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Constant Gradient Erosion Apparatus for Appraisal of Piping Behavior in Upward Seepage Flow

机译:用于评估向上渗流中管道行为的恒定梯度侵蚀设备

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摘要

Seepage direction is crucial for understanding the critical state and development of piping erosion. A stress-controlled apparatus was designed to investigate the piping behavior of cohesionless soil under upward flow condition. The components of the new apparatus included a loading chamber, a vertical and confining loading system, an upstream water supply device, a soil-water separating system, and a water collecting system. The loading chamber provides space for a soil specimen setting and loading. The combination of a vertical and a confining loading system was designed to apply complex stresses to a soil specimen. Under the stresses, the specimen was then eroded by the gradually increasing hydraulic head supplied by the water supply system. The eroded particle and spilling water were collected and detected by the soil-water separating system and the water collecting system. A series of experiments were carried out using the new apparatus. Results demonstrated the repeatability experiments and usefulness of the apparatus. The new apparatus allowed us to investigate the piping behavior under different stress states and hydraulic gradients. With this new apparatus and experiments, we found that lower and high critical hydraulic gradients (CHGs) should be included as the criteria of piping development based on the relationship between the hydraulic gradient and the seepage response. In addition, the stress state on the CHG and the particle erosion rate played important roles in the piping development. The outer pressure on the specimen can retard the development of erosion. In contrast, the hydraulic gradient was found to be positively correlated to the erosion rate. Results also indicated that a specimen would collapse once the amount of eroded small particles exceeds the critical value of 46.5 % of the soil.
机译:渗流方向对于了解管道腐蚀的临界状态和发展至关重要。设计了一种应力控制装置,以研究无粘性土在向上流动条件下的管道性能。新设备的组件包括装载室,垂直和封闭装载系统,上游供水设备,土壤水分离系统和集水系统。装载室为土壤样本的设置和装载提供了空间。设计了垂直和约束加载系统的组合,以将复杂的应力施加到土壤样本上。在压力下,然后由供水系统提供的逐渐增加的液压头腐蚀试样。侵蚀的颗粒和溢出的水通过土壤-水分离系统和集水系统进行收集和检测。使用新设备进行了一系列实验。结果证明了该装置的可重复性实验和实用性。新设备使我们能够研究不同应力状态和水力梯度下的管道性能。通过这种新的设备和实验,我们发现应根据水力梯度与渗流响应之间的关系将较低和较高的临界水力梯度(CHG)作为管道开发的标准。此外,CHG上的应力状态和颗粒侵蚀速率在管道开发中也起着重要作用。样品上的外部压力会阻碍腐蚀的发展。相反,发现水力梯度与侵蚀速率正相关。结果还表明,一旦被侵蚀的小颗粒的数量超过土壤的临界值46.5%,样品就会崩溃。

著录项

  • 来源
    《Geotechnical testing journal》 |2017年第4期|630-642|共13页
  • 作者单位

    Chongqing Jiaotong Univ, Coll River & Ocean Engn, 66 Xuefu Rd, Chongqing 400074, Peoples R China|Univ Arizona, Dept Hydrol & Atmospher Sci, 1133 E James E Rogers Way,122 Harshbarger Bldg 2, Tucson, AZ 85721 USA|Hohai Univ, Key Lab, Minist Educ Geomech & Embankment Engn, Nanjing, Jiangsu, Peoples R China;

    Chongqing Jiaotong Univ, Coll River & Ocean Engn, 66 Xuefu Rd, Chongqing 400074, Peoples R China;

    Chongqing Jiaotong Univ, Coll River & Ocean Engn, 66 Xuefu Rd, Chongqing 400074, Peoples R China;

    Chongqing Jiaotong Univ, Coll River & Ocean Engn, 66 Xuefu Rd, Chongqing 400074, Peoples R China;

    Univ Arizona, Dept Hydrol & Atmospher Sci, 1133 E James E Rogers Way,122 Harshbarger Bldg 2, Tucson, AZ 85721 USA;

    Univ Arizona, Dept Hydrol & Atmospher Sci, 1133 E James E Rogers Way,122 Harshbarger Bldg 2, Tucson, AZ 85721 USA|Wuhan Univ, State Key Lab Water Resources & Hydropower Engn S, Wuhan, Hubei, Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    piping; stress-controlled apparatus; critical hydraulic gradient; erosion rate;

    机译:管道;应力控制设备;临界水力梯度;侵蚀率;
  • 入库时间 2022-08-18 00:11:40

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