首页> 外文期刊>Journal of structural geology >Fluid-filled fractures in Earth's lithosphere: Gravitational loading, interpenetration, and stable height of dikes and veins
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Fluid-filled fractures in Earth's lithosphere: Gravitational loading, interpenetration, and stable height of dikes and veins

机译:地球岩石圈中充满流体的裂缝:重力载荷,互穿作用以及堤防和静脉的高度稳定

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摘要

We present two analytical solutions for the boundary-value problem of a homogeneous, isotropic, and linear elastic solid with a vertical fluid-filled crack, and use these to investigate the effects of gravitationally induced stress and pressure gradients on the opening distribution, fracture-tip stress intensity, and stable heights of veins and dikes. Stable fractures are not propagating or closing anywhere along their tipline, so the vein or dike is in its final arrested configuration as preserved in the rock record. The solutions do not preclude interpenetration of crack surfaces, so we propose special constraints to avoid such ill-posed problems. Veins and dikes both grow as fluid-filled, opening fractures in Earth's brittle lithosphere, but attain markedly different heights. We show how gravity-induced pressure gradients in water and magma, and stress gradients in the host rock, lead to different stable heights. Dikes, but not veins, can attain stable heights near the level of neutral buoyancy in a density stratified rock mass, even if the host rock fracture toughness is zero. Depth to center and opening distributions for dikes are different if host rock density is stratified or continuously variable. These solutions offer a new set of analytical tools for interpreting field data from veins and dikes.
机译:我们针对具有垂直流体填充裂纹的均质,各向同性和线性弹性固体的边值问题,提供了两种解析解,并使用它们来研究重力引起的应力和压力梯度对孔分布,裂缝的影响。尖端应力强度大,脉脉高度稳定。稳定的裂缝不会沿着其尖端传播或闭合,因此,静脉或堤坝处于岩石记录中所保存的最终止动形态。解决方案不排除裂纹表面互穿,因此我们提出了特殊的约束条件来避免此类不适定的问题。静脉和堤坝都随着充满流体的,易碎的岩石圈破裂而生长,但高度却明显不同。我们展示了重力在水和岩浆中引起的压力梯度以及在主体岩石中的应力梯度如何导致不同的稳定高度。即使主体岩石的断裂韧度为零,堤防,但不包括静脉,也可以在密度分层的岩体中达到接近中性浮力水平的稳定高度。如果基质岩石密度是分层的或连续变化的,则堤坝的中心深度和开口分布是不同的。这些解决方案提供了一套新的分析工具,可用于解释来自静脉和堤坝的现场数据。

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