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MODELING NEARSHORE MORPHOLOGICAL EVOLUTION AT SEASONAL SCALE

机译:季节性规模建模近岸形态学

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A process-based model is compared with field measurements to test and improve our ability to predict nearshore morphological change at seasonal time scales. The field experiment, along the dissipative beaches adjacent to Grays Harbor, Washington USA, successfully captured the transition between the high-energy erosive conditions of winter and the lowenergy beach-building conditions typical of summer. The experiment documented shoreline progradation on the order of 20 m and as much as 175 m of onshore bar migration. Significant alongshore variability was observed in the morphological response of the sandbars over a 4 km reach of coast. A detailed sensitivity analysis suggests that the model results are more sensitive to adjusting the sediment transport associated with asymmetric oscillatory wave motions than to adjusting the transport due to mean currents. Initial results suggest that alongshore variations in the initial bathymetry are partially responsible for the observed alongshore variable morphological response during the experiment.
机译:将基于过程的模型与现场测量进行比较,以测试和提高我们在季节性时间尺度上预测近岸形态变化的能力。田野实验,沿着华盛顿美国灰色港湾附近的耗散海滩成功地捕获了冬季高能量腐蚀条件与夏季典型的低能量腐蚀条件之间的过渡。该实验记录了大约20米的海岸线促成,陆上拨打船只迁移的大约175米。在距离海岸4公里的桑德砖的形态反应中观察到显着的沿海变异性。详细的敏感性分析表明,模型结果对调节与不对称振荡波动动作相关的沉积物传输更敏感,而不是调节由于平均电流引起的传输。初始结果表明,在实验期间,初始沐浴术中的初始变异是在观察期间的观察到沿岸可变形态反应的部分地责任。

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