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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Characteristics of Flow Movement in Complex Canal System and Its Influence on Sudden Pollution Accidents
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Characteristics of Flow Movement in Complex Canal System and Its Influence on Sudden Pollution Accidents

机译:复杂管系统流动运动特征及其对突发污染事故的影响

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摘要

This study aimed to determine the split ratio, flow-field structure, and effect of different shaped channels to sudden pollution accidents in a generalized complex canal system of a wetland park, both experimentally and numerically. The three-dimensional instantaneous velocities at a typical section of each channel in the generalized model were measured experimentally using an acoustic Doppler velocimeter. The results showed that the split ratio calculation formula of three parallel channels could be derived under the condition of considering the frictional head and the local head losses. The water depth, velocities, and pollutant diffusion were widely influenced by changes in the cross-sectional shape and channel plane shape. The pollutants were trapped by stable vortices and transverse circulation due to shear force and secondary flow, thus delaying the diffusion of pollutants. The research results reported herein can help provide technical support for the normal operation of complex canal systems.
机译:本研究旨在确定不同形状通道对湿地公园的广义复杂运河系统中不同形状通道对湿地污染事故的分裂率,流场结构和效果,两者在实验和数值上。使用声学多普勒速度计实验测量广义模型中的每个通道的典型部分的三维瞬时速度。结果表明,在考虑摩擦头和局部头部损失的情况下,可以衍生三个平行通道的分流比计算公式。水深,速度和污染物扩散受到横截面形状和通道形状的变化的广泛影响。由于剪切力和二次流动,污染物被稳定的涡流捕获和横向循环,从而延迟污染物的扩散。本文报告的研究结果可以帮助为复杂运河系统的正常运行提供技术支持。

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