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Method and apparatus for on-line estimation of soil parameters during excavation

机译:开挖过程中土壤参数在线估算的方法和装置

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摘要

Time-varying forces from soil-machine interactions cause stresses in the components of earthmoving machinery, which may cause damage to the machine. It is not always possible to know all the characteristics of a soil sample prior to excavation; however, by estimating necessary soil parameters, it is possible to predict the soil-machine interaction forces in a practical manner. This article presents the development of a simple apparatus and method for estimating the soil parameters from the cutting force measured by the novel bench-scale excavating tool, validation of the soil model, and comparison with other available techniques. The apparatus used to collect data of soil forces on a tool consists of an instrumented crank-slider mechanism equipped with a thin plate to fragment the soil, which is contained in a sample box. Using the Mohr-Coulomb earth pressure model to predict failure force during the interaction, two methods are used to minimize the error between the predicted and measured failure force, that allows to estimate soil parameters: First, the New-ton-Raphson Method (NRM) is used to minimize the error, which allows estimation of two soil parameters (interface friction angles) on non-cohesive soil samples. Additionally, a new estimation scheme based on the NRM is presented, that uses an auxiliary equation, and allows estimation of up to three soil parameters, including interface friction angles and cohesion. Comparing the results obtained from the presented apparatus, it is confirmed that the friction angles are successfully estimated for two non-cohesive particulate materials. Additionally, it is shown that the new scheme demonstrates smaller error in estimating soil parameters for cohesive and non-cohesive soil samples than previously reported methods. The parameter estimation method is subsequently applied to determine the properties of highly cohesive oil sand, and delivers promising results.
机译:土机相互作用产生的时变力会在土方机械组件中产生应力,这可能会损坏机械。在开挖之前,并非总是能够了解土壤样品的所有特征。但是,通过估算必要的土壤参数,可以以实用的方式预测土壤与机器的相互作用力。本文介绍了一种简单的设备和方法的开发,该设备和方法可通过由新型台式规模挖掘工具测得的切削力估算土壤参数,验证土壤模型并与其他可用技术进行比较。用于收集工具上土壤力数据的设备包括一个仪器化的曲柄滑块机构,该机构配备有一块薄板以破碎土壤,土壤被装在样品盒中。使用Mohr-Coulomb土压力模型来预测相互作用过程中的破坏力,使用了两种方法来最小化预测的破坏力和测得的破坏​​力之间的误差,从而可以估计土壤参数:首先是New-ton-Raphson方法(NRM )用于最小化误差,从而可以估计非粘性土壤样品上的两个土壤参数(界面摩擦角)。此外,提出了一种基于NRM的新估算方案,该方案使用一个辅助方程,并允许估算多达三个土壤参数,包括界面摩擦角和内聚力。比较从所提供的设备获得的结果,可以确定成功地估计了两种非粘性颗粒材料的摩擦角。此外,结果表明,与以前报道的方法相比,新方案在估算粘性和非粘性土壤样品的土壤参数方面显示出较小的误差。参数估计方法随后用于确定高粘性油砂的性能,并提供了可喜的结果。

著录项

  • 来源
    《Journal of terramechanics》 |2012年第4期|p.173-181|共9页
  • 作者单位

    Department of Mechanical Engineering, University of Alberta, Edmonton, AB, Canada T6G 2G8;

    Department of Mechanical Engineering, University of Alberta, Edmonton, AB, Canada T6G 2G8;

    Department of Mechanical Engineering, University of Alberta, Edmonton, AB, Canada T6G 2G8;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    soil-tool interaction; failure force; soil parameter estimation;

    机译:土壤工具相互作用破坏力土壤参数估计;

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