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首页> 外文期刊>Journal of Marine Science and Engineering >Coastal Flood Assessment Based on Field Debris Measurements and Wave Runup Empirical Model
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Coastal Flood Assessment Based on Field Debris Measurements and Wave Runup Empirical Model

机译:基于现场碎片测量和波径流经验模型的沿海洪水评估

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On 6 December 2010, an extra-tropical storm reached Atlantic Canada, causing coastal flooding due to high water levels being driven toward the north shore of Chaleur Bay. The extent of flooding was identified in the field along the coastline at Maria using DGPS. Using the assumption that the maximum elevation of flooded areas represents the combination of astronomical tide, storm surge and wave runup, which is the maximum elevation reached by the breaking waves on the beach, all flood limits were identified. A flood-zone delineation was performed using GIS and LiDAR data. An empirical formula was used to estimate runup elevation during the flood event. A coastal flood map of the 6 December flood event was made using empirical data and runup calculations according to offshore wave climate simulations. Along the natural beach, results show that estimating runup based on offshore wave data and upper foreshore beach slope represents well the observed flood extent. Where a seawall occupies the beach, wave breaking occurs at the toe of the structure and wave height needs to be considered independently of runup. In both cases (artificial and natural), flood risk is underestimated if storm surge height alone is considered. There is a need to incorporate wave characteristics in order to adequately model potential flood extent. A coastal flooding projection is proposed for Pointe Verte based on total water levels estimated according to wave climate simulation return periods and relative sea-level rise for the Chaleur Bay.
机译:2010年12月6日,一场温带风暴到达加拿大大西洋,由于高水位被驱赶到Chaleur湾北岸,导致沿海洪水泛滥。使用DGPS在玛丽亚沿海岸线的田野中确定了洪水的程度。使用以下假设:洪水区域的最大海拔代表天文潮汐,风暴潮和波浪传播的组合,这是海滩上的碎浪达到的最大海拔,确定了所有洪水极限。使用GIS和LiDAR数据进行了洪水区域划分。使用经验公式来估算洪水事件期间的爬升高度。根据经验数据和根据近海波浪气候模拟的径流计算,制作了12月6日洪水事件的沿海洪水图。沿着天然海滩,结果表明,基于海上波浪数据和前滨上海滩坡度估算径流很好地反映了观测到的洪水程度。在海堤占据海滩的地方,波浪破裂发生在结构的脚趾处,需要考虑波浪高度与爬坡无关。在两种情况下(人为的和自然的),仅考虑风暴潮的高度,洪水风险都会被低估。为了充分地模拟潜在的洪水范围,需要合并波浪特征。根据波峰气候模拟的回归期和查勒尔湾的相对海平面上升估算的总水位,为Pointe Verte提出了沿海洪水预测。

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