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Statistical evaluation of tectonomagmatic discrimination diagrams for granitic rocks and proposal of new discriminant-function-based multi-dimensional diagrams for acid rocks

机译:花岗岩岩石构造特征判别图的统计评估以及基于判别函数的新的酸性岩石多维图的建议

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The four tectonic discrimination diagrams of Pearce et al. [Journal of Petrology, v. 25, p. 956-983] for granitic rocks were first evaluated using the literature cited by these authors as well as from our new database. The first diagram (Y−Nb) cannot discriminate volcanic-arc and collision settings. Both Y−Nb and Yb−Ta diagrams have an overlapping field for within-plate and ocean-ridge granitoids. The remaining two diagrams (Y + Nb−Rb and Yb + Ta−Rb) use a mobile element (Rb) in their y-axis. Although these diagrams successfully discriminate volcanic-arc and within-plate granites, they perform less well for collision tectonics. Besides, felsic or acid rocks are scarce in ocean-ridge settings, which limits the usefulness of these diagrams for this geological environment. Therefore, using an extensive database, we proposed a set of five new discriminant-function-based multi-dimensional diagrams for acid magmas from four tectonic settings (island arc, continental arc, continental rift, and collision). The very similar tectonic settings of island and continental arcs are discriminated for the first time. These diagrams are based on correct statistical treatment of compositional data, because they use natural logarithm transformation of major-element ratios and linear discriminant analysis (LDA). The use of discordant outlier-free samples prior to LDA improved the success rates by about 3-5%. Success rates of these diagrams as inferred from a testing set were between 76% and 88% for island arc, 60% and 92% for continental arc, and 72% and 84% for both continental rift and collision settings. Finally, application of these new diagrams to case studies not compiled in our initial database used for constructing these diagrams provided the following results: a collision setting for the Himalayas at about 30 Ma; an island arc setting for Quaternary acid rocks from geothermal boreholes in El Salvador; an island- or continental-arc setting for northern Italy at 35-52 Ma; a continental-arc setting for the Italy-Austria border at about 30 Ma; either a rift or a collision setting for northern Nigeria at about 164 Ma; a collision setting for central Nigeria at about 144 Ma and for the Cretaceous Masirah ophiolites of Oman; and an island arc setting for the Cretaceous Semail ophiolites of Oman. In spite of the relative mobility of major elements, these applications suggest utility of the new discrimination diagrams for all four tectonic settings.View full textDownload full textKeywordsmajor-element, tectonic settings, acid rocks, felsic rocks, discordant outliers, log-ratio transformation, tectonomagmatic discriminationRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00206814.2010.543784
机译:皮尔斯等人的四个构造判别图。 [《岩石学杂志》第25卷,第25页。首先使用这些作者引用的文献以及我们的新数据库对花岗岩进行了评估([956-983])。第一张图(YâN’Nb)不能区分火山弧和碰撞设置。 YˆNb图和YbˆTa图都具有板内和海脊花岗岩的重叠场。其余两个图(Y + Nb + Rb和Yb + Ta + Rb)在其y轴上使用移动元素(Rb)。尽管这些图成功地区分了火山弧和板内花岗岩,但它们在碰撞构造方面的表现较差。此外,海脊环境中缺乏长英质或酸性岩石,这限制了这些图表在这种地质环境中的有用性。因此,我们使用一个广泛的数据库,为来自四个构造环境(岛弧,大陆弧,大陆裂谷和碰撞)的酸性岩浆提出了一组五组基于判别函数的多维图。首次区分了岛弧和大陆弧的非常相似的构造环境。这些图基于成分数据的正确统计处理,因为它们使用了主要元素比率的自然对数转换和线性判别分析(LDA)。在LDA之前使用无异常的离群样本可以将成功率提高约3-5%。从测试集推断出的这些图的成功率在岛弧上为76%至88%,对于大陆弧为60%至92%,对于大陆裂谷和碰撞设置为72%至84%。最后,将这些新图应用于未在用于构建这些图的初始数据库中进行汇编的案例研究时,得出以下结果:喜玛拉雅山的碰撞环境约为30 Ma;萨尔瓦多地热钻孔中第四纪酸性岩石的岛弧环境;意大利北部35-52 Ma处的岛屿或大陆弧环境;意大利-奥地利边界的大陆弧环境,大约30 Ma;尼日利亚北部约164 Ma处的裂谷或碰撞环境;尼日利亚中部大约144 Ma与阿曼白垩纪Masirah蛇绿岩的碰撞环境;阿曼的白垩纪Semail蛇绿岩的岛状弧形环境。尽管主要元素具有相对移动性,但这些应用仍建议对所有四个构造背景使用新的判别图。查看全文下载全文关键字主要元素,构造背景,酸性岩,长英质岩,不和谐离群值,对数比变换, tectonomamatic歧视相关var addthis_config = {ui_cobrand:“泰勒和弗朗西斯在线”,services_compact:“ citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,更多”,发布:“ ra-4dff56cd6bb1830b”};添加到候选列表链接永久链接http://dx.doi.org/10.1080/00206814.2010.543784

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