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Dynamics of fault motion and the origin of contrasting tectonic style between Earth and Venus

机译:地球与金星之间断层运动的动力学和对比的构造样式的起源

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摘要

Plate tectonics is one mode of mantle convection that occurs when the surface layer (the lithosphere) is relatively weak. When plate tectonics operates on a terrestrial planet, substantial exchange of materials occurs between planetary interior and its surface. This is likely a key in maintaining the habitable environment on a planet. Therefore it is essential to understand under which conditions plate tectonics operates on a terrestrial planet. One of the puzzling observations in this context is the fact that plate tectonics occurs on Earth but not on Venus despite their similar size and composition. Factors such as the difference in water content or in grain-size have been invoked, but these models cannot easily explain the contrasting tectonic styles between Earth and Venus. We propose that strong dynamic weakening in friction is a key factor. Fast unstable fault motion is found in cool Earth, while slow and stable fault motion characterizes hot Venus, leading to substantial dynamic weakening on Earth but not on Venus. Consequently, the tectonic plates are weak on Earth allowing for their subduction, while the strong plates on Venus promote the stagnant lid regime of mantle convection.
机译:板块构造是地幔对流的一种模式,在表层(岩石圈)相对较弱时发生。当板块构造在地球上运行时,行星内部与其表面之间会发生大量物质交换。这可能是维持星球上宜居环境的关键。因此,必须了解板块构造在哪种条件下在地球上运行。在这种情况下令人费解的观察之一是,尽管构造和大小相似,但板块构造发生在地球上,而不发生在金星上。诸如含水量或粒度差异之类的因素已被调用,但这些模型无法轻松解释地球与金星之间形成鲜明对比的构造样式。我们认为,摩擦的强烈动态减弱是关键因素。快速的不稳定断层运动在凉爽的地球上发现,而缓慢而稳定的断层运动则是热的金星的特征,导致地球上的动态减弱而在金星上没有。因此,地球上的构造板块较弱,可以俯冲,而金星上的强板块则促进了地幔对流的停滞盖状态。

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