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Assessing Shoreline Change using Historical Aerial and RapidEye Satellite Imagery (Cape Jaffa, South Australia)

机译:使用历史空中和剑剑卫星图像(南澳大利亚)

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摘要

The coastal zone is a dynamic area which can experience substantial natural change in short time periods, but changes are also associated with human modifications to the coastline. This case study is focused around assessing shoreline change associated with the Cape Jaffa Marina and canal estate in South Australia. The research comprises a GIS based analysis of shoreline change utilising aerial imagery from 1975 to 2005, which provides information of the morphological coastal trends prior to construction in 2008 of the marina/canal estate. In addition, imagery collected by the RapidEye satellite constellation was used to assess shoreline changes in the decade since construction, 2009 to 2019. The shoreline change statistics over the past few decades were calculated using the Digital Shoreline Analysis System extension of ESRI's ArcGIS. The image analysis workflow is based on the objective extraction of shoreline proxies from individual image statistics in a semi-automated process and is used to identify the waterline and edge of vegetation shoreline proxies in a time series analysis. The results provide a case study of a historically progradational sandy coastline experiencing substantial amounts of alongshore sediment transport, the corresponding obstruction from coastal infrastructure, and the resulting morphological changes to the Cape Jaffa shoreline. Shoreline change trends were altered from a predominantly accretional shoreline before the construction of the marina to one oscillating between extremes of erosion and accretion. The results showed significant accretion occurring updrift (Net Shore Movement (NSM) of 106 m) and significant erosion downdrift (NSM of -80 m) of the marina's training walls and entrance. The information derived from Earth observation satellites, such as RapidEye, can provide valuable insights into trend analysis due to their relatively high spatial (5 metre) and temporal resolution (5.5-day revisit).
机译:沿海地区是一个动态区域,可以在短时间内体验大量自然变化,但变化也与对海岸线的人类修改相关。本案例研究重点是评估与南澳大利亚海角码头和运河庄园相关的海岸线变化。该研究包括利用1975年至2005年的航空图像的海岸线变化的GIS分析,这提供了2008年滨海/运河庄园建设前的形态沿海趋势的信息。此外,Rapideye卫星星座收集的图像用于评估自建造以来,2009年至2019年以来的十年内的海岸线变化。使用ESRI的ArcGIS的数字海岸线分析系统扩展来计算过去几十年的海岸线变化统计。图像分析工作流程基于半自动化过程中各个图像统计的客观提取,用于识别时间序列分析中植被海岸线代理的水线和边缘。结果提供了一种历史上探索陆地海岸线的案例研究,体验了大量的沿海沉积物运输,沿海基础设施的相应障碍,以及对雅法海岸线的导致形态学变化。海岸线改变趋势是从主要的加入海岸线改变了码头前的主要侵蚀海岸线,以在极端的侵蚀和增生之间振荡。结果表明,码头的训练墙和入口的发生增次(106米)106米的净运动(NSM)的显着侵蚀下疲软(NSM为-80米)。由于其相对高的空间(5米)和时间分辨率(5.5天Revisit),来自地球观测卫星(例如Rapideye)的信息可以为趋势分析提供有价值的见解。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1381-1382|共2页
  • 作者单位

    Beach and Dune Systems (BEADS) Laboratory College of Science and Engineering Flinders University Bedford Park SA Australia;

    Beach and Dune Systems (BEADS) Laboratory College of Science and Engineering Flinders University Bedford Park SA Australia;

    Beach and Dune Systems (BEADS) Laboratory College of Science and Engineering Flinders University Bedford Park SA Australia;

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