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Effectiveness Assessment of a New System of Sediment Trap in the Investigation of Matter Sedimentation in a Reservoir—A Case Study

机译:一种新的沉积物捕集系统在水库泥沙调查中的有效性评估—案例研究

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This paper presents results of the research on the effectiveness of entrapping sediment matter in newly designed sediment traps. Four traps, characterized by different geometrical and construction parameters, were analyzed. The assessment of the operation of the traps was made on the basis of research work conducted in situ in a small retention reservoir located in Blizne, south-east Poland during summer 2017 and 2018. Under environmental conditions present during the research, trap number 2 emerged as the most effective. It was characterized by a height to diameter ratio equal to 6.06, as well as innovative design thanks to the presence of a dual-chamber cylindrical vessel with a sedimentation funnel ending in a deflector. The proposed construction solution ensured optimal, stable operation of the trap. This trap is more effective in entrapping sediment matter than the simple tools described in the literature so far. In addition, it can be used not only in reservoirs, but also in seas and oceans. Such traps can be used to study the sedimentation rate in various water ecosystems, and also the entrapped sediment can be analysed in a qualitative manner to determine its role in the distribution of pollutants deposited in the sediments of aquatic ecosystems.
机译:本文介绍了在新设计的沉积物诱集器中截留泥沙物质的有效性的研究结果。分析了四个具有不同几何和构造参数的疏水阀。疏水阀的运行评估是根据2017年夏季和2018年夏季在波兰东南部的Blizne的小型保留水库中进行的现场研究工作进行的。在研究过程中存在的环境条件下,出现了2号疏水阀作为最有效的。它的特点是高度与直径之比等于6.06,并且由于双室圆柱形容器的存在而创新设计,该容器的沉淀漏斗以导流板结尾。提出的施工解决方案确保了疏水阀的最佳,稳定运行。与迄今为止文献中描述的简单工具相比,该陷阱更有效地捕获沉积物。另外,它不仅可以在水库中使用,而且可以在海洋中使用。这种陷阱可以用来研究各种水生态系统中的沉积速率,还可以定性地分析夹带的沉积物,以确定其在水生生态系统沉积物中污染物分布中的作用。

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