Experimental and numerical evaluation of tire rubber powder effectiveness for reducing seepage rate in earth dams

被引:1
|
作者
Shuhaib, Zahraa Khalid [1 ]
Khassaf, Saleh Issa [1 ]
机构
[1] Univ Basrah, Civil Engn Dept, Basrah, Iraq
来源
OPEN ENGINEERING | 2023年 / 13卷 / 01期
关键词
tire rubber powder; earth dams; phreatic line; seepage; sustainable development; SEEP; W software; STABILITY; SUSTAINABILITY; WATER;
D O I
10.1515/eng-2022-0422
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Tires waste is an undesirable urban industry surplus that has grown worldwide yearly. Because of its seals, this material may be used in earth dams, one option for disposing of this waste. Since this is the main objective of this study, an experiment on a soil sample with various ratios of rubber powder has been conducted to better comprehend the impact of tire rubber powder (TRP) on the seepage rate in earthen dams. This study used physical and numerical models to investigate seepage through earth dams. Analysis indicates that the plotted seepage line in SEEP/W software was comparable to the observed seepage line in the physical model. TRP was tested at concentrations of 15, 30, and 50%. The research demonstrates that there has been a noticeable improvement in reducing the seepage rate through the dam's body; seepage was decreased by 11.28% when a 15% ratio was adopted, a far smaller impact than the other percentages. The proportion was consequently raised to 30%. The seepage rate was found to be reduced by 35.6%, and TRP with a 50% ratio showed excellent behavior in lowering the water level (phreatic line) from the core point to the downstream face D/S and reducing the seepage rate by 41.5%, producing significantly better results. The findings in SEEP/W software indicate that the relative error in seepage rate varies, averaging 11.8% for the first model, 12.18% for the second, 1.65% for the third, and 7.63% for the fourth. The first and second physical models' seepage rate (relative inaccuracy) dramatically increased as a result of the presence of piping.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Time effectiveness of the low-temperature plasma surface modification of ground tire rubber powder
    [J]. Guo, Xiaoyang (guoxiaoyangswpu@126.com), 1600, Taylor and Francis Ltd. (29):
  • [22] Experimental and numerical evidence on the influence of tidal activity on the effectiveness of subsurface dams
    Fang, Yunhai
    Zheng, Tianyuan
    Wang, Huan
    Guan, Rui
    Zheng, Xilai
    Walther, Marc
    [J]. JOURNAL OF HYDROLOGY, 2021, 603
  • [23] Evaluation of mechanical, morphological and thermal properties of waste rubber tire powder/LLDPE blends
    Zhen, Xiu Zhang
    Shu, Ling Zhang
    Jin, Kuk Kim
    [J]. E-Polymers, 2008,
  • [24] Evaluation of mechanical, morphological and thermal properties of waste rubber tire powder/LLDPE blends
    Zhang, Zhen Xiu
    Zhang, Shu Ling
    Kim, Jin Kuk
    [J]. E-POLYMERS, 2008,
  • [25] Performance Evaluation of Asphalt Modified with Steel Slag Powder and Waste Tire Rubber Compounds
    Wang, Zipeng
    Zhao, Zenggang
    Yang, Chao
    Yang, Xinkui
    Chen, Shuaichao
    Zou, Yingxue
    [J]. SUSTAINABILITY, 2022, 14 (14)
  • [26] Experimental and numerical modeling of diaphragm grouting in earth dams considering construction defects
    Fawzy, Momen A.
    Hassan, Nagy A.
    Saad, Neveen Y.
    El-Molla, Doaa A.
    [J]. MODELING EARTH SYSTEMS AND ENVIRONMENT, 2024, 10 (02) : 2159 - 2185
  • [27] Experimental and numerical modeling of diaphragm grouting in earth dams considering construction defects
    Momen A. Fawzy
    Nagy A. Hassan
    Neveen Y. Saad
    Doaa A. El-Molla
    [J]. Modeling Earth Systems and Environment, 2024, 10 : 2159 - 2185
  • [28] Experimental and Numerical Investigation of Bottom Outlet Leakage in Earth-Fill Dams
    Xie, Quanyi
    Liu, Jian
    Han, Bo
    Li, Hongtao
    Li, Yuying
    Li, Xuanzheng
    [J]. JOURNAL OF PERFORMANCE OF CONSTRUCTED FACILITIES, 2019, 33 (03)
  • [29] Numerical analysis and experimental evaluation of rubber boot design
    Sukumar, T.
    Bapu, B. R. Ramesh
    Prasad, B. Durga
    [J]. ENGINEERING FAILURE ANALYSIS, 2020, 118
  • [30] Two-dimensional numerical modeling of fault rupture propagation through earth dams under steady state seepage
    Zanjani, Manda Mortazavi
    Soroush, Abbas
    Khoshini, Mohammad
    [J]. SOIL DYNAMICS AND EARTHQUAKE ENGINEERING, 2016, 88 : 60 - 71