轮轨界面颗粒夹带的CFD-DEM建模:颗粒特性的参数化研究。

IF 4.4 1区 工程技术 Q2 TRANSPORTATION SCIENCE & TECHNOLOGY
Railway Engineering Science Pub Date : 2025-01-01 Epub Date: 2025-01-15 DOI:10.1007/s40534-024-00365-1
Sadaf Maramizonouz, Sadegh Nadimi, William Skipper, Roger Lewis
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引用次数: 0

摘要

为了减轻轮轨之间的低附着力,采用了一种列车载系统,通过压缩空气射流将砂粒沉积到轮轨界面,这一过程被称为轨道磨砂。英国铁路安全和标准委员会介绍了砂粒的形状、大小和均匀性的指导方针,这些都是铁路打磨需要遵守的。为了进一步研究这些准则并帮助改进它们,本研究利用计算流体动力学-离散元法(CFD-DEM)耦合模型,对影响钢轨磨砂过程的颗粒特性进行了参数化研究,包括密度、尺寸和尺寸分布、均匀系数和形状。在每个案例研究中,对铁路砂化的效率进行了估计,并与基准进行了比较,以优化铁路砂化的砂特性。结果表明,粒径分布(在可接受范围内)对效率的影响不显著,增大粒径或均匀度系数会降低效率。与球形颗粒相比,颗粒形状对扁平、致密和细长颗粒的效率影响很大。目前的数值模型能够准确地预测效率的变化趋势,并与全尺寸实验得到的实际值进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CFD-DEM modelling of particle entrainment in wheel-rail interface: a parametric study on particle characteristics.

To mitigate and alleviate low wheel-rail adhesion, a train-borne system is utilised to deposit sand particles into the wheel-rail interface via a jet of compressed air in a process called rail-sanding. Britain Rail Safety and Standards Board introduced guidelines on the sand particles' shape, size, and uniformity which needs to be adhered to for rail-sanding. To further investigate these guidelines and help improve them, this research presents a parametric study on the particle characteristics that affect the rail-sanding process including density, size and size distribution, coefficient of uniformity, and shape, utilising a coupled computational fluid dynamics-discrete element method (CFD-DEM) model. The efficiency of rail-sanding is estimated for each case study and compared to the benchmark to optimise the sand characteristics for rail-sanding. It is concluded that particle size distribution (within the accepted range) has an insignificant effect on the efficiency while increasing particle size or the coefficient of uniformity decreases the efficiency. Particle shape is shown to highly affect the efficiency for flat, compact and elongated particles compared to the spherical shape. The current numerical model is capable of accurately predicting the trends in the efficiency compared to the actual values obtained from full-scale experiments.

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来源期刊
Railway Engineering Science
Railway Engineering Science TRANSPORTATION SCIENCE & TECHNOLOGY-
CiteScore
10.80
自引率
7.90%
发文量
1061
审稿时长
15 weeks
期刊介绍: Railway Engineering Science is an international, peer-reviewed, and free open-access journal that publishes original research articles and comprehensive reviews related to fundamental engineering science and emerging technologies in rail transit systems, focusing on the cutting-edge research in high-speed railway, heavy-haul railway, urban rail transit, maglev system, hyperloop transportation, etc. The main goal of the journal is to maintain high quality of publications, serving as a medium for railway academia and industry to exchange new ideas and share the latest achievements in scientific research, technical innovation and industrial development in railway science and engineering. The topics include but are not limited to Design theory and construction technology System dynamics and safetyElectrification, signaling and communicationOperation and maintenanceSystem health monitoring and reliability Environmental impact and sustainabilityCutting-edge technologiesThe publication costs for Railway Engineering Science are fully covered by Southwest Jiaotong University so authors do not need to pay any article-processing charges.
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