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91.
92.
On the minimization of correlated residuals 总被引:1,自引:0,他引:1
Martin Füllekrug 《Geophysical Journal International》1996,126(1):63-68
93.
94.
95.
Calculating the two-dimensional magnetotelluric Jacobian in finite elements using reciprocity 总被引:6,自引:0,他引:6
Patricia Pastana de Lugão Philip E. Wannamaker 《Geophysical Journal International》1996,127(3):806-810
To speed up the calculation of the field Jacobian for 2-D magnetoteliuric inversion using finite elements, the principle of electromagnetic reciprocity is applied. The governing relationship for the Jacobian of the field along strike is obtained by differentiating the Helmholtz equation with respect to the resistivity of each region in the finite-element mesh. The result is a similar Helmholtz equation for the Jacobian, with new sources distributed over all nodes within the parameter medium. However, according to the principle of electromagnetic reciprocity, the roles of sources and receivers are interchangeable. Utilizing reciprocity, the field values obtained from the original forward problem and for new unit sources imposed at the receivers are then utilized in the calculation of the Jacobian by simple multiplication and summation with finite-element terms at each rectangle in the mesh. For the auxiliary (across-strike) fields, the Jacobian terms are obtained by solving source vectors loaded with parabola coefficients used in the approximation to Maxwell's equations. Jacobian terms for the apparent resistivity ( p a ), the impedance phase (φ) and the vertical magnetic field ( K zy ) are then calculated utilizing the parallel- and auxiliary-field Jacobians. Comparison of Jacobian values obtained from reciprocity calculations and by differencing two forward solutions show that the reciprocity method is accurate and can be used to decrease the number of calculations required to obtain sensitivities by one to two orders of magnitude. 相似文献
96.
从理论与模型算例两方面对一种以Parker公式为基础的频率域位场反演方法做了进一步深入研究。表明它是一种能够更有效地引入低通滤波因子的迭代方法。与改进的正则化稳定因子相结合,提出新的快速正则化反演方法。除了将其用于反演求解均质界面以外,它也被推广至变物性的界面反演以及物性反演 相似文献
97.
含油气盆地构造样式研究中几个问题的讨论 总被引:6,自引:0,他引:6
对我国含油气盆地构造样式研究中存在的一些主要问题进行了讨论。包括:关于构造样式的确切含义及类型的划分,由于对构造样式概念理解的不一致,导致了构造样式类型划分的混乱;构造样式的鉴别,往往由于过分强调了某些单一“鉴定标志”而忽略了总体变形特征,从而导致对构造变形机理的错误判断;中国含油气盆地的构造反转问题。 相似文献
98.
间歇侧移式的裂陷与递进跳跃式的反转:以阜新煤盆地为例 总被引:6,自引:0,他引:6
位于闾山背斜隆起核部西侧的阜新断陷盆地从早白垩世义县组晚期开始,在东西两侧盆缘的F″1、F2断层所、围限的地堑内接受了义县组上部中性火山岩的堆积。火山喷发停止后,九佛堂组的大陆碎屑岩建造仍在F″1和F2断层之间的地堑内充填。九佛堂裂陷期之后该区地壳掀斜隆升,盆地南侧的义县地区开始反转抬升而不再接受沉积,西缘的F2断层也停止活动。到沙海组充填时盆地已演化为受F″1断层控制的、东断西超的半地堑盆地;沙海期裂陷终止后F″1断层停止活动,阜新组裂陷是在向东移的F′1盆缘断层控制下半地堑内发育的。阜新期裂陷结束后盆地又发生了一次跳跃式的反转,许多正断层发育成上逆下正的复合断层,并出现正花状构造。中白垩世孙家湾组的沉陷进一步向东侧移,形成了以F1断层为盆缘断层的半地堑;孙家湾期后发生本区最强烈的整体反转、隆升和褶断,结束了盆地的演化历史。阜新盆地间歇侧移式的裂陷与递进跳跃式的反转为盆地反转建立一个新的构造模式 相似文献
99.
E. Tavarnelli 《International Journal of Earth Sciences》1996,85(2):363-371
The Umbria-Marche foreland fold-and-thrust belt in the northern Apennines of Italy provides excellent evidence to test the
hypothesis of synsedimentary-structural control on thrust ramp development. This orogenic belt consists of platform and pelagic
carbonates, Late Triassic to Miocene in age, whose deposition was controlled by significant synsedimentary extension. Normal
faulting, mainly active from Jurassic through Late Cretaceous-Paleogene time, resulted in significant lateral thickness variability
within the related stratigraphic sequences. By Late Miocene time the sedimentary cover was detached from the underlying basement
and was deformed by east-verging folds and west-dipping thrusts. Two restored balanced cross sections through the southernmost
part of the belt show a coincidence between the early synsedimentary normal faults and the late thrust fault ramps. These
evidences suggest that synsedimentary tectonic structures, such as faults and the related lithological lateral changes, can
be regarded as mechanically important controlling factors in the process of thrust ramp development during positive tectonic
inversion processes. 相似文献
100.
M. R. Handy 《International Journal of Earth Sciences》1996,85(4):832-851
The Zone of Samedan is part of a fossil, early Mesozoic rift system originally situated in the distal, Lower Austro-Alpine
domain of the Adriatic passive continental margin. An early Mesozoic configuration of asymmetrical rift basins bounded by
relative structural highs compartmentalized Late Cretaceous active margin tectonics; Jurassic half-grabens were folded into
arcuate synclines, whereas relative structural highs engendered thin, imbricated thrust sheets. West-directed thrusting and
folding initiated at the surface and continued to depths favoring mylonitization under lower greenschist-facies conditions.
At this time Liguria-Piemontese ophiolites were accreted to Lower Austro-Alpine units directly underlying the Zone of Samedan.
Late Cretaceous orogenic collapse of the Adriatic active margin involved the reactivation of west-directed thrusts as low-angle,
top-to-the-east, normal faults. These faults accommodated extensional uplift of Liguria-Piemontese ophiolites and Lower Austro-Alpine
units beneath and within the Zone of Samedan. During Paleogene collision, some Late Cretaceous faults in the Zone of Samedan
were reactivated under lower anchizonal conditions as north-directed thrusts. The latter stages of this early Tertiary thickening
were transitional to brittle, high-angle normal faulting associated with top-to-the-east extension and spreading above the
warm, uplifting Lepontine dome. 相似文献