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Temporal evolution of sand corridors in a Posidonia oceanica seascape: a 15-years study

机译:15年研究发现波西多尼亚海洋景观中沙廊的时空演变

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摘要

The spatial dynamic of Posidonia oceanica meadows is a process extending over centuries. This paper shows evidence of the natural dynamics of P. oceanica “shifting intermattes” or “sand corridors” (hereafter SCs): unvegetated patches within a dense meadow. We studied features and temporal evolution (2001-2015) of 5 SCs in the Calvi Bay (Corsica) at 15 m depth and followed the characteristics the P. oceanica meadow lining the edge of patches. All SCs show a similar morphology. The eroded side is a vertical edge where roots, rhizomes and sediments are visible, when on the opposite colonized side, the sand is at the same level as the continuous meadow. The vertical edge reaches a maximum height of 160 cm and is eroded by orbital bottom currents with a maximum speed of 12 cm.s-1, the erosion speed ranging from 0.6 to 15 cm.y-1. SCs progress toward the coastline with a mean speed of 10 cm.y-1, the rate of colonization by P. oceanica shoots ranging from 1.5 to 21 cm.y-1. We calculated that the studied SCs would reach the coastline within 500 to 600 years. We finally discuss the implication of such dynamic in the framework of meadows’ colonization assessment and the seascape dynamic.
机译:大洋波西多尼亚草甸的空间动态是一个持续了几个世纪的过程。本文显示了P. oceanica“移动过渡层”或“沙廊”(以下称SC)的自然动力学的证据:茂密草地中的无植被斑块。我们研究了卡尔维湾(科西嘉岛)15 m深度的5个SC的特征和时间演变(2001-2015),并遵循斑块边缘处的P. oceanica草甸特征。所有SC均显示相似的形态。侵蚀的一面是垂直的边缘,在该边缘上可以看到根,根茎和沉积物,而在相反的殖民一面,沙子与连续草地处于同一高度。垂直边缘的最大高度达到160 cm,并被轨道底流以最大12 cm.s-1的速度侵蚀,侵蚀速度为0.6至15 cm.y-1。 SC向海岸线前进的平均速度为10 cm.y-1,大洋假单胞菌的定殖率范围为1.5至21 cm.y-1。我们计算出,所研究的SC将在500至600年内到达海岸线。最后,我们讨论了这种动态在草地定居评估和海景动态框架中的含义。

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