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首页> 外文期刊>Marine Geology >Relative sea-level records preserved in Holocene beach-ridge strandplains - An example from tropical northeastern Australia
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Relative sea-level records preserved in Holocene beach-ridge strandplains - An example from tropical northeastern Australia

机译:在全新世海滩岭斯特兰德集中保存的相对海平记录 - 来自澳大利亚热带东北部的一个例子

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Northeastern Queensland is a far-field site from ice caps formed during the Last Glacial. However, the region has experienced glacio-hydroisostatically driven coastal elevation change during the Holocene that generated a distinctive relative sea-level record. We tested whether this subtle vertical movement of the coast is recorded in the morphology and stratigraphy of the beach-ridge strandplain at Cowley Beach, which comprises a series of 36 prominent and several subdued or truncated beach ridges. Previous studies have shown that the strandplain records the long-term progradation of the coast, with the ridges comprising coarse-medium sand that was deposited during both fairweather (foreshore and berm facies) and tropical cyclone events (erosional unconformities; storm-surge deposits) over the past approximately 7 ka. We utilised a fine-scale digital elevation model of the strandplain to examine beach ridge morphology and to compare the elevation pattern with published Holocene sea-level data for the region. The overall elevation pattern of the strandplain surface is consistent with the regional sea-level history, that includes a highstand at around 6 ka BP generated by isostatic uplift, and the elevation of the berm facies matches well robust coral sea-level indicator data. We also modelled the strandplain topographic patterns that would result under stable and continually rising Holocene sea-levels. The frequencies of elevation classes across the strandplain are normally distributed when the strandplain is deposited during a period of stable sea level, and negatively skewed with a continually rising sea level, consistent with the expected patterns. The results indicate the sensitivity of the elevation of the top of the berm facies preserved in beach ridges to subtle changes in sea level (tens of cm over a thousand years). Our results further underline the utility of beach-ridge strandplains, a globally distributed coastal landform, for building relatively detailed regional records of sea level during the Holocene at sites currently lacking this information.
机译:昆士兰州东北部是一个冰帽上的遥远现场,在最后的冰川期间形成。然而,该地区在全新世期间经历了巨大的水电性驱动的沿海高程变化,产生了独特的相对海平面记录。我们测试了这种海岸的这种微妙的垂直运动是在Cowley Beach的海滩山脊斯特兰德平面的形态和地层中记录,包括一系列36个突出的和几个镇长或截断的沙滩脊。以前的研究表明,斯特兰普拉人记录了海岸的长期促成,其中脊包括沉积在FairWeather(前山山脉和塞热相)和热带气旋事件(侵蚀不整合)期间沉积的粗内砂过去大约7 ka。我们利用了斯特兰德平面的精细数字高度模型来检查海滩岭的形态,并比较该地区全新世海平数据的高程模式。 Strandplain表面的整体高度模式与区域海平历史一致,其中包括由等静压产生的大约6ka BP的高级升降机,并且塞热相的高度与良好的珊瑚海平面指示器数据相匹配。我们还建模了将在稳定和不断上升的全新世海平面下产生的斯特兰普平面图模式。当在稳定的海拔时期沉积绞线沉积时,通常分布跨绞合舱的频率,并且用连续上升的海平面呈现持续的海平面,与预期图案一致。结果表明,海滩脊状脊髓顶部的高度的敏感性,以微妙的海平面(几厘米超过一千年)的微妙变化。我们的成果进一步强调了海滩岭股市,全球分布式沿海地貌的效用,用于在目前缺乏这些信息的地点的全新世期间建立相对详细的海平面的区域记录。

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