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首页> 外文期刊>Geo-marine letters >Particle shape-controlled sorting and transport behaviour of mixed siliciclastic/bioclastic sediments in a mesotidal lagoon, South Africa
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Particle shape-controlled sorting and transport behaviour of mixed siliciclastic/bioclastic sediments in a mesotidal lagoon, South Africa

机译:南非介绍泻湖混合硅/生物塑料沉积物的颗粒形状控制分选及传输行为

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This study investigates the effect of particle shape on the transport and deposition of mixed siliciclastic-bioclastic sediments in the lower mesotidal Langebaan Lagoon along the South Atlantic coast of South Africa. As the two sediment components have undergone mutual sorting for the last 7 ka, they can be expected to have reached a highest possible degree of hydraulic equivalence. A comparison of sieve and settling tube data shows that, with progressive coarsening of the size fractions, the mean diameters of individual sediment components increasingly depart from the spherical quartz standard, the experimental data demonstrating the hydraulic incompatibility of the sieve data. Overall, the spatial distribution patterns of textural parameters (mean settling diameter, sorting and skewness) of the siliciclastic and bioclastic sediment components are very similar. Bivariate plots between them reveal linear trends when averaged over small intervals. A systematic deviation is observed in sorting, the trend ranging from uniformity at poorer sorting levels to a progressively increasing lag of the bioclastic component relative to the siliciclastic one as overall sorting improves. The deviation amounts to 0.8 relative sorting units at the optimal sorting level. The small textural differences between the two components are considered to reflect the influence of particle shape, which prevents the bioclastic fraction from achieving complete textural equivalence with the siliciclastic one. This is also reflected in the inferred transport behaviour of the two shape components, the bioclastic fraction moving closer to the bed than the siliciclastic one because of the higher drag experienced by low shape factor particles. As a consequence, the bed-phase development of bioclastic sediments departs significantly from that of siliciclastic sediments. Systematic flume experiments, however, are currently still lacking.
机译:本研究研究了颗粒形状对南非南大西洋沿岸南部大西洋沿海南部南部南部南部南部的混合硅塑料沉积物的运输和沉积的影响。随着两个沉积物组分经历了最后7 ka的相互分选,它们可以预期达到最高可能的液压等效性。筛和沉降管数据的比较表明,随着尺寸分数的渐进粗化,各个沉积物成分的平均直径越来越多地离开球形石英标准,实验数据展示了筛分数据的液压不相容性。总的来说,硅和生物塑料沉积物组分的纹理参数(平均沉降直径,分选和歪斜)的空间分布模式非常相似。在它们之间的一分异曲线块显示线性趋势在平均小间隔时。在分类中观察到系统偏差,该趋势范围从较差的分类水平到均匀性的均匀性,以相对于硅塑料组分的逐渐增加,作为总体分类改善。偏差在最佳分选水平处的0.8相对分拣单元。两种组分之间的小纹理差异被认为反映了颗粒形状的影响,这可以防止生物塑料分数与硅质制动器实现完全的纹理等效。这也反映在两个形状部件的推断的传送行为中,因此由于低形状因子颗粒经历的较高阻力,生物旋流部分比硅基塑性更靠近床。因此,生物塑料沉积物的床相发展显着地从硅淤积沉积物中显着脱离。然而,目前仍然缺乏系统的水管实验。

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