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151.
Anatomy of a subduction complex: architecture of the Franciscan Complex,California, at multiple length and time scales 总被引:1,自引:0,他引:1
John Wakabayashi 《International Geology Review》2015,57(5-8):669-746
The Franciscan Complex of California records over 150 million years of continuous E-dipping subduction that terminated with conversion to a dextral transform plate boundary. The Franciscan comprises mélange and coherent units forming a stack of thrust nappes, with significant along-strike variability, and downward-decreasing metamorphic grade and accretion ages. The Franciscan records progressive subduction, accretion, metamorphism, and exhumation, spanning the extended period of subduction, rather than events superimposed on pre-existing stratigraphy. High-pressure (HP) metamorphic rocks lack a thermal overprint, indicating continuity of subduction from subduction initiation at ca. 165 Ma to termination at ca. 25 Ma. Accretionary periods may have alternated with episodes of subduction erosion that removed some previously accreted material, but the complex collectively reflects a net addition of material to the upper plate. Mélanges (serpentinite and siliciclastic matrix) with exotic blocks have sedimentary origins as submarine mass transport deposits, whereas mélanges formed by tectonism comprise disrupted ocean plate stratigraphy and lack exotic blocks. The former are interbedded with and grade into coherent siliciclastic units. Palaeomegathrust horizons, separating nappes accreted at different times, appear restricted to narrow zones of <100 m thickness. Exhumation of Franciscan units, both coherent and mélange, was accommodated by significant extension of the hanging wall and cross-sectional extrusion. The amount of total exhumation, as well as exhumation since subduction termination, needs to be considered when comparing Franciscan architecture to modern and ancient subduction complexes. Equal dextral separation of folded Franciscan nappes and late Cenozoic (post-subduction) units across strands of the (post-subduction) San Andreas fault system shows that the folding of nappes took place prior to subduction termination. Dextral separation of similar clastic sedimentary suites in the Franciscan and the coeval Great Valley Group forearc basin is approximately that of the San Andreas fault system, precluding major syn-subduction strike-slip displacement within the Franciscan. 相似文献
152.
黏弹性地基中PCC桩扭转振动响应解析方法研究 总被引:2,自引:0,他引:2
考虑土体材料的黏性阻尼和桩-土扭转耦合振动,把桩看作一维杆,将土体视作三维轴对称黏弹性介质,对黏弹性地基中现浇混凝土大直径管桩(简称PCC桩)扭转振动频域特性进行了理论研究,采用Laplace变换和分离变量的方法求得了桩顶扭转频域响应解析解。将所得解完全退化到实心桩的解,并与经典平面应变解进行对比,验证了解析解的合理性。分析了桩长以及土体黏性阻尼系数对桩顶速度导纳和复动刚度的影响,得到了各参数对桩扭转振动特性影响的规律。分析表明:桩周土黏性阻尼系数增大可以显著提高桩顶扭转复动刚度和减小速度导纳振荡幅值,而桩芯土黏性阻尼系数的影响不明显;桩长越长,桩顶复动刚度越大,速度导纳振荡幅值越小,但当桩长增大到一定程度时,再继续增加桩长,桩顶复动刚度基本没有改变。 相似文献
153.
Progressive changes in lithological association of the Sanbagawa metamorphic complex,Southwest Japan: Relict clinopyroxene and detrital zircon perspectives 下载免费PDF全文
The main tectono‐stratigraphic unit (Shirataki unit) of the Sanbagawa metamorphic complex in central Shikoku is characterized by abundant mafic schist layers that show the mid‐ocean ridge basalt (MORB) affinity. These MORB‐derived schist layers are absent in a southern (structurally lower) domain within the unit. Instead, sporadic occurrences of small metabasite lenses that contain relict igneous minerals (Ti‐rich augite and kaersutite) indicative of alkali basalt magmatism are newly recognized in the southern domain. Compositions of relict clinopyroxene in metabasalt are useful to identify the tectonic setting and origin of the protolith basalt, and those in each unit of the Sanbagawa metamorphic complex are presented. The metamorphic grade of the Shirataki unit generally increases structurally upwards in the southern side of the highest‐grade zone, and metamorphic zonation is subparallel to lithostratigraphic succession. The protolith assemblage of the Shirataki unit shows a distinct change from the southern low‐grade domain (lower Shirataki subunit) composed of terrigenous sedimentary rocks (mudstone and sandstone) with minor alkali basalt to the northern higher‐grade domain (upper Shirataki subunit) consisting of terrigenous and pelagic sedimentary rocks with abundant MORB. The youngest detrital zircon U–Pb ages (ca 95–90 Ma) suggest that both domains have Late Cretaceous depositional ages at the trench. Progressive peeling of oceanic plate stratigraphy during subduction can account for the observed change of lithological association in the Shirataki unit. 相似文献
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156.
豫西后造山阶段存在变质核杂岩吗? 总被引:1,自引:1,他引:1
不少学者用变质核杂岩模式解释豫西造山阶段基底隆起和与之相伴的盆岭构造的构造格局。介一本区基底隆起的形态、机制、时限和地壳剥露层次均没有变质核杂岩特征与基底隆起相伴的断陷人舅地也不同于变质核杂岩模式中的半地堑。 相似文献
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159.
钙贝塔石发现于四川西昌的霓辉石-钠铁闪石脉中,与之共生的矿物是霓辉石,钠铁闪石,钠长石,铈磷灰石,硅钛铈矿,沥青铀矿,重晶石,方解石和彩钼铅矿等。钙贝塔石呈黑色,黑褐色,具八面体晶形,大小为2mm~8mm,条痕为黑色或黄褐色,油脂到沥青光泽,贝壳状断口。摩氏硬度为6.05~6.44(Hv=570.08kg/mm^2~689.06kg/mm^2);无解理,比重4.51(扭力天平法测定),反射率从406nm(13.53%)到659nm(11.87%)。经计算钙贝塔石的化学式为:(Ca,Na,U)2(Nb,Ti)2(0,OH),。钙贝塔石的强X射线:2.975(10.222),2.570(5.400),1.816(9.440),1.549(8.622),1.050(6.844),等轴晶系,α=1.029nm。 相似文献
160.
高桥沟花岗斑岩体位于扬子板块北缘,属于汉南杂岩的一部分。锆石LA−MCP−MS U−Pb定年结果显示其形成时代为(794.4±5.7)Ma,为南华纪早期。岩石地球化学特征为高Si(75.78%~76.51%)、富碱(K2O+Na2O=7.78%~7.84%)、富K(K2O/Na2O=1.07~1.10),属高钾钙碱性系列。稀土总量∑REE为272.57×10–6,轻重稀土元素组之间分馏明显。二长花岗斑岩形成于岩浆演化中晚期阶段,岩浆上侵过程中部分熔融沉积岩、火山岩物质。高桥沟花岗斑岩体形成于后造山构造环境,强力就位的侵位机制。 相似文献