高速列车在两类隔音屏障内相遇时的空气动力差异:考虑建模比例

IF 4 3区 工程技术 Q1 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS
Wei-Chao Yang, Guo-Zhi Li, E Deng, De-Hui Ouyang, Zhi-Peng Lu
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引用次数: 0

摘要

目的可持续的城市轨道交通需要隔音屏障。然而,这些隔音屏障的耐久性因其受到的空气动力影响不同而各异。本文旨在研究列车在两种矩形隔音屏障(全封闭式(FERNB)和带垂直板的半封闭式(SERNBVB))内相遇时的空气动力差异。该研究还考虑了这些情况下比例比率的敏感性。设计/方法/途径1:16 比例的移动模型试验分析了列车交会时空气动力压力的时空模式和差异。三维计算流体动力学模型的比例分别为 1:1、1:8 和 1:16,使用了改进的延迟分离涡流模拟湍流模型和滑移网格技术。比较了两类隔音屏障的空气动力压力差异比例,并揭示了流场机制。研究结果 SERNBVB 的气动压力受列车头尾波的影响,而 FERNB 的气动压力受压力波和头尾波的影响。值得注意的是,SERNBVB 的空气动力压力对比例变化更为敏感。随着尺度比的减小,隔音屏障上的空气动力压力逐渐增大。考虑到建模比例,比较了两种矩形隔音屏障在列车相遇时的空气动力差异,并确定了比例与全比例之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aerodynamic discrepancies of high-speed trains meeting within two types noise barriers: considering modeling scale ratio

Purpose

Sustainable urban rail transit requires noise barriers. However, these barriers’ durability varies due to the differing aerodynamic impacts they experience. The purpose of this paper is to investigate the aerodynamic discrepancies of trains when they meet within two types of rectangular noise barriers: fully enclosed (FERNB) and semi-enclosed with vertical plates (SERNBVB). The research also considers the sensitivity of the scale ratio in these scenarios.

Design/methodology/approach

A 1:16 scaled moving model test analyzed spatiotemporal patterns and discrepancies in aerodynamic pressures during train meetings. Three-dimensional computational fluid dynamics models, with scale ratios of 1:1, 1:8 and 1:16, used the improved delayed detached eddy simulation turbulence model and slip grid technique. Comparing scale ratios on aerodynamic pressure discrepancies between the two types of noise barriers and revealing the flow field mechanism were done. The goal is to establish the relationship between aerodynamic pressure at scale and in full scale.

Findings

The aerodynamic pressure on SERNBVB is influenced by the train’s head and tail waves, whereas for FERNB, it is affected by pressure wave and head-tail waves. Notably, SERNBVB's aerodynamic pressure is more sensitive to changes in scale ratio. As the scale ratio decreases, the aerodynamic pressure on the noise barrier gradually increases.

Originality/value

A train-meeting moving model test is conducted within the noise barrier. Comparison of aerodynamic discrepancies during train meets between two types of rectangular noise barriers and the relationship between the scale and the full scale are established considering the modeling scale ratio.

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来源期刊
CiteScore
9.50
自引率
11.90%
发文量
100
审稿时长
6-12 weeks
期刊介绍: The main objective of this international journal is to provide applied mathematicians, engineers and scientists engaged in computer-aided design and research in computational heat transfer and fluid dynamics, whether in academic institutions of industry, with timely and accessible information on the development, refinement and application of computer-based numerical techniques for solving problems in heat and fluid flow. - See more at: http://emeraldgrouppublishing.com/products/journals/journals.htm?id=hff#sthash.Kf80GRt8.dpuf
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