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In situ stress analysis in the Yinggehai Basin, northwestern South China Sea: Implication for the pore pressure-stress coupling process

机译:南海西北部莺歌海盆地原位应力分析:对孔隙压力-应力耦合过程的启示

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The Yinggehai Basin is located in the triangle between the Sunda block, South China block, and the South China Sea and is an interesting target for in situ stress investigation, not only because of its specific tectonic position but also due to its abnormally high pore pressures. Magnitudes and orientations of in situ stress were directly constrained by measurements operated in the vertical boreholes that were drilled in the Yinggehai Basin. Gradients and magnitudes of the least horizontal stress remarkably increase with overpressure enhancement, indicating that the least principal stress and pore pressure are in fact coupled. The ratios of pore pressure/stress coupling (Delta O'(h)/Delta P-p) are similar in the north and south central Yinggehai Basin, despite the burial depths of overpressure top are different. However, a deeply buried strike-slip faulting regime under WNW-ESE oriented horizontal compression was identified in the central Yinggehai Basin, where the Delta O'h/Delta P-p ratios have intermediate values, ranging from that for an idealized normal faulting stress regime to that for the southeastern South China (a strong strike-slip or even reverse faulting stress regime). Additionally, the WNW-ESE orientations of maximum horizontal stress determined from drilling-induced tensile fractures in the Yinggehai Basin are inappropriate for the present maximum horizontal stress derived from earthquake focal mechanism solutions in the northern segment of the Red River Faults, suggesting that the dextral movement of Red River Faults has slightly influenced the present stress state in the Yinggehai Basin. The present stress state of the Yinggehai Basin was primarily generated by the ESE absolute horizontal motion of the Sunda and South China blocks. (C) 2016 Elsevier Ltd. All rights reserved.
机译:莺歌海盆地位于Sun他区块,华南区块和南海之间的三角形中,是原位应力研究的一个有趣目标,这不仅是由于其特定的构造位置,而且还因为其异常高的孔隙压力。通过在莺歌海盆地钻的垂直井眼中进行的测量,直接限制了地应力的大小和方向。最小水平应力的梯度和大小随着超压的增加而显着增加,这表明最小主应力和孔隙压力实际上是耦合的。尽管超压顶的埋藏深度不同,但在莺歌海盆地中部北部和南部,孔隙压力/应力耦合比(Delta O'(h)/ Delta P-p)相似。但是,在莺歌海盆地中部发现了在WNW-ESE定向水平压缩作用下深埋的走滑断层状态,那里的Delta O'h / Delta Pp比值具有中等值,范围从理想的正断层应力状态到华南东南部(强烈的走滑或逆断层应力状态)。此外,由莺歌海盆地钻致张性裂缝确定的最大水平应力的WNW-ESE方向不适用于目前由红河断层北段地震震源机制解推导出的最大水平应力,这表明右旋红河断裂带的运动对莺歌海盆地目前的应力状态有轻微的影响。莺歌海盆地目前的应力状态主要是由Sun他和华南块体的ESE绝对水平运动产生的。 (C)2016 Elsevier Ltd.保留所有权利。

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