首页> 外文期刊>Journal of Mineralogical and Petrological Sciences >Radial cordierite-bearing orbicular granite formed from the melting of pelitic hornfels in granitic magma, Tsukuba Mountains, Japan
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Radial cordierite-bearing orbicular granite formed from the melting of pelitic hornfels in granitic magma, Tsukuba Mountains, Japan

机译:日本筑波山花岗质岩浆中角质角的熔化形成的含cord铁堇青石的球形花岗岩

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摘要

Orbicular granite occurs at Minederayama in the Tsukuba Mountains, Ibaraki Prefecture, Japan. The orbs consist of a migmatitic core, originally pelitic hornfels, and a mantle that consists mainly of radial cordierite containing apatite inclusions and subordinate feldspar and micas. The orientation and size distribution of the orbs indicates that isolated orbs had floated within the host granitic magma. According to the geometrical selection theory of crystal growth, we propose that radial cordierite grew from the orb shells to the orb cores. Melting experiments demonstrate that the mineral assemblage of the orbicular granite reflects the incongruent melting of pelitic hornfels. Important factors in the formation of the orbicular granite are the unmixing between the incongruent melt of cordierite hornfels and host granite melt, and the infiltration of the incongruent melt into the host granite melt as the cordierite crystallized. The temperature of the host granite magma, as estimated from melting experiments and mineral assemblage, was above 730℃ at 0.3 GPa, which may represent superheated conditions for the host granitic magma. Cooling of the host granite magma placed the orbs under supercooled conditions as the radial cordierite grew from the shells of the orbs to the cores.
机译:球形花岗岩产于日本茨城县筑波山的Minederayama。球体由多面性岩心(最初为小柱状角)和地幔组成,地幔主要由含有磷灰石包裹体和次长石和云母的放射状堇青石组成。球体的方向和大小分布表明,孤立的球体已经漂浮在宿主花岗岩岩浆内。根据晶体生长的几何选择理论,我们提出放射状堇青石从球壳生长到球核。融化实验表明,球形花岗岩的矿物组合反映了泥质角f的不一致融化。球形花岗岩形成的重要因素是堇青石角铁的不相溶熔体与基质花岗岩熔体之间的不混合,以及随着堇青石结晶,不一致的熔体渗入基质花岗岩熔体中。根据融化实验和矿物组合的估算,主体花岗岩岩浆的温度在0.3 GPa时高于730℃,这可能代表了主体花岗岩岩浆的过热条件。主体花岗岩岩浆的冷却使球体处于过冷状态,因为放射状堇青石从球体的壳生长到核。

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