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141.
High-Resolution Seismic Reflection Evidence for Middle Holocene Environmental Change, Owasco Lake, New York 总被引:2,自引:0,他引:2
Approximately 70 km of new decimeter-resolution seismic reflection profile data from Owasco Lake, New York define a middle Holocene (4600 14C yr B.P.) erosion surface in the north end of the lake at water depths as great as 26 m. Beneath the lake, post-glacial sediments are up to 9 m thick and represent about 10% of the total sediment fill. Early to middle Holocene sediments, 6 m thick, contain biogenic gas at the south end of the basin and a large (4 km×300 m×15 m) subaqueous slide deposit along the east-central portion of the lake. Late Holocene sediments are thinner or absent, particularly at the north end of the lake. The middle Holocene erosion surface may have been produced by a drop in lake level. Alternatively, it may represent a change in climate during the transition between the relatively warm Holocene hypsithermal and cool neoglacial. At this time (4600 14C yr B.P.) circulation in Owasco Lake appears to have evolved from sluggish to active. The increased circulation, which persists today, probably resulted from atmospheric cold fronts with strong southwesterly winds that piled up water at the north end of the lake. The increased water circulation may have been ultimately driven by decreasing insolation, which produced an increased pole-to-equator thermal gradient and, thus, stronger global winds that began at the transition between the hypsithermal and neoglacial. 相似文献
142.
High-resolution structures of the Landers fault zone inferred from aftershock waveform data 总被引:2,自引:0,他引:2
High-frequency body waves recorded by a temporary seismic array across the surface rupture trace of the 1992 Landers, California, earthquake were used to determine fault-zone structures down to the seismogenic depth. We first developed a technique to use generalized ray theory to compute synthetic seismograms for arbitrarily oriented tabular low-velocity fault-zone models. We then generated synthetic waveform record sections of a linear array across a vertical fault zone. They show that both arrival times and waveforms of P and S waves vary systematically across the fault due to transmissions and reflections from boundaries of the low-velocity fault zone. The waveform characteristics and arrival-time patterns in the record sections allow us to locate the boundaries of the fault zone and to determine its P - and S -wave velocities independently as well as its depth extent. Therefore, the trade-off between the fault-zone width and velocities can be avoided. Applying the method to the Landers waveform data reveals a low-velocity zone with a width of 270–360 m and a 35–60 per cent reduction in P and S velocities relative to the host rock. The analysis suggests that the low-velocity zone extends to a depth of ∼7 km. The western boundary of the low-velocity zone coincides with the observed main surface rupture trace. 相似文献
143.
144.
A multifold crustal-scale deep seismic near-vertical reflection profile generates a large number of single-ended shot gathers, which provide redundant data sets because of overlapping coverage of the shallow refractors. We present an approach for deriving the shallow velocity structure by modelling and inversion of single-ended seismic refraction first arrival traveltime data. We apply this method to a data set acquired with a 12-km long spread with 100 m spacing of shots and receivers, of the Neoproterozoic Marwar basin in the NW Indian shield. The approach is shown to be quite successful for delineating the shallow refractor depths, steep dips and velocities, even in the absence of regular reverse refraction profiles. The study reveals two-layered sedimentary formations, Malani volcanics and a complicated basement configuration of the Marwar basin, and provides a measure of resolution and uncertainty of the estimated model parameters. A seismic section of the near-trace gather is found to be qualitatively consistent with the derived structural features of the basin. The relative highs and lows, observed in the Bouguer gravity profile, further corroborate the derived velocity model. The present approach can be especially useful in offshore areas and elsewhere, where the single-ended multifold seismic profiles are the only available data sets. 相似文献
145.
松辽盆地深部反射地震探查 总被引:14,自引:4,他引:14
概述了近年来用近垂直反射地震方法研究不同大地构造单元的地壳结构和深部构造问题所取得的基本成果,说明了在松辽盆地内所进行的两次深反射地震探查,包括位置、科学目标、资料采集、处理技术和基本结果,利用延长排列所得到的约42km长共炮点资料,求出松辽盆地地壳平均速度约为6.197km/s。通过初步解释,认为在上部地壳存在多组低角度断裂、中下部地壳构造具有更为复杂的震相、Moho震相比较清晰,多处出现与Moho震相斜交的震相。 相似文献
146.
水与流体饱和孔隙介质界面上非镜面反射声场的实验研究 总被引:5,自引:0,他引:5
用光学法和发射-接收法研究了水与流体饱和孔隙介质界面上声波的非镜面反射声场.测量了入射角θi为16°-80°范围内的反射系数R,记录了θi在Rayleigh波临界角θc附近±4°范围内两束反射波的反射角、波束位移△、波形和频谱.实验发现:(1)在θc附近±4°范围内,观察到θi两束反射波A和B,其中波束B沿界面有波束位移△,实验测出△随θi增大而减小,并非在θi=θc时最大.(2)反射角等于θi的波束的频谱很接近于入射波的频谱,反射角等于θc的波束的频谱相对于入射波有频谱的负偏移.(3)波束A的相位与发射换能器直达波的相位一致,波束B的相位与波束A相反 相似文献
147.
148.
149.
HUANG Guangyuan 《中国科学D辑(英文版)》2001,44(2):159-165
Some new imaging formulas for seismic reflection wave and their theoretical basis are given. Phenomena of wave propagation
should be characterized by instantaneous spectrum and expressed by complex function of three variables (time, space and frequency)
in mathematics. Various physical parameters of medium are also complex functions of two variables (space and frequency). The
relationship between reflection coefficient of medium and spectrum of reflected wave is given. Multi-reflection and filter
of formations are considered in inversion formulas. Problems in classical convolution model and wave equation are illustrated.
All these inversion formulas can be used to image underground medium by wavelet transform and method of “3-basic colors”.
Different colors mean different media. 相似文献
150.
Two-dimensional asymptotic iterative elastic inversion 总被引:3,自引:0,他引:3
Side Jin Raul Madariaga Jean Virieux Gilles Lambaré 《Geophysical Journal International》1992,108(2):575-588