沉积盆地开口裂缝的可能形成机制

Y. Rebetsky
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摘要

论文表明,在沉积过程中的最初几百年里,在较小的陆架深度范围内(最多 100 米),沉积盆地会形成正交的开放式大断裂(裂隙)系统。在此期间,沉积物被压实,多余的水分被慢慢挤出,这决定了泊松比从接近 0.5 的值下降到 0.3-0.2 的值。因此,在沉积物中,其应力状态几乎完全由上覆岩石的重力决定,水平压缩应力水平比最初的岩石压力水平降低了 50% 或更多。另一方面,如果岩石达到了假塑性流动的极限,就会发生垂直压实,同时水平压缩也会增加。这两个相互竞争的过程以及裂缝和孔隙中的流体压力因素决定了脆性裂缝形成的可能性。研究表明,对于屈服强度较低的岩石(粘土),压实会导致水平压缩应力的增加,从而使这类岩石在成岩阶段无法形成脆性断裂。而在强度较高的岩石(砂岩、石灰岩)中,在达到剪切屈服极限之前,由于垂直下微裂缝中水压力过大而导致的脆性断裂就已经开始了。
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ON THE POSSIBLE FORMATION MECHANISM OF THE OPEN FRACTURING IN SEDIMENTARY BASINS
The paper shows that the formation of orthogonal systems of open macrofractures (cleavages) of sedimentary basins can occur at the stage of diagenesis during the first hundreds of years for a small range of shelf depths (up to 100 m) during sedimentation. During this period, sediments are compacted and the excess water is slowly squeezed out, which determines the decrease in the Poisson’s ratio from values close to 0.5 to values 0.3–0.2. Because of this, in sediments, the stress state of which is almost completely determined only by the gravity of the overlying rocks, is reduced by 50 % or more of the horizontal compression stress level from the initial lithostatic pressure level. On the other hand, if the limit of pseudoplastic flow is reached in the rock, vertical compaction occurs, accompanied by an increase in horizontal compression. These two competing processes together with the factor of fluid pressure in fractures and pores determine the possibility of brittle fracture formation. It is shown that for rocks with a low level of yield strength (clay), compaction leads to an increase in the level of horizontal compression stresses, which makes brittle fracture in such rocks at the stage of diagenesis impossible. In rocks with a high level of strength (sandstone, limestone), brittle fracture due to excess water pressure in the sub­vertical microcracks starts earlier than the shear yield limit is reached.
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