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Field, chemical, and physical constraints on mafic-felsic magma interaction in the Lamarck Granodiorite, Sierra Nevada, California

机译:加利福尼亚内华达州拉马克花岗闪长岩中镁铁质-长质岩浆相互作用的场,化学和物理约束

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摘要

Evidence of magma interactions resulting in both hybridization and mingling are preserved in a diverse suite of gabbroic to intermediate rocks associated with the compositionally zoned hornblende-biotite Lamarck Granodiorite of the eastern Sierra Nevada, California. Ellipsoidal mafic enclaves were formed by quenching of small amounts of high-alumina basaltic magma upon injection into and dispersal through granodiorite magma early in its crystallization. Synplutonic intrusions of hornblende gabbro through hybridized mafic granodiorite represent injection of mafic magma at a later stage of crystallization of the granodiorite, as they crosscut regional trends in foliation and compositional zoning in the host pluton. Where compositional contrasts between intrusion and host granodiorite are large, contacts are sharp and abundant enclaves derived from the mafic intrusion are present in the granodiorite. Where the host is relatively mafic or where the local-scale proportion of mafic magma is large, contacts are zones of extensive hybridization that contain both enclaves and hybrid schlieren. Uncontaminated mafic intrusions have high-alumina basaltic compositions, whereas hybridized intrusions have silica contents as high as 63.5%. Mafic intrusions locally contain coarse-grained cumulus gabbro inclusions. Mafic schlieren in granodiorite far from mafic intrusions represent localized accumulations of hornblende, Fe-Ti oxides, and biotite from the granodiorite. Intrusion of late mafic dikes mobilized and entrained granitic residue from the granodiorite and formed composite dikes of aplite and pillowed diorite. Whether interacting magmas mix or mingle is a function of the heat contents and mass fractions of the end members. Calculations that account for compositions, heats of fusion, heat capacities of liquids and crystals, and a range of initial temperatures, crystallinities, crystal sizes, and magma water contents indicate that in most circumstances the basalt end member quenches; the resulting large viscosity contrast between the end members prevents hybridization. Homogenization is likely only if the compositional difference between host and injected mafic magma is less than 10% SiO2 or if the mass fraction of mafic magma is greater than 0.5. Resulting mixtures have the composition of tonalite or mafic granodiorite; thus, the more silicic rocks of the granodiorite pluton must represent differentiation products rather than direct hybrids of mafic or intermediate magma and felsic magma.
机译:导致混合 和混合的岩浆相互作用的证据被保存在与组成区带 hornblende-黑云母相关的多种辉长岩至 中间岩石中加利福尼亚内华达州东部Sierra 的Lamarck Granodiorite。椭圆形镁铁质飞地是由 注入并通过花岗闪长岩岩浆早期 扩散后对少量高铝玄武岩浆进行淬火而形成的。杂交的镁铁质花岗闪长岩对角闪石 gabbro的侵入性侵入代表了镁铁质岩浆结晶后期的镁铁质岩浆的注入 ,因为它们横切了区域趋势。宿主子体的叶面和组成 分区。在 侵入体与主体花岗闪长岩之间的成分对比较大的地方,接触是锋利的 ,并且在镁橄榄石中存在来自镁铁质侵入体的大量飞地。在寄主相对镁铁质的地方或 镁铁质岩浆的局部比例大的地方,接触物 是包含两个飞地的大量杂交区域 和混合schlieren。未受污染的镁铁质侵入岩具有高氧化铝 玄武岩成分,而杂化侵入岩具有较高的二氧化硅 含量。黑手党入侵本地包含 粗粒积云辉岩包裹体。远离镁铁质侵入体的 granodiorite中的黑铁质schlieren代表了角闪石,铁钛氧化物和黑云母来自花岗闪长岩的局部聚集 。从花岗闪长岩中动员并夹带花岗岩 堤坝,并形成 磷灰石和枕状闪长岩的复合堤坝。 相互作用岩浆混合还是混合是末端构件的 热量和质量分数。计算 ,该计算考虑了成分,熔化热,液体和晶体的热容 以及一系列初始温度, 结晶度,晶体尺寸,岩浆含水量表明 ,在大多数情况下,玄武岩端部件会淬灭; 在端部构件之间产生很大的粘度对比,从而防止了 杂交。仅当基质和注入的镁铁质岩浆之间的成分 差异小于 10%SiO 2 或镁铁质岩浆的质量分数时,才可能发生均质化大于 0.5。所得混合物的组成为方钠石或 镁铁质花岗闪长岩;因此,花岗闪长岩 岩体中硅质含量较高的岩石必须代表分化产物,而不是镁铁质或中性岩浆和长岩浆的直接 杂化物。

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  • 来源
    《GSA Bulletin》 |1987年第2期|272-291|共20页
  • 作者单位

    U.S. Geological Survey, 345 Middlefield Road, Menlo Park, California 94025 and Department of Geology, Stanford University, Stanford, California 94305;

    Department of Geology, Stanford University, Stanford, California 94305;

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