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Directional dependency and coastal framework geology: implications for barrier island resilience

机译:定向依赖和沿海框架地质:对屏障岛的兴奋性的影响

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Barrier island transgression is influenced by the alongshore variation in beach and dune morphology, which determines the amount of sediment moved landward through wash-over. While several studies have demonstrated how variations in dune morphology affect island response to storms, the reasons for that variation and the implications for island management remain unclear. This paper builds on previous research by demonstrating that paleo-channels in the irregular framework geology can have a directional influence on alongshore beach and dune morphology. The influence of relict paleo-channels on beach and dune morphology on Padre Island National Seashore, Texas, was quantified by isolating the long-range dependence (LRD) parameter in autoregressive fractionally integrated moving average (ARFIMA) models, originally developed for stock market economic forecasting. ARFIMA models were fit across ~250 unique spatial scales and a moving window approach was used to examine how LRD varied with computational scale and location along the island. The resulting LRD matrices were plotted by latitude to place the results in the context of previously identified variations in the framework geology. Results indicate that the LRD is not constant alongshore for all surface morphometrics. Many flares in the LRD plots correlate to relict infilled paleo-channels, indicating that the framework geology has a significant influence on the morphology of Padre Island National Seashore (PAIS). Barrier island surface morphology LRD is strongest at large paleo-channels and decreases to the north. The spatial patterns in LRD surface morphometrics and framework geology variations demonstrate that the influence of paleo-channels can be asymmetric (i.e., affecting beach–dune morphology preferentially in one direction alongshore) where the alongshore sediment transport gradient was unidirectional during island development. The asymmetric influence of framework geology on coastal morphology has long-term implications for coastal management activities because it dictates the long-term behavior of a barrier island. Coastal management projects should first seek to assess the framework geology and understand how it influences coastal processes in order to more effectively balance long-term natural variability with short-term societal pressure.
机译:障碍岛违规受海滩和沙丘形态的沿海变异的影响,这决定了通过冲洗落地的沉积物量。虽然几项研究表明了沙丘形态的变化如何影响暴风雨的岛屿反应,但对岛屿管理的变化和影响的原因仍不清楚。本文通过展示不规则框架地质地质中的古渠道可以对陆岸海滩和沙丘形态产生定向影响的研究。通过隔离自回归分数集成的移动平均(ARFIMA)模型的远程依赖(LRD)参数,量化为股票市场经济开发的远程依赖(LRD)参数,通过隔离股票市场(ARFIMA)模型的远程依赖(LRD)参数来量化雷兰岛国家海滨海滩和沙丘形态对海滩和沙丘形态的影响。预测。 Arfima模型适合〜250个独特的空间秤,使用移动窗口方法来检查LRD如何在沿着岛上的计算规模和位置变化。通过纬度绘制得到的LRD矩阵,将结果放置在框架地质的先前识别的变化的上下文中。结果表明,对于所有表面形态化学,LRD并不常见。 LRD曲线中的许多耀斑相关,以依赖潜入的古信道,表明框架地质对Padre Island国家海滨(PAI)的形态有重大影响。屏障岛表面形态学LRD在大型古航空通道最强,北方减少。 LRD表面的空间模式和框架地质变化表明,古信道的影响可以不对称(即,在沿岸的一个方向上优先影响海滩沙丘形态),其中沿海沉积物传输梯度在岛屿发展期间是单向的。框架地质对沿海形态的不对称影响对沿海管理活动的长期影响,因为它决定了屏障岛的长期行为。沿海管理项目应该首先寻求评估框架地质,了解如何影响沿海流程,以便更有效地平衡与短期社会压力的长期自然变化。

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