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Challenges of methods and approaches for estimating soil abrasivity in soft ground TBM tunnelling

机译:估算软土地基TBM隧道中土壤耐磨性的方法和方法的挑战

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The increase of urbanization constantly demands more infrastructure, which often requires to utilize the underground. The complex functioning of Tunnel Boring Machines (TBM) and the complexity of their working environment make arriving at wear predictability a challenging affair. The economic consequence of tool wear is, on the other hand, significant. There are several methods and approaches to estimate geo-material's abrasion properties in tunnelling with TBMs. The methods are mainly based on using empirical observations and experiences from completed tunnelling projects correlated with simplified laboratory test results. The simplified laboratory tests means that the soil's in-situ properties such as the cohesion, density, adhesion, water content and original grain size distribution are lacking or is disturbed. The intention of this research paper is to give a brief overview the respective test procedures of the different approaches and their pros and cons. In light of these, we assess a new methodological approach and examine the extent to which it is capable of advancing the understanding of predicting wear on TBMs with respect to general tribological experiences such as the influence of hard minerals or particles, grain shape and grain size. The applicability of the laboratory experiments from a practitioner's point of view is equally briefly discussed.
机译:城市化的发展不断要求更多的基础设施,而这往往需要利用地下。隧道掘进机(TBM)的复杂功能及其工作环境的复杂性,使磨损的可预测性成为一项具有挑战性的事情。另一方面,工具磨损的经济后果是重大的。有几种方法和方法可以估算在使用TBM进行隧道施工时土工材料的耐磨性。这些方法主要基于经验性观察和已完成的隧道项目的经验,这些经验与简化的实验室测试结果相关。简化的实验室测试意味着缺少或破坏了土壤的原位特性,例如内聚力,密度,附着力,水含量和原始粒度分布。本研究报告的目的是简要概述不同方法的各自测试程序及其优缺点。有鉴于此,我们评估了一种新的方法论方法,并检验了它在多大的摩擦学经验(例如硬质矿物或颗粒的影响,晶粒形状和晶粒尺寸)方面能够提高对TBM磨损预测的认识的程度。 。从从业者的角度出发,实验室实验的适用性同样得到了简短的讨论。

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