人工河床泥沙入渗的动态发展

S. Haun, Assem Mayar, M. Noack, S. Wieprecht
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引用次数: 0

摘要

细粒沉积物在砾石河床中的入渗和积聚导致现有孔隙空间的缩小,在最坏的情况下可能导致河床完全堵塞。为了了解沉积物入渗的高动态过程,需要具有高时空分辨率的测量数据。在本研究中,研究了人工河床泥沙堆积的发展,以进一步了解 浓缩过程。人工河床,在研究水槽中实施,由两种不同直径的球体和不同的填料排列组成。提供了3种不同粒度分布的泥沙混合物,观察了动态入渗过程,得到了泥沙在深度上的分布信息。此外,在实验过程中,供沙速率和供沙质量是变化的。 为了观察沉积物堆积的动态发展,采用了伽马射线衰减法,为实验过程中在某一位置进行非侵入式、无干扰的连续测量提供了机会。此外,泥沙累积质量是在泥沙供给后立即和28分钟后获得的,具有较高的垂直分辨率,可以检测孔隙内固结引起的变化。 从测量的入渗泥沙量可以看出,泥沙累积质量具有很强的粒度依赖性。细沙混合物的测量结果表明,充填从底部开始,直到堆积到达人工河床表面。粗泥沙混合试验导致河床上游淤塞层形成,随后到达河床的泥沙减少。通过变化供给率可以看出,供给率越高,入渗开始越早,填充速度越快,供给率越低,入渗时间越晚,填充速度越慢。此外,实验结束后28分钟的测量结果表明,由于水流冲刷地表沉积物,动态变化主要发生在上层,而由于孔隙内凝固而进一步沉降,动态变化只在较小程度上发生。进料质量本身对当前设置的入渗行为没有相当大的影响,因为一旦孔隙被填满,几乎没有额外的颗粒穿透河床。 使用高度复杂的测量方法,可以以高时间和空间分辨率研究沉积物在人工河床中的入渗过程。由于使用了不同的泥沙混合物和不同的供应条件,本研究可以进一步了解细泥沙入渗过程。 
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic development of sediment infiltration in an artificial river bed
The infiltration and accumulation of fine sediments in gravel-bed rivers leads to a reduction of the existing pore space and may lead in a worst case to a complete clogging of the river bed. To understand the highly dynamic process of sediment infiltration, measurements with high temporal and spatial resolution are required. Within this study, the development of sediment accumulations in an artificial river bed is investigated to gain further understanding on the  process of colmation. The artificial river bed, implemented in a research flume, is made of spheres with two different diameters and in different packing arrangements. Three sediment mixtures with different grain size distributions are supplied to observe the dynamic infiltration process, and to get information on the distribution over depth. In addition, supply rates and supply masses are varied during the experiments.
 
To observe the dynamic development of sediment accumulation, the gamma-ray attenuation method is used, which provides the opportunity of non-intrusive and undisturbed continuous measurements during the experiments at a certain position. Additionally, the accumulated sediment masses are obtained right after the supply of sediments and 28 minutes later, with a high vertical resolution to detect changes as result of consolidation within the pores.
 
From the measured amount of infiltrated sediments can be seen that the accumulated sediment mass is strongly particle size-dependent. The measurements of the fine sediment mixture show that the filling started from the bottom until the accumulation reach the surface of the artificial river bed. The experiments with the coarse sediment mixture resulted in a clogging layer in the upper section of the river bed, and subsequently less sediments reached the flume bed. By varying the supply rate, it can be seen that a higher supply rate leads to an earlier start of the infiltration and a rapid filling, while the lower supply rate resulted in a later infiltration and slow filling process. The measurements 28 minutes after the end of the experiments show, in addition, that dynamic changes happen mainly in the upper layers due to the washing of surface sediments by the flow, and only to a smaller extent by further settlements due to solidification within the pores. The feeding mass itself has no considerable effect on the infiltration behavior of the current setup, as once the pores are filled, almost no additional particles penetrate the bed.
 
The use of a high sophisticated measurement method made it possible to investigate the infiltration process of sediments in an artificial river bed with high temporal and spatial resolution. Due to the use of different sediment mixtures, and different supply conditions, further insight on the process of fine sediment infiltration could be gained within this study.

 

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