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Rapid inundation of southern Florida coastline despite low relative sea-level rise rates during the late-Holocene

机译:全新世晚期尽管相对海平面上升率较低但佛罗里达南部海岸线仍被迅速淹没

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摘要

Sediment cores from Florida Bay, Everglades National Park were examined to determine ecosystem response to relative sea-level rise (RSLR) over the Holocene. High-resolution multiproxy analysis from four sites show freshwater wetlands transitioned to mangrove environments 4–3.6 ka, followed by estuarine environments 3.4–2.8 ka, during a period of enhanced climate variability. We calculate a RSLR rate of 0.67 ± 0.1 mm yr−1 between ~4.2–2.8 ka, 4–6 times lower than current rates. Despite low RSLR rates, the rapid mangrove to estuarine transgression was facilitated by a period of prolonged droughts and frequent storms. These findings suggest that with higher and accelerating RSLR today, enhanced climate variability could further hasten the loss of mangrove-lined coastlines, compounded by the reductions in natural flow to the coast caused by water management. Climate variability is nonlinear, and when superimposed on increases in RSLR, can complicate estimated trajectories of coastal inundation for resource management and urban planning.
机译:检查了大沼泽国家公园佛罗里达湾的沉积物核心,以确定生态系统对全新世相对海平面上升(RSLR)的响应。从四个地点进行的高分辨率多代理分析表明,在气候多变时期,淡水湿地过渡到红树林环境4–3.6 ka,接着是河口环境3.4–2.8 ka。我们计算出的RSLR速率在〜4.2–2.8 ka之间为0.67±0.1毫米·yr -1 ,比当前速率低4-6倍。尽管RSLR率较低,但长期的干旱和频繁的暴风雨促使红树林迅速向河口过渡。这些发现表明,随着当今RSLR的不断提高和加快,气候变化性的增强可能进一步加剧了红树林衬砌的海岸线的丧失,以及水资源管理导致的自然流向海岸的减少。气候多变性是非线性的,当叠加在RSLR的增加上时,会使资源管理和城市规划中沿海淹没的估计轨迹复杂化。

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