首页> 外文会议>International Conference on Coastal Dynamics >INTEGRATING FIELD RESEARCH, MODELING AND REMOTE SENSING TO QUANTIFY MORPHODYNAMICS IN A HIGH-ENERGY COASTAL SETTING, OCEAN BEACH, SAN FRANCISCO, CALIFORNIA
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INTEGRATING FIELD RESEARCH, MODELING AND REMOTE SENSING TO QUANTIFY MORPHODYNAMICS IN A HIGH-ENERGY COASTAL SETTING, OCEAN BEACH, SAN FRANCISCO, CALIFORNIA

机译:整合现场研究,建模和遥感,以量化高能量沿海环境,海洋海滩,旧金山,加利福尼亚州

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Wave and coastal circulation modeling are combined with multibeam bathymetry, high-resolution beach surveys, cross-shore Personal Water Craft surveys, digital bed sediment camera surveys, and real-time video monitoring to quantify morphological change and nearshore processes at Ocean Beach, San Francisco. Initial SWAN (Simulating Waves Nearshore) wave modeling results show a focusing of wave energy at the location of an erosion hot spot on the southern end of Ocean Beach during prevailing northwest swell conditions. During El Ni?o winters, swell out of the west and southwest dominates the region, and although the wave energy is focused further to the north on Ocean Beach, the oblique wave approach sets up a strong northerly littoral drift, thereby starving the southern end of sediment, leaving it increasingly vulnerable to wave attack when the persistent northwest swell returns. An accurate assessment of the interaction between wave and tidal processes is crucial for evaluating coastal management options in an area that includes the annual dredging and disposal of ship channel sediment and an erosion hot spot that is posing a threat to local infrastructure.
机译:波浪和沿海循环建模与多阵容沐浴,高分辨率海滩调查,跨岸个人水工调查,数字床沉积物相机调查以及实时视频监控,以量化旧金山海洋海滩的形态变化和近岸进程。最初的天鹅(模拟波浪近岸)波形建模结果显示了在普遍的西北膨胀条件下海洋海滩南端侵蚀热点位置的波动焦点。在El Ni?冬季,从西部和西南部膨胀,占据了该地区,虽然波浪能量在海洋海滩上进一步关注北方,但斜波方法建立了强烈的北方漂浮的漂移,从而挨饿了南端沉积物,当持久的西北膨胀回归时,越来越容易受到波浪攻击。对波和潮汐过程之间的相互作用的准确评估对于评估一个区域中的沿海管理方案,这是船舶通道沉积物的年度疏浚和处置的沿海管理选择以及对当地基础设施构成威胁的侵蚀热点。

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