含沉水植被斑块明渠水流流速衰减区长度研究
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(1.南京水利科学研究院水工水力研究所,江苏 南京 210029;2.河海大学长江保护与绿色发展研究院,江苏 南京 210098 )

作者简介:

张维乐(1995—),男,工程师,博士,主要从事工程水力学研究。E-mail:1833305149@qq.com

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基金项目:

江苏省自然科学基金项目(BK20221190);国家自然科学基金项目(52209096)


Study on flow velocity adjustment length of submerged vegetation patch in open channel
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Affiliation:

(1.Hydraulic Engineering Department, Nanjing Hydraulic Research Institute, Nanjing 210029, China;2.Yangtze Institute for Conservation and Development, Hohai University, Nanjing 210098, China)

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    摘要:

    通过水槽试验,研究了不同高径比、植被体积分数及淹没度影响下的沉水植被斑块沿程流速分布特性,得到了流速衰减区长度变化规律;通过特征值近似方法得到了流速衰减区长度预测公式。结果表明:沉水植被斑块流速衰减区长度分别与体积分数和淹没度呈负相关关系,在高度相同的情况下,与斑块宽度呈正相关关系;提出了沉水植被斑块流动影响下的三维流阻因子,对于高流阻斑块,流速衰减区长度由斑块宽度和高度共同决定,对于低流阻斑块,流速衰减区长度由斑块单位迎流面积决定;提出了流速衰减区长度预测公式,该公式预测精度较高,在测量平均不确定性度为5.5%的情况下,平均相对误差为10.3%。

    Abstract:

    Through laboratory experiments, this study examines velocities distribution within submerged vegetation patches under varying patch height-to-width ratios、volume fractions and submergences. Scale equations were adopted to the prediction for flow velocity adjustment length. The results showed that the flow velocity adjustment length within submerged vegetation patches was negatively correlated with the vegetation volume fraction and submergence ratio. Under identical height conditions,the length exhibited a positive correlation with patch width. The three-dimensional flow resistance factor was proposed under the influence of submerged vegetation patch. For high flow-blockage, flow velocity adjustment length was determined by patch width and height. For low flow-blockage, flow velocity adjustment length was determined by the patch frontal area per unit volume. Prediction formulas for flow velocity adjustment length were developed forth. These formulas demonstrated a high accuracy and yielded an average relative error of 10.3% with an average measurement uncertainty of 5.5%.

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张维乐,吴时强,吴修锋,等.含沉水植被斑块明渠水流流速衰减区长度研究[J].水资源保护,2025,41(4):219-227.(ZHANG Weile, WU Shiqiang, WU Xiufeng, et al. Study on flow velocity adjustment length of submerged vegetation patch in open channel[J]. Water Resources Protection,2025,41(4):219-227.(in Chinese))

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  • 在线发布日期: 2025-08-11
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