Evaluating Sand Particle Surface Smoothness Using a New Computer-Based Approach to Improve the Characterization of Macroscale Parameters

IF 2.2 4区 工程技术 Q3 ENGINEERING, GEOLOGICAL Environmental geotechnics Pub Date : 2023-09-05 DOI:10.3390/geotechnics3030046
A. Tessari, Mark Muszynski
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Abstract

The analysis of sands, and the foundation systems with which they interact, are largely dependent on macroscale behavioral parameters that represent the aggregated response of several microscale characteristics. This research paper examines the influence of surface texture, or smoothness, on the behavior of sands. The challenge of estimating or measuring smoothness, due to its microscale feature domain, is addressed through an examination of six artificially graded sand specimens. These specimens are evaluated both visually and numerically to characterize their surface smoothness. The first approach described is a simple visual method that uses a smoothness scale consistent with those of roundness and sphericity. This method, which can be performed with a tool as simple as a hand lens, evaluates a group of representative particles collectively. The second approach is also a visual evaluation, but it utilizes images obtained via scanning electronic microscopy, traditional optical microscopy, and newer low-cost digital microscopes that can be rapidly connected to a smartphone or laptop. To validate these visual estimates, a novel third approach is introduced. This approach is a more objective numerical analysis measurement technique that enables rapid and economic quantification of smoothness. This technique may assist both practitioners and academics in their understanding of the macroscale response of coarse-grained soils. In addition to the visual methods, this research also conducted several laboratory index tests to observe the mechanical behavior of the specimens, considering their particle shape and surface smoothness properties. The results indicate that angular sands have greater minimum and maximum void ratios, a larger difference between the minimum and maximum void ratios, greater critical state friction angles, and greater flow rates through an orifice of fixed size. When adjusted for surface smoothness using the proposed approach, the behavior of the sands—particularly the limit void ratio results—appears to be more predictable in some cases. These results provide additional evidence of particle smoothness contributing to the strength behavior of sand, which may be particularly useful in the domains of slope stability, land reclamation, soil–structure interaction, and soil dynamics.
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基于计算机的砂粒表面平滑度评价方法改进宏观参数表征
砂土及其相互作用的基础系统的分析在很大程度上依赖于宏观尺度的行为参数,这些参数代表了几个微观尺度特征的综合响应。这篇研究论文探讨了表面纹理或平滑度对砂的行为的影响。由于其微尺度特征域,估计或测量平滑度的挑战是通过对六个人工分级砂样品的检查来解决的。这些试样进行了视觉和数值评估,以表征其表面平滑度。描述的第一种方法是一种简单的视觉方法,它使用与圆度和球度一致的平滑尺度。这种方法,可以用一个简单的工具,如一个手镜头,评估一组有代表性的粒子集体。第二种方法也是一种视觉评估,但它利用的是通过扫描电子显微镜、传统光学显微镜和较新的低成本数字显微镜获得的图像,这些显微镜可以快速连接到智能手机或笔记本电脑。为了验证这些视觉估计,引入了第三种新的方法。这种方法是一种更客观的数值分析测量技术,可以快速和经济地量化平滑度。这项技术可以帮助实践者和学者理解粗粒土的宏观响应。除了视觉方法外,本研究还进行了多次实验室指标试验,观察了试样的力学行为,考虑了其颗粒形状和表面光滑性。结果表明:角砂具有较大的最大和最小空隙比、较大空隙比差、较大的临界状态摩擦角和较大的流量;当使用所提出的方法对表面平滑度进行调整时,在某些情况下,砂的行为,特别是极限空隙比的结果,似乎更容易预测。这些结果提供了额外的证据,证明颗粒平滑度对砂的强度行为有贡献,这在边坡稳定性、土地复垦、土壤-结构相互作用和土壤动力学领域可能特别有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Environmental geotechnics
Environmental geotechnics Environmental Science-Water Science and Technology
CiteScore
6.20
自引率
18.20%
发文量
53
期刊介绍: In 21st century living, engineers and researchers need to deal with growing problems related to climate change, oil and water storage, handling, storage and disposal of toxic and hazardous wastes, remediation of contaminated sites, sustainable development and energy derived from the ground. Environmental Geotechnics aims to disseminate knowledge and provides a fresh perspective regarding the basic concepts, theory, techniques and field applicability of innovative testing and analysis methodologies and engineering practices in geoenvironmental engineering. The journal''s Editor in Chief is a Member of the Committee on Publication Ethics. All relevant papers are carefully considered, vetted by a distinguished team of international experts and rapidly published. Full research papers, short communications and comprehensive review articles are published under the following broad subject categories: geochemistry and geohydrology, soil and rock physics, biological processes in soil, soil-atmosphere interaction, electrical, electromagnetic and thermal characteristics of porous media, waste management, utilization of wastes, multiphase science, landslide wasting, soil and water conservation, sensor development and applications, the impact of climatic changes on geoenvironmental, geothermal/ground-source energy, carbon sequestration, oil and gas extraction techniques, uncertainty, reliability and risk, monitoring and forensic geotechnics.
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