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Convective instability of 3-D fluid-saturated geological fault zones heated from below

机译:从下方加热的3D流体饱和地质断层带的对流不稳定性

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摘要

We conduct a theoretical analysis to investigate the convective instability of 3-D fluid-saturated geological fault zones when they are heated uniformly from below. In particular, we have derived exact analytical solutions for the critical Rayleigh numbers of different convective flow structures. Using these critical Rayleigh numbers, three interesting convective flow structures have been identified in a geological fault zone system. It has been recognized that the critical Rayleigh numbers of the system have a minimum value only for the fault zone of infinite length, in which the corresponding convective flow structure is a 2-D slender-circle flow. However, if the length of the fault zone is finite, the convective flow in the system must be 3-D. Even if the length of the fault zone is infinite, since the minimum critical Rayleigh number for the 2-D slender-circle flow structure is so close to that for the 3-D convective flow structure, the system may have almost the same chance to pick up the 3-D convective flow structures. Also, because the convection modes are so close for the 3-D convective flow structures, the convective flow may evolve into the 3-D finger-like structures, especially for the case of the fault thickness to height ratio approaching zero. This understanding demonstrates the beautiful aspects of the present analytical solution for the convective instability of 3-D geological fault zones, because the present analytical solution is valid for any value of the ratio of the fault height to thickness. Using the present analytical solution, the conditions, under which different convective flow structures may take place, can be easily determined.
机译:我们进行了理论分析,以研究从下方均匀加热3D流体饱和地质断层带的对流不稳定性。特别是,我们为不同对流流动结构的临界瑞利数推导了精确的解析解。利用这些临界瑞利数,在地质断层带系统中确定了三个有趣的对流流动结构。已经认识到,系统的临界瑞利数仅对于无限长的断层带具有最小值,其中对应的对流流动结构是二维细长圆流。但是,如果断层带的长度是有限的,则系统中的对流必须为3-D。即使断层带的长度是无限的,由于2-D细长圆流结构的最小临界瑞利数与3-D对流流动结构的最小临界瑞利数非常接近,因此系统可能具有几乎相同的机会拾取3D对流流动结构。同样,由于对流模式对于3-D对流流动结构是如此接近,因此对流可能演变成3-D手指状结构,尤其是在断层厚度与高度之比接近零的情况下。该理解证明了本分析解决方案对3-D地质断层带对流不稳定性的美好方面,因为本分析解决方案对于断层高度与厚度之比的任何值均有效。使用本分析解决方案,可以容易地确定可能发生不同对流流动结构的条件。

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