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The dynamics of an insulating plate over a thermally convecting fluid and its implication for continent movement over convective mantle

机译:在热对流流体上的绝缘板的动态及其对对流地幔的大陆运动含义

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Continents exert a thermal blanket effect to the mantle underneath by locally accumulating heat and modifying the flow structures, which in turn affects continent motion. This dynamic feedback is studied numerically with a simplified model of an insulating plate over a thermally convecting fluid with infinite Prandtl number at Rayleigh numbers of the order of $10<^>{6}$ . Several plate-fluid coupling modes are revealed as the plate size varies. In particular, small plates show long durations of stagnancy over cold downwellings. Between long stagnancies, bursts of velocity are observed when the plate rides on a single convection cell. As plate size increases, the coupled system transitions to another type of short-lived stagnancy, in which case hot plumes develop underneath. For an even larger plate, a unidirectional moving mode emerges as the plate modifies impeding flow structures it encounters while maintaining a single convection cell underneath. These identified modes are reminiscent of some real cases of continent-mantle coupling. Results show that the capability of a plate to overcome impeding flow structures increases with plate size, Rayleigh number and intensity of internal heating. Compared to cases with a fixed plate, cases with a freely drifting plate are associated with higher Nusselt number and more convection cells within the flow domain.
机译:大陆通过局部累积热量并改变流动结构,将热毯效果施加到下面的地幔上,并改变流动结构,这反过来影响大陆运动。这种动态反馈用在瑞利数量的瑞利数量为10美元的瑞利数量的热对流流体上用绝缘板的简化模型进行了数字地研究了无限的普朗特数,以10美元{6} $。随着板尺寸变化,揭示了几种板流体耦合模式。特别是,小板展示了冷酷沉船的长期停滞不前。在长滞术之间,当板乘坐在单个对流单元上时,观察到速度脉冲。作为板尺寸的增加,耦合系统过渡到另一种类型的短寿命停滞,在这种情况下,在这种情况下,在这种情况下发生热羽毛。对于甚至更大的板,由于板改变阻碍妨碍流动结构,同时保持在下面的单个对流单元的情况下,单向移动模式出现单向移动模式。这些所识别的模式使得一些大陆地幔耦合的实际情况。结果表明,克服阻抗流动结构的板材的能力随板尺寸,瑞利数和内部加热强度增加。与具有固定板的情况相比,具有自由漂移板的情况与流动域内的更高的营养数和更多的对流细胞相关联。

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