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首页> 外文期刊>Hydrobiologia >Quantification of erosion rates for undisturbed contaminated cohesive sediment cores by image analysis
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Quantification of erosion rates for undisturbed contaminated cohesive sediment cores by image analysis

机译:通过图像分析量化未受污染的粘性黏性沉积物芯的侵蚀速率

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In order to model the transport of cohesive sediments and associated contaminants accurately, knowledge of erosion rates is indispensable; at present, these are mostly obtained from the literature and usually extended by field data. In contrast to these theoretical approaches we have developed a method to determine erosion rates directly from experiments conducted with undisturbed sediment cores in a laboratory flume. Regularly spaced laser lines are projected onto the sediment surface during the erosion process. To compute the volume loss over a certain period of time, snapshots of the projected lines are taken and the relation between the deformed projected lines and the sediment surface is derived. With this relation and bilinear interpolation, the sediment surface is reconstructed. The volume difference between the reconstructed sediment surfaces corresponding to the snapshots is then calculated. Consequently, volume loss can be determined in mm~3 per time with a maximum error of 7.2%. The average error is less than 1%. Combination with the bulk density results in erosion rates in kg m~(-1) s~(-1). The high sensitivity of the laser lines to sediment surface changes allows the determination of even small erosion rates. Thus, it is possible to determine erosion rates directly as a function of shear stress. Since it is possible to vary the area of calculated sediment-volume loss, scaling effects can be investigated as well.
机译:为了准确地模拟粘性沉积物和相关污染物的运输,必不可少的侵蚀速率知识;目前,这些主要是从文献中获得的,并且通常通过现场数据进行扩展。与这些理论方法相反,我们开发了一种直接从实验室水槽中未扰动的沉积物芯进行的实验中确定腐蚀速率的方法。在腐蚀过程中,规则间隔的激光线会投射到沉积物表面。为了计算特定时间段内的体积损失,对投影线进行快照,并得出变形的投影线与沉积物表面之间的关系。利用这种关系和双线性插值法,可以重建沉积物表面。然后计算与快照对应的重建沉积物表面之间的体积差。因此,体积损失可以每次确定mm〜3,最大误差为7.2%。平均误差小于1%。与堆积密度的组合导致腐蚀速率以kg m〜(-1)s〜(-1)为单位。激光线对沉积物表面变化的高灵敏度使得甚至可以确定很小的侵蚀率。因此,可以根据剪切应力直接确定腐蚀速率。由于可以改变计算出的泥沙量损失的面积,因此还可以研究结垢效应。

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