,采用地震光照成像法获取了岩石圈间断面的结构,并讨论了该方法的准确... 为了进一步认识青藏高原东南缘的构造演化等动力学问题以及该区域的深部孕震机理,本文使用位于该区域内的中国地震科学台阵探测项目的台站所记录到的远震P波波形数据,采用地震光照成像法获取了岩石圈间断面的结构,并讨论了该方法的准确性和稳定性。研究结果显示,青藏高原东南缘的岩石圈西薄东厚,其中:滇缅泰地块腾冲火山附近最薄,约为60 km,其较薄的岩石圈可能是软流圈地幔物质上涌造成的;扬子地块岩石圈厚度从四川盆地向南逐渐减薄,特别是四川盆地下方最厚,可达190 km左右;滇缅泰地块腾冲火山下方150 km深度左右探测到明显的间断面,该间断面可能是腾冲火山原始岩浆源的位置即岩浆源。本研究所得结果“印支地块与滇缅泰地块结构的连续性”进一步为印度板块的推挤作用造成腾冲火山低速物质向东溢出的结论提供了地震学证据。此外,研究区域最北端的剖面显示,峨眉山大火成岩省的内带在50—250 km深度范围及其上方地壳内存在明显的局部高速异常,其不均匀分布特征可能与二叠纪火山喷发过程中岩浆底侵及中新生代以来多期次构造活动有关。 展开更多
关键词 岩石圈 地震光照成像法 间断面 青藏高原东南缘 高分辨率
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A new seismic daylight imaging method for determining the structure of lithospheric discontinuity
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作者 Weijia SUN Liyun FU +1 位作者 Wei WEI Qingya TANG 《Science China Earth Sciences》 SCIE EI CAS CSCD 2019年第2期473-488,共16页
The fine-scale structures of lithosphere discontinuities contain important information on the dynamics of lithosphere formation, development, transformation, and destruction. In this paper, a new seismic daylight imag... The fine-scale structures of lithosphere discontinuities contain important information on the dynamics of lithosphere formation, development, transformation, and destruction. In this paper, a new seismic daylight imaging method is developed to explore the small-scale structures of lithosphere discontinuities. This method makes use of the P-wave first arrival and coda in the 0.5–4 Hz high frequency band of teleseismic events, and reaches a resolution of 2 km for lithosphere discontinuities. This method rests on the basic principle that the autocorrelation of the vertically incident transmission response below the seismic station is equivalent to the reflection response with the source and station both on the free surface. The transmission responses include the first-arrival P-waves below the station traversing the discontinuities to reach the free surface, and the multiple reflections between the free surface and the discontinuities. In this study, the normal incidence requirement of the method is further extended to include dip incidence illumination, which expands its applicability. The accuracy and feasibility of the seismic daylight imaging (SDI) theory are verified by synthesized theoretical seismograms, and the factors affecting the imaging results are discussed. The data processing steps and the interpretation criteria for the method are also given. The fine-scale lithosphere structure of two permanent stations at the eastern North China Craton is determined by the method described here, as well as instantaneous frequency. Clear discontinuities are found in the lithospheric mantle at 52 and 75 km below the two stations, respectively. Seismic daylight imaging and the receiver function reveal a more consistent lithosphere structure beneath the MBWA permanent station of the West Australia Craton, with the unmistakable presence of the lithosphere discontinuities.High-frequency SDI can be used to detect the fine-scale lithospheric structures. As its waveform is more complex, and hence appropriate reference to 展开更多
关键词 LITHOSPHERE DISCONTINUITY Mid-lithosphere DISCONTINUITY seismic daylight imaging AUTOCORRELATION
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