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Calibration of Roller-Integrated Machine Drive Power Measurements Using Soil Compaction Forecasting Model

机译:使用土壤压实预测模型校准滚筒集成式机器驱动功率的测量

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Calibration of roller-integrated machine drive power (MDP) measurements is a necessary step for implementing the continuous compaction control technology into practice. State-of-the-practice calibration procedures use univariate or multivariate regression analysis of roller machine values with traditional compaction indices, such as modulus or soil unit weight. In this paper, a new calibration technique for estimating dry unit weight from MDP measurements was developed through investigation of the relationship between roller-integrated MDP and the inferred com-pactive effort associated with the corresponding moisture-density state of soil. Based on field data from eight test strips, linear trends were observed between compactive effort and cumulative MDP, and the proposed approach was able to detect how moisture content (a changing variable between test strips) substantially influences soil compactive effort and the soil-roller interaction affecting MDP measurements. Identifying slopes and intercepts of these moisture-dependent correlations allows for estimating roller-achieved compactive effort, and then converting estimated compactive effort to soil dry unit weight through a unified soil compaction model that is calibrated using traditional laboratory Proctor test data. The proposed forecasting calibration technique is based on accepted and defensible geotechnical principles on which earthworks practice is based, not relying solely on regression models. Observing the correlation of roller machine values and dry unit weight in the context of soil compaction behavior is expected to improve confidence in the continuous compaction control technology and ultimately result in more widespread acceptance and use.
机译:滚筒集成机器驱动功率(MDP)测量的校准是将连续压实控制技术付诸实践的必要步骤。实践水平的校准程序使用具有传统压实指数(例如模量或土壤单位重量)的辊压机值进行单变量或多变量回归分析。在本文中,通过研究滚筒集成的MDP与推论的与土壤相应的湿度密度状态相关的作用力之间的关系,开发了一种新的校准技术,该技术可通过MDP测量值估算干重。根据来自八个试纸条的现场数据,观察到压实作用力和累积MDP之间的线性趋势,所提出的方法能够检测出水分含量(试纸之间的变化变量)如何显着影响土壤压实作用力和土壤-滚筒相互作用。影响MDP测量。识别这些与湿度相关的相关关系的斜率和截距,可以估算出压实机实现的压实作用力,然后通过使用传统实验室Proctor测试数据进行校准的统一土壤压实模型,将估算的压实作用力转换为土壤干重。拟议的预测校准技术基于土方工程实践所基于的公认且合理的岩土工程原理,而不是仅依赖于回归模型。在土壤压实行为的背景下,观察压路机值与干燥单位重量之间的相关性有望提高对连续压实控制技术的信心,并最终导致更广泛的接受和使用。

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