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Beneficial use of recycled scrap tire shreds to isolate ground-borne vibrations.

机译:有益地使用可回收的废旧轮胎碎片以隔离地面传播的振动。

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摘要

Ground-borne vibrations from construction activities, high-speed trains, and machine foundations can adversely affect the operation of sensitive equipment and damage structures. A wave barrier installed near the vibration source or in the area requiring protection can attenuate the vibrations by reflecting or scattering the wave energy. Wave barriers, including piles, sheet piles, and open or in-filled concrete, bentonite slurry or geofoam trench barriers, have been studied comprehensively, with various degrees of success reported. For this dissertation, the beneficial use of tire shreds as an isolation medium in trench barriers was investigated, and design guidelines were developed.;The performance of in-filled tire-shred trench barriers was comprehensively studied through numerical and experimental investigations. Two- and three-dimensional finite element models were developed using the ABAQUS package. The numerical models were validated, either through reference models or field measurements. The models were initially used to study the influence of geometrical parameters on the effectiveness of in-filled trench barriers for screening active (near-field) vibrations and for the design of a full-scale experimental program.;Based on the findings of the numerical investigation, a full-scale experimental study was designed and implemented to study the performance of in-filled tire-shred trench barriers. Because of the size of the tire shreds used in this study (50mm and 200mm), a full-scale study was warranted. Conventional construction equipment was used for the trench installation and placement of the tire shreds. A series of tests was conducted for open and in-filled trench barriers (with circular, semi-circular and linear configurations) to assess the performance of tire shreds relative to air, which is the most effective isolator, for full and partial isolation. The experimental study confirmed that the screening effectiveness of in-filled trench barriers is comparable to that of open trench barriers.;A parametric study was conducted to investigate the influence of key dynamic soil properties on the performance of in-filled trench barriers. For partial isolation cases, the limits of the effectively screened area behind a semi-circular and linear trench barrier were accurately delineated. Guidelines for the design of in-filled trench barriers were then developed.
机译:施工活动,高速火车和机器基础产生的地面振动会严重影响敏感设备的运行并损坏结构。安装在振动源附近或需要保护的区域中的挡波板可通过反射或散射波能来减弱振动。包括桩,板桩,开放式或填充式混凝土,膨润土泥浆或土工泡沫沟槽屏障在内的波浪屏障已经得到了广泛的研究,并取得了不同程度的成功。为此,研究了将轮胎碎片作为隔离材料在沟渠屏障中的有益应用,并制定了设计指南。通过数值和实验研究,全面研究了填充轮胎碎片沟渠屏障的性能。使用ABAQUS软件包开发了二维和三维有限元模型。通过参考模型或现场测量对数值模型进行了验证。该模型最初用于研究几何参数对填充沟槽势垒的有效性的影响,以筛选主动(近场)振动并设计全面的实验程序。为了进行调查,我们设计并实施了一项全面的实验研究,以研究填充的轮胎切碎的沟槽屏障的性能。由于本研究中使用的轮胎碎片尺寸较大(50mm和200mm),因此需要进行全面研究。传统的建筑设备被用于沟渠的安装和轮胎碎片的放置。针对开放式和填充式沟槽屏障(具有圆形,半圆形和线性配置)进行了一系列测试,以评估轮胎碎片相对于空气的性能,这是最有效的隔离器,用于完全隔离和部分隔离。实验研究证实,填充式沟槽式屏障的筛选效果与开放式沟槽式屏障相当。进行了参数研究,研究了关键动态土壤特性对填充式沟槽式屏障性能的影响。对于部分隔离的情况,精确描绘了半圆形和线性沟槽势垒后面有效屏蔽区域的界限。然后,制定了填充沟槽屏障的设计准则。

著录项

  • 作者

    Jafari, Farhad.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:50:10

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