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Michael Commer Stefan L. Helwig reas Hördt Carsten Scholl Bülent Tezkan 《Geophysical Journal International》2006,167(3):1172-1187
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A general tomographic technique is designed in order (i) to operate in anisotropic media; (ii) to account for the uneven seismic sampling and (iii) to handle massive data sets in a reasonable computing time. One modus operandi to compute a 3-D body wave velocity model relies on surface wave phase velocity measurements. An intermediate step, shared by other approaches, consists in translating, for each period of a given mode branch, the phase velocities integrated along ray paths into local velocity perturbations. To this end, we develop a method, which accounts for the azimuthal anisotropy in its comprehensive form. The weakly non-linear forward problem allows to use a conjugate gradient optimization. The Earth's surface is regularly discretized and the partial derivatives are assigned to the individual grid points. Possible lack of lateral resolution, due to the inescapable uneven ray path coverage, is taken into account through the a priori covariances on parameters with laterally variable correlation lengths. This method allows to efficiently separate the 2ψ and the 4ψ anisotropic effects from the isotropic perturbations. Fundamental mode and overtone phase velocity maps, derived with real Rayleigh wave data sets, are presented and compared with previous maps. The isotropic models concur well with the results of Trampert & Woodhouse. Large 4ψ heterogeneities are located in the tectonically active regions and over the continental lithospheres such as North America, Antarctica or Australia. At various periods, a significant 4ψ signature is correlated with the Hawaii hotspot track. Finally, concurring with the conclusions of Trampert & Woodhouse, our phase velocity maps show that Rayleigh wave data sets do need both 2ψ and 4ψ anisotropic terms. 相似文献
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3D behaviour of contamination in landfill sites using 2D resistivity/IP imaging: case studies in Portugal 总被引:2,自引:0,他引:2
Aiming at defining a valid spatial contamination model, resistivity and induced polarization (IP) measurements were used to
investigate contamination plumes in the vicinity of two municipal landfills (Ovar and ílhavo). Previous geophysical surveys
and underground water samples confirmed the contamination. However 2D resistivity/IP surveys enabled in obtaining a more accurate
spatial model. The Ovar survey consisted of two profiles with nine Wenner soundings each; the ílhavo survey was carried out
along two individual lines using a Wenner standard pseudo-section. In both situations, negative IP values were found associated
with positive IP values, which can be explained mainly by 2D or 3D geometric effects caused by the presence of the conductive
plumes. The data were modelled using a 2D inversion program (RES2DINV) and the resulting resistivity and chargeability distributions
were displayed as pseudo-sections. The resistivity and chargeability pseudo-sections define the contamination plumes and the
sedimentary structure. These case studies illustrate the advantages of 2D resistivity/IP surveys for the mapping of shape
and dimension of contamination associated with landfills. 相似文献
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选取四川省汶川至马尔康公路线的磨子沟作为试验对象,采用弯道超高法推算其泥石流流速。进而可以计算出该次泥石流的平均流量,为公路的改建工程提供设计依据。经过实地调查,用此方法计算磨子沟2005年8月17日暴发的泥石流流速为4.4m/s。同其他流速方法计算的结果相比较,前者值偏大,且偏向于工程安全值。弯道超高法可以解决泥石流观测的局限性和泥石流发生的不可重复性。此方法简便易行,对泥石流防治工程具有一定的实用价值。 相似文献