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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Thennal evolution of the Earth: Secular changes and fluctuations of plate characteristics
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Thennal evolution of the Earth: Secular changes and fluctuations of plate characteristics

机译:地球的时间演化:板块特征的长期变化和波动

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摘要

The average secular cooling rate of the Earth can be deduced from compositional variations of mantle melts through time and from theological conditions at the onset of sub-solidus convection at the end of the initial magma ocean phase. The constraint that this places on the characteristics of mantle convection in the past are investigated using the global heat balance equation and a simple parameterization for the heat loss of the Earth. All heat loss parameterization schemes depend on a closure equation for the maximum age of oceanic plates. We use a scheme that accounts for the present-day distribution of heat flux at Earth's surface and that does not depend on any assumption about the dynamics of convection with rigid plates, which remain poorly understood. We show that heat supply to the base of continents and transient continental thermal regimes cannot be ignored. We find that the maximum sea floor age has not changed by large amounts over the last 3 Ga. Calculations lead to a maximum temperature at an age of about 3 Ga and cannot be extrapolated further back in time. By construction, these calculations are based on the present-day tectonic regime characterized by the subduction of large oceanic plates and hence indicate that this regime did not prevail until an age of about 3 Ga. According to this interpretation, the onset of rapid continental growth occurred when the current plate regime became stable. (C) 2007 Published by Elsevier B.V.
机译:地球的平均长期冷却速率可以从地幔融化随时间变化的成分以及初始岩浆海洋阶段结束时的亚固相对流开始的神学条件推导出。使用全局热平衡方程和对地球热损失的简单参数化,研究了过去对地幔对流特征的约束。所有的热损失参数化方案都取决于海洋洋洋板最大年龄的闭合方程。我们使用一种方案来说明当今地球表面的热通量分布,并且该方案不依赖于对刚性板对流动力学的任何假设,而这些假设仍然鲜为人知。我们表明,向各大洲基础提供的热量和瞬变的大洲热力状况不容忽视。我们发现,最近3 Ga的最大海床年龄没有发生很大变化。计算得出的最高温度为3 Ga左右,因此无法及时推断。通过构造,这些计算是基于以大洋板块俯冲为特征的当今构造机制,因此表明该机制直到年龄约3 Ga才盛行。根据这种解释,大陆开始迅速生长当当前的板块状态稳定时发生。 (C)2007由Elsevier B.V.发布

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