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图像测流技术在高拱坝廊道排水沟中的应用

毛延翩 侯春尧 王子昂 段炎冲 谭大文 李永龙 李丹勋

水利水电技术(中英文)2026,Vol.57Issue(5):147-165,19.
水利水电技术(中英文)2026,Vol.57Issue(5):147-165,19.DOI:10.13928/j.cnki.wrahe.2026.05.012

图像测流技术在高拱坝廊道排水沟中的应用

Application of image-based flow measurement technology in drainage ditches of high-arch dam galleries

毛延翩 1侯春尧 2王子昂 3段炎冲 3谭大文 2李永龙 4李丹勋3

作者信息

  • 1. 中国长江电力股份有限公司,湖北宜昌 443002||清华大学 水利水电工程系,北京 100084
  • 2. 中国长江电力股份有限公司,湖北宜昌 443002
  • 3. 清华大学 水利水电工程系,北京 100084||清华大学 水圈科学与水利工程全国重点实验室,北京 100084
  • 4. 清华四川能源互联网研究院,四川成都 610000
  • 折叠

摘要

Abstract

[Objective]Image-based flow measurement is an effective non-contact method for discharge measurement,which has been widely used in open channels and natural rivers.However,its applicability in confined and complex environments such as the drainage ditches of high-arch dam galleries has not been fully validated.The aim is to systematically evaluate the performance of this technology in this specific scenario.[Methods]Validation was conducted using a combination of model tests and field tests.Camera calibration was performed by placing control points.In the model tests,three camera perspectives(upstream,downstream,and lateral)were tested while controlling discharge variations.Water levels were obtained using a monocular vision-based method without a staff gauge,and surface flow fields were calculated using the particle image velocimetry(PIV)technique.Comparisons were made between conditions with and without tracer particles,as well as before and after image preprocessing.Field tests were conducted in a real gallery drainage ditch.Measurements from staff gauges and a measuring weir were used as benchmarks to validate the engineering applicability of this technology.[Results]The result showed that in the model tests,the relative errors of the image-based water level recognition method were all below 7%.Under conditions with tracer particles,the flow measurement errors across different camera perspectives were all less than 4%.The accuracy of the flow measurement result from the lateral perspective was lower than that from the upstream and downstream perspectives.The flow calculation error increased with the increase of discharge,rising from 5.77%at a low discharge(21.40 m3/h)to 35.17%at a high discharge(65.10m3/h).After image preprocessing,the errors could be reduced to the range of 3.60%~28.74%.In the field tests,the water level measurement error was 0.78%.Under conditions with tracer particles and under conditions without tracer particles but with image preprocessing,the relative errors of discharge calculation reached 1.17%and 1.81%,respectively.[Conclusion]The result show that image-based flow measurement technology is suitable for discharge monitoring in the drainage ditches of high-arch dam galleries,and the upstream and downstream perspectives are the optimal camera perspectives.Under conditions with natural or artificial tracers,this technology can achieve high measurement accuracy.Image preprocessing can enhance the flow measurement performance,while an increase in discharge can reduce the algorithm's ability to identify flow field features,thereby decreasing the accuracy of image-based flow measurement.By analyzing the application of image-based flow measurement technology in both model and field settings,it is confirmed that this technology has good potential for application in the drainage ditches of high-arch dam galleries and is expected to provide a valuable reference for algorithm optimization and broader application.

关键词

图像测流/水位识别/廊道排水沟/高拱坝/适用性/流量/示踪粒子/相对误差

Key words

image-based flow measurement/water level recognition/gallery drainage ditches/high-arch dam/applicability/discharge/tracer particles/relative error

分类

建筑与水利

引用本文复制引用

毛延翩,侯春尧,王子昂,段炎冲,谭大文,李永龙,李丹勋..图像测流技术在高拱坝廊道排水沟中的应用[J].水利水电技术(中英文),2026,57(5):147-165,19.

基金项目

三峡金沙江川云水电开发有限公司永善溪洛渡电厂科研项目(Z412302022) (Z412302022)

国家自然科学基金黄河水科学研究联合基金项目(U2243241) (U2243241)

水利水电技术(中英文)

1000-0860

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