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Supplementary information files for "Discontinuity in equilibrium wave-current ripple size and shape and deep cleaning associated with cohesive sand-clay beds"

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DataCite Commons2025-03-21 更新2025-04-16 收录
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https://repository.lboro.ac.uk/articles/dataset/Supplementary_information_files_for_Discontinuity_in_equilibrium_wave-current_ripple_size_and_shape_and_deep_cleaning_associated_with_cohesive_sand-clay_beds_/28639721/1
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Supplementary files for article "Discontinuity in equilibrium wave-current ripple size and shape and deep cleaning associated with cohesive sand-clay beds"<br><br>Mixtures of cohesive clay and noncohesive sand are widespread in many aquatic environments. Ripple dynamics in sand-clay mixtures have been studied under current-alone and wave-alone conditions but not combined wave-current conditions, despite their prevalence in estuaries and the coastal zone. The present flume experiments examine the effect of initial clay content, C<sub>0</sub>, on ripples by considering a single wave-current condition and, for the first time, quantify how changing clay content of substrate impacts ripple dimensions during development. The results show inverse relationships between C<sub>0</sub> and ripple growth rates and clay winnowing transport rates out of the bed, which reduce as the ripples develop toward equilibrium. For C<sub>0</sub> ≤ 10.6%, higher winnowing rates lead to clay loss, and thus the presence of clean sand, far below the base of equilibrium ripples. This hitherto unquantified “deep-cleaning” of clay does not occur for C<sub>0</sub> &gt; 10.6%, where clay-loss rates are much lower. The clay-loss behavior is associated with two distinct types of equilibrium combined flow ripples: (a) Large asymmetric ripples with dimensions and plan geometries comparable to their clean-sand counterparts for C<sub>0</sub> ≤ 10.6% and (b) small, flat ripples for C<sub>0</sub> &gt; 10.6%. The 10.6% threshold, which may be specific to the experimental conditions, corresponds to a more general 8% threshold found beneath the ripple base, suggesting that clay content here must be &lt;8% for clean-sand-like ripples to develop in sand-clay beds. This ripple-type discontinuity comprises a threefold reduction in ripple height, with notable implications for bed roughness.<br><br>© The Authors, CC BY 4.0
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Loughborough University
创建时间:
2025-03-21
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