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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Tracer dispersal in sandy sediment porewater under enhanced physical forcing
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Tracer dispersal in sandy sediment porewater under enhanced physical forcing

机译:物理强迫作用下示踪剂在含沙沉积物孔隙水中的扩散

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This research (1) integrated a fluorescent dye injection and monitoring system for measuring the mixing of a fluorescent dye tracer (fluorescein) in permeable (sandy) sediments with a cabled ocean observatory, Kilo Nalu, Oahu, Hawaii, and (2) used this system to conduct remotely controlled in situ measurements of wave-enhanced porewater mixing in a physically well-characterized wave-dominated setting. Laboratory results indicated that the fiber-optic sensor is effective at measuring fluorescence-traced enhanced mixing in sandy sediments. Observed dye mixing, driven by paddle-generated surface waves in a laboratory wave channel was 2-3 orders of magnitude greater than molecular diffusion, and decreased with depth in the sediments. Similarly, field experiments used a remotely controlled submersible syringe pump for fluorescent tracer injection into sediment that was monitored with a fiber-optic sensor. These experiments were carried out at 10 in water depth, with mean wave heights of 0.3-1.5 in and periods of similar to 15 s. At 15 cm sediment depth, transport rates of 0-5cm h(-1) were measured, with maximum dispersion coefficients 2-3 orders of magnitude faster than sedimentary molecular diffusion. Hydrodynamic measurements collected simultaneously via Kilo Nalu correlated with porewater transport, with significant wave height and diffusion having the strongest covariation. (c) 2007 Elsevier Ltd. All rights reserved.
机译:这项研究(1)与用于监测渗透性(桑迪)沉积物中的荧光染料示踪剂(荧光素)与有线海洋观测台(夏威夷瓦胡岛基洛纳鲁(Kilo Nalu),夏威夷)集成了荧光染料注入和监测系统,(2)使用此系统该系统可以在物理特征明确的波浪主导环境中对波浪增强的孔隙水混合进行远程控制的原位测量。实验室结果表明,光纤传感器可有效测量沙质沉积物中的荧光示踪增强混合。在实验室波通道中,由桨叶产生的表面波驱动,观察到的染料混合比分子扩散大2-3个数量级,并且随着沉积物深度的增加而降低。类似地,现场实验使用了一个可遥控的潜水注射泵,将荧光示踪剂注入沉积物中,并用光纤传感器进行监测。这些实验在水深10处进行,平均波高为0.3-1.5 in,周期约为15 s。在15 cm的沉积物深度处,测得的传输速率为0-5cm h(-1),最大分散系数比沉积物分子扩散快2-3个数量级。通过Kilo Nalu同时收集的水动力测量结果与孔隙水的输送相关,具有显着的波高和最大的协方差扩散。 (c)2007 Elsevier Ltd.保留所有权利。

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