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Modelling long-term shoreline evolution in highly an-thropized coastal areas. Part 2: Assessing the response to climate change

机译:高度血统沿海地区的长期海岸线演变建模。 第2部分:评估对气候变化的反应

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Here, a methodology to obtain ensemble shoreline change projections at regional scale by combining multi-model projections of wave climate and water levels and the reduced-complexity shoreline evolution model in Alvarez-Cuesta et al. (2021) is presented. In order to account for climate change uncertainty, dynamically downscaled and bias corrected projected waves and storm surge series from five different combinations of global and regional climate models and three potential mean sea-level rise (SLR) trajectories for two representative concentration pathways, are used to force the erosion impact model IH-LANS . The methodology is applied to a 40 km highly anthropized coastal stretch in the Mediterranean coast of Spain. Thirty hourly time series of shoreline evolution between 2020 and 2100 are obtained, each of them linked to one future realization of waves and water levels. From the shoreline time-series analysis, long and short -term processes are unraveled, yielding permanent retreats and beach area losses, contribution of individual physical processes (longshore, short-term cross-shore, and SLR) to shoreline change and non-stationary extreme retreats. The methodology presented herein is intended to be a useful tool for evaluating potential climate change risks while enabling the evaluation and prioritization of adaptation measures.
机译:这里,通过将波浪气候和水平的多模型投影与Alvarez-Cuesta等人组合的多模型投影和降低复杂性海线进化模型相结合,在区域尺度下获得基团海岸线改变预测的方法。 (2021)呈现。为了解释气候变化的不确定性,使用动态较较令人越来越多的全球和区域气候模型的不同组合和两个代表浓度途径的三个潜在平均海平面上升(SLR)轨迹的动态较次校正和偏置预测波和风暴浪涌系列强迫侵蚀影响模型IH-LAN。该方法应用于西班牙地中海海岸的40公里高度占领的沿海延伸。获得了2020和2100之间的三十小时时间序列的海岸线演变,每个人都与一个未来的波浪和水平的实现有关。从海岸线时间序列分析中,漫长和短期的流程未加工,屈服永久性撤退和海滩面积损失,个人物理流程的贡献(龙岸,短期交叉岸和单反)到海岸线变化和非静止极端休息。本文提出的方法旨在成为评估潜在气候变化风险的有用工具,同时实现适应措施的评估和优先级。

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  • 来源
    《Oceanographic Literature Review》 |2021年第9期|2053-2053|共1页
  • 作者单位

    IHCantabria- Institutode Hidraulica Ambiental de la Universidad de Cantabria Isabel Torres 15 Santander 39011 Spain;

    IHCantabria- Institutode Hidraulica Ambiental de la Universidad de Cantabria Isabel Torres 15 Santander 39011 Spain;

    IHCantabria- Institutode Hidraulica Ambiental de la Universidad de Cantabria Isabel Torres 15 Santander 39011 Spain;

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