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Dam-Break Flows: Acquisition of Experimental Data through an Imaging Technique and 2D Numerical Modeling

机译:大坝溃决流:通过成像技术和2D数值建模获取实验数据

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This paper presents experimental and two-dimensional (2D) numerical results of four tests concerning rapidly varying flows induced by the sudden removal of a sluice gate. For the acquisition of the experimental data, an imaging technique capable of providing spatially distributed information was adopted: a coloring agent was added to the water, the opalescent bottom of the facility was backlighted, and photographs of the area of interest were taken. The gray tones of the acquired images were converted into water depths by means of transfer functions derived from a static calibration. The potential sources of error of the proposed procedure are discussed. A local comparison with an ultrasonic device showed a 20% maximum deviation in 95% of the observations. The tests were simulated through a 2D MUSCL-Hancock finite volume numerical model, based on the classical shallow water approximations, in which the intercell water depths are estimated according to the surface gradient method. A global analysis of the relative frequency distributions of the deviation between numerical and experimental results is performed. Despite some evident differences at a local scale, the adopted 2D numerical model is capable of reproducing the main features of the flow fields under investigation.
机译:本文介绍了四个试验的实验和二维(2D)数值结果,这些试验涉及闸门突然拆除引起的快速变化的流量。为了获取实验数据,采用了一种能够提供空间分布信息的成像技术:将着色剂添加到水中,将设备的乳白色底部照亮,并拍摄感兴趣区域的照片。借助静态校准得出的传递函数,将获取图像的灰度色调转换为水深。讨论了所建议过程的潜在错误源。与超声设备的局部比较显示,在95%的观察结果中,最大偏差为20%。在经典浅水近似的基础上,通过二维MUSCL-Hancock有限体积数值模型对测试进行了模拟,其中根据表面梯度方法估算了单元间的水深。对数值和实验结果之间的偏差的相对频率分布进行了全局分析。尽管在局部尺度上存在一些明显的差异,但是采用的2D数值模型能够重现正在研究的流场的主要特征。

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