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国家自然科学基金(41206040)

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珠江口盆地白云凹陷下地壳伸展与陆架坡折的关系被引量:16
2014年
随着深水油气勘探和深水盆地研究的推进,白云凹陷陆架坡折在张裂结束后发生快速跃迁、上下地壳伸展存在不均一性等一系列地质现象逐渐受到学者的关注,这些问题的解决对被动大陆边缘演化过程的认识具有重要的推动作用.根据中国海洋石油总公司(CNOOC)提供的地震地球物理数据,计算出白云凹陷地壳的拉张因子(β)分布.并选取白云凹陷内13条精确解释的长地震剖面,分别计算出沿剖面的上下地壳拉张因子,并获得拉张因子的平面分布,揭示上下地壳在拉张过程中的不同贡献.结果显示:白云凹陷全地壳拉张因子由西北向东南逐渐变大,反映了地壳由陆向洋减薄的特征.上地壳拉张因子较小,而下地壳比上地壳的拉张贡献大,表明白云凹陷新生代变形受脆性伸展作用控制不大,而主要受韧性伸展作用控制.数值模拟计算过程表明白云凹陷初始地壳应为热减薄地壳.下地壳拉张因子由北部向深海盆边缘逐渐增大,并出现两个拉张中心,分别对应于白云凹陷和荔湾凹陷.在23.8和13.8 Ma这两个时期,陆架坡折形态都与下地壳拉张因子等值圈闭的外缘走向近似,且都处于下地壳强烈变化的地区,推测由下地壳伸展和下地壳流动引起的盆地沉积沉降作用是控制陆架坡折发育位置的一个重要因素.
张云帆孙珍庞雄
关键词:白云凹陷下地壳
The relationship between extension of lower crust and displacement of the shelf break被引量:4
2014年
With deep sea petroleum explorations become more and more popular,some geological phenomena have emerged:extension of lower crust and upper crust is inhomogeneous;shelf break has been moved rapidly after crustal stretching.These geological phenomena are important to the continental margin evolution.To investigate the thinning of the whole crust and the contribution of the upper crust versus the lower crust to the crustal stretching since the Cenozoic,we calculated the stretching factors of the upper and the lower crust based on the 13 seismic lines in the Baiyun Sag from CNOOC.The results indicated that the whole crustal thickness decreases seaward while the whole crustal stretching factor increases from shelf to slope.Our calculations showed that the lower crustal stretching factor is higher than that of the upper crust in the Baiyun Sag.In the Cenozoic,deformation of the Baiyun Sag is controlled mainly by ductile shearing rather than brittle shearing.Based on the numerical modeling,we can conclude the initial crust in the Baiyun Sag is thermally attenuated.The stretching factor(β)of the lower crust increases from the north to the south of the continental margin,indicating two stretching centers:the Baiyun Sag and the Liwan Sag.The geometry of the shelf break and theβisoline trap have the similar trend in 23.8 and 13.8 Ma,both located in the intense deforming zone of the lower crust,and therefore we conclude the stretching and flowing of the lower crust cause the displacement of the shelf break before and after 23.8 Ma.
ZHANG YunFanSUN ZhenPANG Xiong
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