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Wind wave-forced fine sediment erosion during the slack water periods in Hangzhou Bay, China

机译:杭州湾闲水期风波强迫细沙的侵蚀

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摘要

The shallow water wave simulation model-SWAN incorporated with a simple fine sediment erosion model is applied to Hangzhou Bay, China, to model the horizontal distribution of the maximum bottom orbital velocity and corresponding fine sediment erosion rates induced by: (1) southeasterly steady winds (5, 20 and 30 m/s), (2) southwesterly steady winds (5 and 20 m/s); (3) northwesterly steady winds (5 and 20 m/s); (4) east-southeasterly steady winds (5 and 20 m/s); (5) easterly steady winds (5 and 20 m/s) under closed and unclosed boundaries; and (6) unsteady winds during the slack water periods. Results suggest: (1) the steady wind wave-induced maximum bottom orbital velocities and corresponding fine sediment erosion rates generally increased with the increasing steady winds; (2) closed and unclosed boundary conditions had more significant influences on modeled fine sediment erosion rates under 5 m/s easterly steady winds than 20 m/s; and (3) steady and unsteady wind wave-induced maximum bottom currents could be significant in eroding fine sediment bed in Hangzhou Bay. The results show implications for geomorphology, sedimentology, coastal erosion, and environmental pollution mitigation in Hangzhou Bay.
机译:将浅水波模拟模型-SWAN结合简单的细沙侵蚀模型应用于中国杭州湾,以模拟最大底轨道速度的水平分布和相应的细沙侵蚀速率,该水平分布是由以下因素引起的:(1)东南稳定风(5、20和30 m / s),(2)西南稳定风(5和20 m / s); (3)西北风(5和20 m / s); (4)东南风(5和20 m / s); (5)在封闭和非封闭边界下的东风稳定风(5和20 m / s); (6)闲水期风不稳。结果表明:(1)随着稳定风的增加,稳定风波引起的最大底轨道速度和相应的细沙侵蚀速率普遍增加; (2)5 m / s的东风和20 m / s时,封闭和未封闭的边界条件对模拟细沙侵蚀速率的影响更大。 (3)稳定和非稳定的风浪引起的最大底流可能会侵蚀杭州湾的细沙层。结果显示出对杭州湾地貌,沉积学,海岸侵蚀和环境污染缓解的意义。

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