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Coastal change analysis: a quantitative approach using digital maps, aerial photographs and LiDAR

机译:沿海变更分析:使用数字地图,空中照片和激光雷达的定量方法

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This case study has demonstrated the significant benefits of employing digital maps and aerial photography for the assessment of historical coastal change. These data have been integrated with a specially commissioned state-of-the-art digital aerial survey and other baseline survey data using specialist digital remote sensing methods and GIS software. The results of this work emphasise the inaccuracies of broad scale assessments adopted by the SMP, where the errors in data and interpretation are neither quantified nor made explicit. This can lead to misleading projections of coastal change where the patterns and rates of change cannot be relied upon for decision making, particularly for high risk sites. The digital approach provides quantitative data of known accuracy from which analysis of historical coastal change can be carried out with confidence. The analysis has been conducted within a geomorphological framework that recognises a number of key controlling landforms along the coastline. Recognition of landform features is considered fundamental to the understanding of historical and future coastal change. The framework assists the identification of the patterns and variable rates of historical coastal change taking account of the influences of coast protection and other intervention measures. Work is still in progress and it is anticipated that further improvements in accuracy and error assessment will be achieved through the use of the orthophoto models. The analysis of historical coastal change will form a key input to the next stage development of a coastal change projection model.
机译:本案例研究表明,在历史沿海变革评估的评估中,雇用数字地图和航拍和航拍的显着效益。这些数据已与专门委托最先进的数字空中调查和使用专家的数字遥感方法和GIS软件的基线调查数据集成。这项工作的结果强调了SMP通过的广泛规模评估的不准确,其中数据和解释中的错误既不量化也不明确。这可能导致沿海改变的误导性预测,在决策中不能依赖模式和变革的率,特别是对于高风险位点。数字方法提供了已知准确性的定量数据,可以自信地进行历史沿海变化的分析。该分析已经在地貌框架内进行了识别沿海岸线的许多关键控制地貌。对地形特征的认可被认为是对历史和未来沿海变革的理解的基础。该框架有助于确定历史沿海变革的模式和可变利率,考虑到海岸保护和其他干预措施的影响。工作仍在进行中,预计通过使用矫正器模型将进一步提高准确性和误差评估。历史沿海变革的分析将形成沿海变更投影模型的下一阶段开发的关键。

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