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The effects of implements of husbandry farm equipment on rigid pavement performance.

机译:畜牧业设备的工具对刚性路面性能的影响。

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摘要

Current trend has shown that farms are getting fewer, but farm size is becoming larger and larger. As the farm size is getting larger, the farm equipment is simultaneously becoming larger to adapt the new state and federal regulations which encourage farmers to store manure as a liquid and apply it in a short time period. The sizes of farm as well as farm equipment are growing faster than both the pavement design technology and the state regulations. The effect of such an increase on pavements would be an accelerated rate of pavement deterioration. There is a concern that the heavy farm equipment can do significant damage to pavement and bridges.;Initiated in early 2007, this study used a comprehensive series of combinations of farm equipments, axle load, speed and traffic wanders to determine the pavement response under various types of farm equipments and to quantify the pavement damage due to various agricultural equipments. Two typical instrumented concrete testing pavement sections were used to measure the critical pavement responses and validate the theoretical pavement response model ISLAB 2005.;Through this research, it was determined that traffic wander, seasonal effect, pavement structure, and vehicle type/configuration have pronounced impact on pavement responses. However, traffic speed is not statistically significant with respect to pavement performance. Additionally, all agricultural vehicles tested generated higher pavement responses than a standard semi-truck when they are fully loaded. It is also found that if the rear axle of the agricultural vehicles is driven 18--24 inches (2 feet) away from the pavement shoulder, the pavement damage could be reduced to minimal even when they were fully loaded. The study also found that by increasing concrete pavement thickness by 2.5 inches, the pavement strain response will be reduced as much as 280%.;ISLAB2005, a finite element program, was utilized to perform the damage analysis for different pavement structures under various agricultural vehicles with and without slab curling behavior. The damage analysis results confirmed the field behavior that all agricultural vehicles introduce higher pavement responses than a standard semi-truck. The damage analysis also concluded that the damage due to slab curling coupled with heavy agricultural vehicle's loading could be devastating for the concrete pavement.;The findings of this study is expected to provide a better understanding of the interaction of farm equipment with the pavement structures which will facilitate more rational regulation of Spring load restrictions, additionally with respect to acceptance of new designs and innovations in vehicle configuration. The findings will help highway agencies to design roads that are more capable of resisting to damage related to heavy loading with complex gear configuration.
机译:当前的趋势表明,农场数量正在减少,但是农场规模却越来越大。随着农场规模的扩大,农场设备同时也变得越来越大,以适应新的州和联邦法规,这些法规鼓励农民将粪便作为液体进行储存并在短时间内使用。农场和农场设备的规模增长速度超过路面设计技术和国家法规。这种增加对人行道的影响将加速人行道的恶化速度。人们担心重型农用设备会严重损坏人行道和桥梁。该研究始于2007年初,使用了一系列综合性的农机设备,车轴负载,速度和交通流量的组合来确定各种情况下的路面响应。农业设备的类型以及量化由于各种农业设备造成的路面损坏。使用两个典型的仪器化混凝土测试路面截面来测量关键路面响应并验证ISLAB 2005的理论路面响应模型。通过这项研究,确定了交通漂移,季节性影响,路面结构和车辆类型/配置都明显对路面响应的影响。但是,交通速度在路面性能方面没有统计学意义。此外,在满载时,所有测试过的农用车辆产生的路面响应均比标准半卡车更高。还发现,如果将农用车辆的后轴从人行道肩部移开18--24英寸(2英尺),即使满载时人行道的损坏也可以减小到最小。该研究还发现,通过将混凝土路面厚度增加2.5英寸,路面应变响应将减少多达280%.; ISLAB2005是一个有限元程序,用于对各种农用车辆下不同路面结构进行损伤分析有无板坯卷曲行为。损伤分析结果证实了现场行为,即所有农用车辆均比标准半卡车具有更高的路面响应。损伤分析还得出结论,平板翘曲加上重型农用车辆的负载可能会对混凝土路面造成毁灭性的破坏。这项研究的结果有望更好地理解农机设备与路面结构的相互作用。除了可以接受新的设计和车辆配置创新以外,这还将有助于更合理地调节弹簧载荷限制。这些发现将帮助公路部门设计出更能抵抗复杂齿轮配置下的重载损坏的道路。

著录项

  • 作者

    Wang, Shiyun.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2011
  • 页码 343 p.
  • 总页数 343
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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