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基于高分子溶液注入的管道减阻特性实验研究

时朋飞 胡海豹 文俊 孙海浪 谢络

实验流体力学2026,Vol.40Issue(3):29-38,10.
实验流体力学2026,Vol.40Issue(3):29-38,10.DOI:10.11729/syltlx20250101

基于高分子溶液注入的管道减阻特性实验研究

Experimental study on pipeline drag reduction characteristics based on polymer solution Injection

时朋飞 1胡海豹 1文俊 1孙海浪 2谢络3

作者信息

  • 1. 西北工业大学 航海学院,西安 710072
  • 2. 西北工业大学 航海学院,西安 710072||中国船舶科学研究中心,江苏 无锡 214082
  • 3. 西北工业大学 航海学院,西安 710072||西安天和防务技术股份有限公司,西安 710019||西安天和海防智能科技有限公司,西安 710019
  • 折叠

摘要

Abstract

Adding a trace amount of polymer into turbulent flow can significantly reduce wall friction.This drag reduction technique has been widely applied in fields such as fire-fighting,pipeline transportation,and biomedicine.Polyethylene oxide(PEO)is an efficient drag-reducing polymer,whose performance is affected by multiple parameters.In this study,a gravity-driven circulating pipe-flow system is employed to experimentally investigate the drag reduction characteristics of PEO solution injection in turbulent pipe flow.The effects of Reynolds number,injection angle(seven angles),injection rate and relative molecular mass(total of 7 kinds)on the drag reduction rate(RD)are systematically examined.A normalized polymer flux Kp,which is suitable for pipe flow,is proposed to collapse the experimental data.Results show that RD initially increases roughly linearly with lg Kp and then approaches a saturation level.This trend is analogous to the previously reported K-scaling law for polymer injection in turbulent boundary layers.Moreover,the dependence of RD on molecular weight exhibits an S-shaped trend.By fitting the data with a sigmoidal function,the optimal molecular weight range for maximum drag reduction can be predicted.These findings provide useful guidance for the optimization and prediction of polymer injection parameters in drag-reduced turbulent pipe flows.

关键词

高聚物/喷射/管道减阻/湍流/相对分子质量

Key words

polymer/injection/drag reduction/turbulence/relative molecular mass

分类

数理科学

引用本文复制引用

时朋飞,胡海豹,文俊,孙海浪,谢络..基于高分子溶液注入的管道减阻特性实验研究[J].实验流体力学,2026,40(3):29-38,10.

基金项目

国家科技基础资源调查专项(2021FY100602) (2021FY100602)

陕西省创新能力支撑计划项目(2024RS-CXTD-15,2025ZC-KJXX-80) (2024RS-CXTD-15,2025ZC-KJXX-80)

西北工业大学博士论文创新基金项目(CX2025041) (CX2025041)

水动力学全国重点实验室基金项目(459900926) (459900926)

实验流体力学

1672-9897

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