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Decay of dynamic fracturing based on three-dimensional measurements of clastic-dike geometry

机译:基于碎石堤坝几何三维测量的动态压裂衰减

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摘要

Several fundamental issues of fracture mechanics during the post-dynamic stage are yet not fully understood, including fracture arrest mechanisms, effects of the three-dimensional fracture propagation on fracture aperture and height relations, and the role played by fracture tips on fracture termination. We studied these issues in the seismically active Dead Sea basin, where clastic dikes (>10 m) and numerous smaller dikelets (<1 m) dynamically intruded the late-Pleistocene soft rock of the Lisan Formation. A three-dimensional study of the dikelets shows that they form arrest zones at the tips of the larger clastic dikes. Geometrically, the dikelets are divided into two parts: (1) the main dikelet, in which the aperture profile along the dikelet height is approximately elliptic; and (2) the elongated tip, in which the aperture profile along the tip height is approximately constant. The dikelet aspect ratio is defined as A/H, where A is dikelet aperture and H is dikelet height. A plot of A/H versus H describes power relations with two different zones: (1) Zone A, with a small variation of A/H, between 0.02 and 0.06, for dikelets in height range of 100-700 mm; and (2) Zone B, where the aspect ratio sharply increases to 0.23 in dikelets with heights less than ~ 100 mm. We interpret that during deceleration, when the height of the elongated tip became greater than 1/10 of the dikelet height, inelastic conditions are dominant. Under these conditions, the fracture velocity decreases significantly and the dikelet aspect ratio increases. The present observations and analyses indicate that formation of elongated tips and dike (fracture) segmentation are essential for the decay of the dynamic fracturing.
机译:在动力学后阶段,断裂力学的几个基本问​​题尚未完全弄清,包括断裂停止机制,三维裂缝传播对裂缝孔径和高度关系的影响以及裂缝尖端对裂缝终止的作用。我们在地震活跃的死海盆地中研究了这些问题,那里的碎石堤坝(> 10 m)和许多较小的堤坝(<1 m)动态地侵入了利桑组的晚更新世软岩。堤坝的三维研究表明,堤坝在较大的碎石堤坝的顶端形成了逮捕区。从几何学上讲,节流孔分为两部分:(1)主节流孔,其中沿节流孔高度的孔轮廓近似为椭圆形; (2)细长的尖端,其中沿尖端高度的孔轮廓大致恒定。二酮骨架的纵横比定义为A / H,其中A为二酮骨架的孔径,H为二酮骨架的高度。 A / H与H的关系图描述了两个不同区域的功率关系:(1)对于高度范围为100-700 mm的二轮车,A / H的变化很小,在0.02和0.06之间的区域A; (2)B区,其中高度小于〜100 mm的二轮车的纵横比急剧增加到0.23。我们解释说,在减速过程中,当细长尖端的高度变得大于dikelet高度的1/10时,非弹性条件占主导地位。在这些条件下,断裂速度显着下降,而二向骨架长径比增加。目前的观察和分析表明,细长尖端的形成和堤坝(裂缝)分段对于动态裂缝的衰减至关重要。

著录项

  • 来源
    《Journal of structural geology》 |2009年第8期|831-841|共11页
  • 作者单位

    Geological Survey of Israel, 30 Malkhe Israel, 95501 Jerusalem, Israel Department of Geological and Environmental Sciences, Ben Gurion University of the Negev, Beer Sheva, Israel;

    Geological Survey of Israel, 30 Malkhe Israel, 95501 Jerusalem, Israel;

    Department of Geological and Environmental Sciences, Ben Gurion University of the Negev, Beer Sheva, Israel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fracture; scaling law; fracture tip; dynamic fracturing; clastic dike;

    机译:断裂;缩放定律;骨折尖端动态压裂;碎石堤;

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