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Mechanisms of low-flux intraplate volcanic fields-Basin and Range (North America) and northwest Pacific Ocean

机译:低通量板内火山场的机理-北美盆地和山脉以及西北太平洋

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摘要

We compare two intraplate, Pliocene-Pleistocene volcanic fields in different tectonic settings-the central Basin and Range and the northwest Pacific Ocean. Both fields are characterized by widely scattered, small-volume, alkali basaltic volcanoes; within the fields, each volcano apparently originates from a separate, volatile-enriched parental melt from the tipper mantle. There is no evidence at either held for locally anomalous heat flow or ongoing introduction of new fluids into the upper mantle such as might occur above a subducting slab. We conclude that the volcanic fields reflect deformation-driven collection of already existing partial melts in a heterogeneous; upper mantle. Deformation-driven melt collection may be in important mechanism for other diffuse intraplate volcanic fields, and this is consistent with a tectonically controlled, low-flux end member for intraplate fields where magmatism is a passive response to regional deformation. Differences in the degree of fractionation and contamination between the two fields are inferred to be related to flexure-induced vertical variations in the orientation of principal stresses in the northwest Pacific Ocean, which cause stalling of ascending dikes in the lithosphere.
机译:我们比较了两个板块,不同构造环境下的上新世-更新世火山场-盆地中部和山脉以及西北太平洋。这两个领域的特点是散布广泛的小体积碱性玄武岩火山。在田间,每个火山显然都来自自卸斗地幔中的一个单独的,富含挥发物的母体熔体。没有证据表明存在局部异常的热流或正在不断向上地幔中引入新流体,例如可能发生在俯冲板上方。我们得出的结论是,火山场反映了非均质中已经存在的部分熔体的变形驱动的集合。上地幔。变形驱动的熔体收集可能是其他扩散板内火山场的重要机制,这与板内磁场的构造控制,低通量端构件一致,在这里岩浆作用是对区域变形的被动响应。推测这两个区域之间的分离程度和污染程度的差异与西北太平洋主应力方向的挠曲引起的垂直变化有关,这会引起岩石圈上升堤防的停滞。

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