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Water solubility and diffusivity in olivine: its role in planetary tectonics

机译:橄榄石中的水溶性和扩散性:其在行星构造中的作用

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摘要

New constraints on the thermodynamic equation of state of water and the predicted water fugacity dependence of OH-solubility at elevated P-T conditions along with its influence on dislocation dynamics in olivine are reviewed. Water is shown to control the style of tectonics of a planetary lithosphere by switching on highly localized weak faulting instead of a broad, slow creeping flow. The transition occurs above a water concentration of 200 ppm H/Si. We argue that this changeover in style of tectonics has important implications for the mechanics of subduction and for plate tectonics in general. Efficient recycling of water is only given if the top strong part of the lithosphere can fail and be dragged down into the mantle in a steady way. Due to different starting conditions and differences in accretion through planetismals, Venus may have never have reached a water content above 200 ppm H/Si in the upper mantle while Mars would have now left the plate tectonic regime due to fast cooling.
机译:对水状态热力学方程的新约束以及在升高的PT条件下OH溶解度对水逸度的预测依赖性及其对位错的影响sup> 综述了橄榄石中的动力学。通过将 切换到高度局部的弱断层而不是缓慢的缓慢蠕变的 流,可以证明水可以控制 行星岩石圈的构造样式。过渡发生在200 ppm H / Si的水浓度以上。我们认为,构造形式上的这种转变对俯冲作用和板构造构造上的 的力学意义重大。只有在岩石圈的顶部坚固部分可以 失效并稳定地拖入地幔中的情况下,才能有效回收水 。由于 由于不同的起始条件和通过行星运动而产生的吸积 的差异,金星可能从未达到过200 ppm H / Si中的水 含量。由于快速冷却,火星将 留在上地幔的构造构造区域。

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