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首页> 外文期刊>Journal of structural geology >Ring schlieren: Description and interpretation of field relations in the Halifax Pluton, South Mountain Batholith, Nova Scotia
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Ring schlieren: Description and interpretation of field relations in the Halifax Pluton, South Mountain Batholith, Nova Scotia

机译:Ring schlieren:新斯科舍省南山基托里斯哈利法克斯岩体的场关系描述和解释

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摘要

A ~35 km coastal transect of the Halifax Pluton in South Mountain Batholith (SMB) reveals 96 m-scale ring schlieren, clustered in four locations. Ring schlieren are alternating melanocratic gradational to leucocratic bands in granites forming open to closed, nested, circular to elliptical, concentric to eccentric structures with centres aligned along the major axis or minor axis of the outer ellipse, with a cylindrical form in three dimensions, and in which cross-cutting relations suggest a younging direction towards the centre. We use detailed geometric measurements of these ring schlieren to interpret the process(es) of their formation, and to indicate the relative timing of emplacement of the SMB. The dimensions and orientations of the rings are highly variable: major-axis lengths (1.39 ± 1.43 m), minor-axis lengths (1.01 ± 0.79 m), ellipticities (1.34 ± 0.25), and major-axis orientations (008°±54°). Ring schlieren appear to be the youngest structures in this part of the batholith. Modal-abundance and grain-size variation in the rings suggests that they result from shear flow. In three dimensions, the rings are nested vertical cylinders, and probably represent vertical fossil pathways, either of descending xenoliths or of ascending supercritical vapour bubbles. Such processes can produce, and preserve, a track in a crystal-melt mush having a degree of crystallinity between 55 and 75%. Two miarolitic cavities within one multi-ring structure suggest that a rising bubble train may have produced the rings.
机译:南山区基部(SMB)的哈利法克斯岩体(Halifax Pluton)的一个约35公里的沿海样带揭示了96 m规模的环形纹影,分布在四个位置。环状纹影在花岗岩中是由黑克拉克阶向白垩纪带交替变化的,形成开放至闭合,嵌套,圆形至椭圆形,同心至偏心结构,其中心沿外椭圆的长轴或短轴对齐,并具有三个维度的圆柱形状;以及贯穿各领域的关系表明了朝着中心方向迈进的年轻趋势。我们使用这些环形纹影的详细几何尺寸来解释其形成过程,并指出SMB放置的相对时机。环的尺寸和方向变化很大:长轴长度(1.39±1.43 m),短轴长度(1.01±0.79 m),椭圆率(1.34±0.25)和长轴方向(008°±54) °)。 schlieren环似乎是岩床这一部分中最年轻的结构。环中的模态丰度和晶粒尺寸变化表明,它们是剪切流产生的。在三个维度上,这些环是嵌套的垂直圆柱体,并且可能代表垂直的化石路径,即下降的异岩或上升的超临界蒸气泡。这样的过程可以在结晶度为55%至75%之间的晶体熔体中产生并保持轨道。在一个多环结构中的两个微石质腔表明,上升的气泡序列可能产生了环。

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