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Flocculation and sediment deposition in a hypertidal creek

机译:潮汐小河的絮凝和泥沙沉积

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In the hypertidal Bay of Fundy, environmental impacts in response to commercial-scale tidal power development remain to be fully understood. The extraction of tidal energy may impact sediment dynamics in far-field environments, such as the intertidal zone, through potential alterations to tidal amplitude in the Minas Basin. Tidal conditions (e.g. current velocity, turbulence, suspended sediment concentration) were monitored in a sheltered salt marsh creek over 18 tidal cycles in various stages of the spring-neap cycle. Samples of deposited and suspended sediments were collected and analyzed for grain size using a Beckman Coulter Multisizer III. Results suggest that the flocculated component of both deposited and suspended sediment is consistently high over a wide range of tidal conditions. A routinely high incoming concentration of highly-flocculated material results in large amounts of sediment deposition in tidal creeks in response to individual tidal cycles. Resuspension and removal of newly deposited material is shown to vary with over-marsh, bankfull and channel-restricted tides. Disruption of the tidal regime due to a reduction in Minas Basin tidal amplitude may lessen the cumulative export capacity of tidal channels over time, potentially leading to gradual infilling of tidal creeks.
机译:在芬迪湾超潮地区,响应商业规模的潮汐能发展对环境的影响仍有待充分了解。潮汐能的提取可能会通过改变米纳斯盆地的潮汐振幅而影响远场环境(如潮间带)中的沉积物动力学。在春潮周期的各个阶段的18个潮汐周期中,在一个掩蔽的盐沼小溪中监测潮汐条件(例如当前速度,湍流,悬浮的泥沙浓度)。收集沉积的和悬浮的沉积物样品,并使用Beckman Coulter Multisizer III分析粒度。结果表明,在广泛的潮汐条件下,沉积物和悬浮沉积物的絮凝成分始终很高。通常,高度絮凝的物料的高输入浓度会导致潮汐小溪中大量的沉积物沉积,以响应各个潮汐周期。结果表明,新沉积物的重悬浮和清除会随沼泽,潮岸和河道受限的潮汐而变化。由于米纳斯盆地潮汐振幅减小而引起的潮汐机制破坏,可能会随着时间的流逝减少潮汐通道的累计出口量,从而可能导致潮汐小溪逐渐被填充。

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