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Physical characteristics of kimberlite and basaltic intraplate volcanism and implications of a biased kimberlite record

机译:金伯利岩和玄武质板内火山岩的物理特征及其偏向金伯利岩记录的意义

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We assess bias in the record of kimberlite volcanism by using newly acquired size data on more than 900 kimberlite bodies from 12 kimberlite fields eroded to depths of between 0 m and >1200 m, and by a comparison with intraplate monogenetic basaltic volcanic fields. Eroded kimberlite fields are composed of pipes (or diatremes) and dikes, and within any one kimberlite field, regardless of erosion level, kimberlite bodies vary in area at Earth's surface over 2-3 orders of magnitude. Typically 60%-70% of the bodies are <10% the area of the largest pipe in the field. The maximum size of a kimberlite pipe found in a field shows a relationship with estimated erosion levels, suggesting that the erosion level of a region could be used to predict the maximum potential size of a pipe where it intersects the surface. The data indicate that the selective removal of surface volcanic structures and deposits by erosion has distorted the geological record of kimberlite volcanism. Selective mining of preferentially large, diamondifer-ous kimberlite pipes and underreporting of small kimberlite pipes and dikes add further bias. A comparison of kimberlite volcanic fields with intraplate monogenetic basaltic volcanic fields indicates that both types of volcanism overlap in terms of field size, volcano number and size, and typical erupted volumes. Eroded monogenetic basaltic fields consist of dikes that fed effusive and weakly explosive surface eruptions, and diatremes (pipes) generated during phreatomagmatic eruptions, and they are structurally similar to eroded kimberlite fields. Reassessment of published data suggests that kimberlite magmas can erupt in a variety of ways and that most published data, taken from the largest kimberlite pipes, may not be representative of kimberlite volcanism as a whole. This refuels long-standing debates as to whether kimberlite pipes (diatremes) primarily result from phreatomagmatic eruptions (as in basaltic volcanism) or from volatile-driven magmatic eruptions.
机译:我们通过使用从12个侵蚀到0 m至> 1200 m深度的金伯利岩田中900多个金伯利岩体的新获得的尺寸数据,并通过与板内单源玄武岩火山岩田的比较,来评估金伯利岩火山记录中的偏差。侵蚀的金伯利岩场由管道(或绝热岩)和堤坝组成,在任何一个金伯利岩场中,无论侵蚀程度如何,金伯利岩体在地球表面的面积变化都超过2-3个数量级。通常,主体的60%-70%小于现场最大管道的面积的10%。在现场发现的金伯利岩管的最大尺寸与估计的侵蚀水平之间存在关系,这表明该区域的侵蚀水平可用于预测与表面相交的管道的最大潜在尺寸。数据表明,通过侵蚀选择性清除地表火山岩结构和沉积物已经扭曲了金伯利岩火山岩的地质记录。优先开采大的,含钻石的金伯利岩管,而少报的小金伯利岩管和堤坝则增加了进一步的偏差。金伯利岩火山场与板内单生玄武岩火山场的比较表明,两种火山作用在田间大小,火山数量和大小以及典型喷发量方面都有重叠。侵蚀的单基性玄武岩田野由堤坝组成,这些堤坝充斥着爆发性和弱爆炸性的表面喷发,以及在岩浆喷发过程中产生的异常(管道),它们的结构与侵蚀的金伯利岩田相似。对已发表数据的重新评估表明,金伯利岩浆可能以多种方式爆发,并且大多数已发布的数据(取自最大的金伯利岩管)可能无法代表整个金伯利岩火山作用。这为金伯利岩管道(渗流)主要是由岩浆喷发(如玄武质火山爆发)还是由挥发性驱动的岩浆喷发引起的长期争论提供了燃料。

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