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首页> 外文期刊>Indian medical journal >Use of a simplified Mahalanobis?distance approach to constrain the dispersion and provenance of Cr-pyrope populations at the Chidliak kimberlite province, Nunavut, Canada
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Use of a simplified Mahalanobis?distance approach to constrain the dispersion and provenance of Cr-pyrope populations at the Chidliak kimberlite province, Nunavut, Canada

机译:使用简化的Mahalanobis?距离方法来限制Chidliak Kimberlite Province,Nunavut,加拿大Cr-Pyrope种群的分散和出差

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摘要

Exploration for diamond-bearing kimberlites in the Chidliak project area by Peregrine Diamonds has generated a grid-like till sampling pattern across four discrete areas of interest totalling 402?km_(2)that is densely populated with research-grade compositional data for 10,743 mantle-derived Cr-pyrope garnets. The available dataset is well suited to statistical analysis, in part due to the relatively unbiased spatial coverage. Previous workers showed empirically that the TiO~(2)and Mn thermometry (Ti-TMn) attributes of Cr-pyrope populations at the Chidliak project may serve as source-specific “fingerprints”. In this work, we employ a simplified version of the multivariate Mahalanobis distance technique to formally examine the variability of, and differences between, Ti-TMn attributes of Cr-pyrope subpopulations recovered from a Laurentide-age glaciated terrain that also contains 30 known kimberlites within the four areas of interest. We show the simplified Mahalanobis distance approach enables accurate discrimination of Cr-pyrope subpopulations with subtly to distinctly different Ti-TMn attributes, and permits proper demarcation of their respective kimberlite source(s), specifically in areas with straightforward glacial histories. Redistribution and blending of Cr-pyrope subpopulations from known kimberlite sources is also observed, and typifies areas at Chidliak with complex late-glacial histories. Our results support 1100?°C) Cr-pyropes between closely spaced kimberlite source(s) and also between physically adjacent magma batches within single kimberlite pipes. The local scale variability is attributed to protokimberlite fluid or melt interacting with, and metasomatizing discrete conduits within, the ambient diamond-facies peridotitic mantle at times closely preceding eruption of kimberlite magma batches at Chidliak.
机译:通过Peregrine钻石在Chidliak项目区的钻石金伯拉特勘探已经产生了一种网格状直到来自四个离散的利息区域的采样模式,总计402?KM_(2),其浓密地填充了10,743型披风的研究级组成数据衍生的Cr-Pyrope Garnets。可用数据集非常适合统计分析,部分原因是由于相对无偏见的空间覆盖范围。以前的工人对Chidliak项目的Cr-Pyrope群体的TiO〜(2)和Mn温度(Ti-TMN)属性可以作为特定于源的“指纹”。在这项工作中,我们采用了一种简化的多元马哈拉诺比斯距离技术,以正式检查从劳伦德时代冰川地形中回收的Cr-Pyrope亚群的Ti-TMN属性之间的差异,也含有30个已知的金伯拉特内部四个感兴趣的领域。我们展示了简化的Mahalanobis距离方法,可以精确地识别Cr-Pyrope亚步骤,巧妙地识别到明显不同的Ti-TMN属性,并且允许其各自的金伯拉特来源的适当分界,特别是在具有直接冰川历史的区域。还观察到来自已知的金伯利钛矿源的Cr-Pyrope群的再分分配和混合,并用复杂的后冰历史为Chidliak的区域。我们的结果支持1100?°C)在紧密间隔的金伯拉特源之间的Cr-吡喃,以及在单个金伯拉特管道内的物理上相邻的岩浆批次之间。本地规模的变异性归因于Protokimberlite流体或熔体与Chidliak的爆发爆发的爆发爆发的周期性钻石相偏执术中的分立导管和熔化的离散导管。

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