Civil Engineering Department, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.
Waste Manag. 2017 May;63:366-379. doi: 10.1016/j.wasman.2017.01.027. Epub 2017 Jan 28.
The article presents the stress-strain and volume change behavior, shear strength and stiffness parameters of landfilled municipal solid waste (MSW) collected from two dump sites located in Delhi, India. Over 30 drained triaxial compression (TXC) tests were conducted on reconstituted large-scale specimens of 150mm diameter to study the influence of fiber content, age, density and confining pressure on the shear strength of MSW. In addition, a few TXC tests were also conducted on 70mm diameter specimen to examine the effect of specimen size on the mobilized shear strength. It is observed that the fibrous materials such as textiles and plastics, and their percentage by weight have a significant effect on the stress-strain-volume change behavior, shear strength and stiffness of solid waste. The stress-strain-volume change behavior of MSW at Delhi is qualitatively in agreement with the behavior reported for MSW from different countries. Results of large-scale direct shear tests conducted on MSW with an identical composition used for TXC tests revealed the cross-anisotropic behavior as reported by previous researchers. Effective shear strength parameters of solid waste evaluated from this study is best characterized by ϕ'=39° and c'=0kPa for the limiting strain-based failure criteria of K=0.3+5% axial strain and are in the range of the data reported for MSW from different countries. Data presented in this article is useful for the stress-deformation and stability analysis of the dump sites during their operation as well as closure plans.
本文介绍了从印度德里的两个垃圾填埋场收集的填埋城市固体废物(MSW)的应力-应变和体积变化行为、抗剪强度和刚度参数。对 150mm 直径的大型原状试样进行了超过 30 次的排水三轴压缩(TXC)试验,以研究纤维含量、年龄、密度和围压对 MSW 抗剪强度的影响。此外,还对 70mm 直径的试样进行了一些 TXC 试验,以研究试样尺寸对可动抗剪强度的影响。结果表明,纤维材料(如纺织品和塑料)及其重量百分比对固体废物的应力-应变-体积变化行为、抗剪强度和刚度有显著影响。德里 MSW 的应力-应变-体积变化行为与来自不同国家的 MSW 报告的行为定性一致。对与 TXC 试验相同组成的 MSW 进行的大型直接剪切试验结果表明,存在先前研究人员报告的交叉各向异性行为。根据本研究评估的固体废物有效抗剪强度参数,以 K=0.3+5%轴向应变的极限应变失效准则为特征,最佳值为ϕ'=39°和 c'=0kPa,与来自不同国家的 MSW 的数据范围一致。本文提供的数据可用于垃圾填埋场在运营和关闭计划期间的应力变形和稳定性分析。