Theoretical analysis and experimental study of accelerating settlement of a spherical particle in still water with high Reynolds number
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    Abstract:

    The forces on a spherical particle settling in still water with a high Reynolds number were investigated based on the settlement mechanisms of single particles of sediment. The formulas of instantaneous settlement velocity, settlement duration, and settlement displacement during accelerating settlement were deduced. The computational results from the formulas were compared with the experimental results. It was found that the relative errors were all less than 5% between the computational displacement and experimental data, and most of them were less than 4%; and the relative errors were all less than 7% between the computational instantaneous settlement velocity and experimental data, and most of them were less than 5%, indicating that the computational values agreed with the experimental data.

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尹则高,王振鲁,张黎,等.静水中大雷诺数球形颗粒变加速沉降的理论分析与试验[J].水利水电科技进展,2016,36(2):6-9.(YIN Zegao, WANG Zhenlu, ZHANG Li, et al. Theoretical analysis and experimental study of accelerating settlement of a spherical particle in still water with high Reynolds number[J]. Advances in Science and Technology of Water Resources,2016,36(2):6-9.(in Chinese))

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  • Online: February 24,2016
  • Published: March 05,2016
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