Salt Tectonics in the Provençal Basin, Western Mediterranean Sea

M. Bellucci, E. Leroux, D. Aslanian, M. Moulin, Romain Pellen, M. Rabineau
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Abstract

The Messinian Salt Giant in the Provençal basin is an opportune area to study salt tectonics: salt deposition occurred throughout the basin well after basin opening, with a tectonic context stable since ~16 Ma, in a closed system. Also, the youth of salt tectonics has led to less mature structures and an evolutionary history that is easier to decipher than in older salt-bearing margins. We conducted an analysis of the chronology of salt deformation, from its deposition to the present-day, thanks to the basin-wide correlation of the Late Miocene and Pliocene-Pleistocene stratigraphic markers. The large seismic dataset provided detailed analysis of the causes and timing of salt deformation at a regional level. The salt tectonics started relatively early, during the Messinian Upper Unit (UU) deposition (phase 1) in the deepest part of the basin. From the Pliocene to the present-day, salt movement is divided into two more main phases (phases 2 and 3), the first of small intensity, occurred during the Pliocene and the second, more intense, during the Pleistocene. The geometric relationship between salt tectonics and crustal nature domains has revealed, whatever the timing deformation phases, a more rapid and intense salt deformation above the proto-oceanic crust domain than in the continental or transitional crust domain. This observation remains unexplained for the time being and could question the role of the influence of crustal nature and associated temperature on salt tectonics.
西地中海普罗旺斯盆地的盐构造
普罗旺斯海盆中的梅西尼盐巨岩是研究盐构造的绝佳区域:盐沉积发生在海盆开裂后很久的整个海盆中,其构造背景自〜16Ma以来一直保持稳定,是一个封闭系统。此外,盐构造的年轻化导致构造不那么成熟,其演化历史比更古老的含盐边缘更容易解读。借助晚中新世和上新世-更新世地层标记的全盆地相关性,我们对盐构造从沉积至今的年代学进行了分析。大型地震数据集提供了区域层面上盐构造成因和时间的详细分析。盐构造运动开始得相对较早,始于盆地最深处的梅西尼上统沉积(第一阶段)。从上新世至今,盐构造运动又分为两个主要阶段(阶段 2 和阶段 3),第一个阶段强度较小,发生在上新世,第二个阶段强度较大,发生在更新世。盐构造与地壳性质域之间的几何关系表明,无论变形阶段的时间如何,原大洋地壳域上方的盐变形比大陆或过渡地壳域上方的盐变形更快、更剧烈。这一观察结果目前仍无法解释,可能会质疑地壳性质和相关温度对盐构造的影响作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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