The effect of imbrication on the porosity value of non-uniform gravel bed: a case study from the Buëch River, France

IF 2.9 3区 工程技术
Wenjia Xu, Catrina Brüll, Holger Schüttrumpf, Roy M. Frings
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Abstract

Existing porosity predictors for fluvial sediments are mainly derived from laboratory-generated, randomly packed sediment samples. However, such predictors could not adequately describe beds with non-random grain arrangements that occur widely in fluvial deposits. In this work, the effect of grain imbrication on non-uniform gravel-bed porosity has been quantified using fluvial sediment samples showing imbrication and no imbrication collected from the river Buëch, France. The in-situ porosity of the undisturbed samples was directly measured on-site, while the ex-situ porosity was measured by randomly packing the particles of a sample in a cylindrical container in the laboratory. The in-situ porosity and the ex-situ porosity of the same sample were compared. Apart from the porosity measurement, a relatively new and simple workflow was applied to quantify the degree of bed imbrication based on the X-Ray Computed Tomography images of frozen sediment samples. For samples showing no imbrication, the in-situ and the ex-situ porosity showed similar values, indicating that sediment samples randomly packed in the laboratory (with shaking) are well representative of the fluvial sediment with random grain orientation formed under natural conditions. For samples showing imbrication, the in-situ porosity values were about 30% lower than their ex-situ porosity values, indicating denser packing structure due to imbrication. This increase in structural compactness is believed to stem from the ordered arrangement of sediment particles, thereby reducing the formation of large pores.

Graphical Abstract

(a) Comparison of the nin-situ and nex-situ of samples showing imbrication and no imbrication, (b) Dip direction distribution, (c) Imbricated particles

包覆作用对非均匀砾石层孔隙度的影响——以法国Buëch河为例
现有的河流沉积物孔隙度预测主要来自实验室生成的随机堆积的沉积物样品。然而,这样的预测不能充分描述在河流沉积中广泛存在的非随机颗粒排列的床层。在这项工作中,颗粒瓦叠对非均匀砾石床孔隙度的影响已经通过从法国Buëch河收集的显示瓦叠和不瓦叠的河流沉积物样本进行了量化。未扰动样品的原位孔隙度在现场直接测量,非原位孔隙度在实验室随机将样品颗粒装入圆柱形容器中测量。对比了同一试样的原位孔隙度和非原位孔隙度。除了孔隙度测量外,还采用了一种相对较新的简单工作流程,基于冻结沉积物样品的x射线计算机断层扫描图像来量化床层叠瓦程度。对于没有叠瓦现象的样品,原位孔隙度和非原位孔隙度值相近,说明实验室随机堆积(振荡)的沉积物样品很好地代表了自然条件下形成的随机颗粒取向的河流沉积。对于包覆层的样品,原位孔隙度值比非原位孔隙度值低30%左右,表明包覆层导致了致密的充填结构。这种结构致密性的增加被认为源于沉积物颗粒的有序排列,从而减少了大孔隙的形成。(a)叠瓦与非叠瓦试样原位与非原位对比,(b)倾斜方向分布,(c)叠瓦颗粒
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来源期刊
Granular Matter
Granular Matter MATERIALS SCIENCE, MULTIDISCIPLINARY-MECHANICS
CiteScore
4.30
自引率
8.30%
发文量
95
期刊介绍: Although many phenomena observed in granular materials are still not yet fully understood, important contributions have been made to further our understanding using modern tools from statistical mechanics, micro-mechanics, and computational science. These modern tools apply to disordered systems, phase transitions, instabilities or intermittent behavior and the performance of discrete particle simulations. >> Until now, however, many of these results were only to be found scattered throughout the literature. Physicists are often unaware of the theories and results published by engineers or other fields - and vice versa. The journal Granular Matter thus serves as an interdisciplinary platform of communication among researchers of various disciplines who are involved in the basic research on granular media. It helps to establish a common language and gather articles under one single roof that up to now have been spread over many journals in a variety of fields. Notwithstanding, highly applied or technical work is beyond the scope of this journal.
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