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Possible Temperatures in the Oceanic Upper Mantle and the Formation of Magma

机译:海洋上地幔可能的温度和岩浆的形成

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摘要

Note: This paper is dedicated to Aaron and Elizabeth Waters on the occasion of Dr. Waters' retirement. Horizontal heat transfer, either by plates that cool as they move away from their source at a ridge axis or by convection currents, invalidates all temperature distributions calculated on the assumption of purely radial outward heat transfer. Temperature gradients in the upper mantle in oceanic regions are estimated on the assumptions that (1) the top of the low-velocity zone corresponds to the "wet" solidus of peridotite containing a very small amount of water, and (2) that the seismic discontinuity near 400-km depth corresponds to the olivine-β spinel inversion. The gradients are very low, suggesting that convection is the dominant mode of heat transfer throughout the upper mantle. Possible temperature profiles are accordingly drawn by joining a conduction solution in the lithosphere to an adiabatic (or near-adiabatic) curve below the lithosphere. The temperature profile at any point depends on the local age of the plate; it is impossible to devise a representative average oceanic geotherm that could be used, when superposed on a petrological phase diagram, to predict the depth of formation of magmas or to account for their compositional variations.
机译:注意:本文专门针对亚伦和伊丽莎白·沃特斯 在沃特斯博士退休之际进行。 水平传热,是通过在冷却时冷却的板进行的。 / sup>在脊轴处或通过对流 电流远离它们的源,在纯径向向外传热的假设下,使所有计算出的温度分布 无效。在以下假设下估算海洋区域上地幔的温度 梯度 :(1)低速区顶部 对应于含有很少量水的橄榄岩的“湿”固相线,(2)在400 km深度附近的地震不连续性对应于橄榄石-β尖晶石的反转。 梯度非常低,表明对流是整个上地幔的主要传热方式。 可能的温度曲线通过加入来绘制 岩石圈中的传导溶液到岩石圈以下的绝热(或 近绝热)曲线。在任何点的温度 轮廓取决于板块的局部年龄; 不可能设计出可以使用的代表性平均海洋 地热叠加在岩石学 相图上,以预测岩浆或 的形成深度,以说明它们的成分变化。

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  • 来源
    《GSA Bulletin》 |1973年第2期|515-522|共8页
  • 作者

    JOHN VERHOOGEN;

  • 作者单位

    Department of Geology and Geophysics, University of California, Berkeley, California 94720;

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  • 正文语种 eng
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