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Dynamic characteristics of municipal solid waste (MSW) in the linear and nonlinear strain ranges.

机译:城市固体废物(MSW)在线性和非线性应变范围内的动态特性。

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摘要

A series of resonant column and torsional shear (RCTS) and large scale resonant column (LSRC) tests were performed to investigate the dynamic properties (shear modulus and material damping ratio) of municipal solid waste (MSW). The MSW materials were recovered from the Tri-Cities landfill adjacent to the San Francisco Bay in California. A total of 30 specimens 2.8-in. (71.1-mm) and 6.0-in. (152.4-mm) of old, fresh, and mixed MSW were reconstituted in accordance with established sample preparation procedures. Ten of specimens were small-diameter (2.8-in. (71.1-mm)) RCTS specimen and 20 specimens were larger (6.0-in. (152.4-mm)) LSRC specimens. Dynamic laboratory measurements were performed in the linear and nonlinear strain ranges. Test parameters affecting the dynamic properties in the linear range included: (1) duration of confinement, (2) isotropic total confining pressure, sigma o, (3) excitation frequency, f, and (4) specimen size. Other test parameters affecting dynamic properties in the nonlinear strain range were: (1) shearing strain amplitude, gamma, (2) isotropic total confining pressure, (3) overconsolidation ratio, (4) number of loading cycles, and (5) excitation frequency. In addition, the effects on dynamic properties of MSW specimens of material parameters such as (1) waste composition, (2) water content, (3) unit weight of waste, and (4) particle size were evaluated.;The total unit weights of old, fresh, and mixed MSW specimens were estimated during testing in the RCTS and LSRC devices. These estimated total unit weights in the laboratory were compared with those measured at other MSW landfills and were found to generally be less than the field measurements. At a given sigma o, Gmax decreases with decreasing weight percentage of soil-size (passing the ¾-in. (19.1-mm) sieve) material. However, Dmin increases slightly with decreasing weight percentage of soil-size material. Another relationship was developed between estimated total unit weight, gamma t, and confining pressure, including weigh percentage of soil-size material. The Vs profiles of old, fresh, and mixed MSW specimens obtained in the laboratory tests were compared with those measured at other MSW landfills in situ. The 62 to 76% soil-size material groups are in good agreement with in-situ Vs profiles.;The variation in normalized shear modulus and material damping ratio curves were patterned after the Darendeli model (2001) for different weight percentages of soil-size material. An empirical relationship between normalized shear modulus (G/Gmax) and modified material damping ratio (D-D min) was developed in the nonlinear strain range. As part of collaborative research project, nonlinear shear modulus reduction and material damping curves generated by The University of Texas at Austin (UT) and The University of California at Berkeley (UCB) were compared according to different weight percentages of soil-size material. Furthermore, nonlinear shear modulus reduction and material damping ratio curves generated by UT were also compared with ones previously proposed by other researchers.
机译:进行了一系列的共振柱和扭剪(RCTS)和大型共振柱(LSRC)测试,以研究城市固体废物(MSW)的动态特性(剪切模量和材料阻尼比)。城市生活垃圾的材料是从加利福尼亚旧金山湾附近的三城市垃圾填埋场回收的。总共30个2.8英寸的样品。 (71.1毫米)和6.0英寸。按照既定的样品制备程序重新配制(152.4-mm)旧,新鲜和混合的MSW。十个标本是小直径(2.8英寸(71.1毫米))的RCTS标本,而二十个标本是较大(6.0英寸(152.4毫米))的LSRC标本。在线性和非线性应变范围内进行动态实验室测量。影响线性范围内动态特性的测试参数包括:(1)约束时间,(2)各向同性总约束压力,σo,(3)激励频率,f和(4)样本大小。影响非线性应变范围内动力特性的其他测试参数包括:(1)剪切应变振幅,伽玛(2)各向同性总围压,(3)超固结比,(4)加载周期数和(5)激发频率。此外,还评估了材料参数如(1)废物成分,(2)含水量,(3)废物单位重量和(4)粒度等对MSW样品动态性能的影响;总单位重量在RCTS和LSRC设备中进行测试期间,估计了旧的,新鲜的和混合的MSW标本的数量。将这些在实验室中估算的总单位重量与在其他MSW垃圾填埋场测得的重量进行了比较,发现它们通常小于现场测量的重量。在给定的σo下,Gmax随着土壤尺寸(通过3/4英寸(19.1毫米)筛的重量)的减少而减小。但是,Dmin随着土壤胶料重量百分比的降低而略有增加。在估计的总单位重量,γ吨和围压(包括土料的重量百分比)之间建立了另一种关系。将在实验室测试中获得的旧的,新鲜的和混合的MSW标本的Vs轮廓与在其他MSW垃圾填埋场现场测量的Vs轮廓进行比较。 62%至76%的土壤尺寸材料组与原位Vs曲线吻合良好;根据Darendeli模型(2001),针对不同的土壤尺寸重量百分比,绘制了标准化剪切模量和材料阻尼比曲线的变化材料。在非线性应变范围内建立了归一化剪切模量(G / Gmax)和改性材料阻尼比(D-D min)之间的经验关系。作为合作研究项目的一部分,根据土料的不同重量百分比,比较了德克萨斯大学奥斯汀分校(UT)和加利福尼亚大学伯克利分校(UCB)生成的非线性剪切模量降低和材料阻尼曲线。此外,还将UT产生的非线性剪切模量降低和材料阻尼比曲线与其他研究人员先前提出的曲线进行了比较。

著录项

  • 作者

    Lee, Jung Jae.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Civil.;Engineering Sanitary and Municipal.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 495 p.
  • 总页数 495
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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