Optimization for diffusion-type oxygen supply nearby working face of railway tunnel in plateau

IF 4.7 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-02-05 DOI:10.1177/1420326x241230038
Zhizhao Tan, K. Zhao, Junjian Wang, Yu Xu, Yanping Yuan
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Abstract

During the construction of railway tunnels in plateau environment regions, ensuring adequate oxygen supply is crucial for both worker health and safety, and tunnelling progress. Existing diffusion-type oxygen supply enrichments for plateau regions lack quantitative conclusions and have not been implemented systematically in actual engineering. To refine the design parameters of the required method, this study utilized computational fluid dynamics (CFD) to examine the optimal design parameters for oxygen supply equipment in a typical engineering project. The optimal scheme consisted of three rows of oxygen diffusion apparatuses with 0.07 m inlet diameter, 0.4 m lateral spacing and 60° tilt that maintain a constant oxygen supply rate. This configuration maximized oxygen concentration enrichment in workers’ breathing zones, with oxygen partial pressure in most target zones remaining below 3000 m altitude, except for the ventilation side where it was 3360 m. This study elucidated the effects of various design parameters on oxygen distribution and proposed the optimal combination for a typical tunnel engineering project. The findings provide a guidance for implementing diffusion-type oxygen enrichment in high-altitude tunnel construction, aiding both worker safety and project efficiency.
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高原铁路隧道工作面附近扩散式供氧的优化方案
在高原环境地区的铁路隧道施工过程中,确保充足的氧气供应对工人的健康和安全以及隧道施工进度都至关重要。现有的高原地区扩散式供氧富集法缺乏定量结论,在实际工程中也没有得到系统实施。为了完善所需方法的设计参数,本研究利用计算流体动力学(CFD)研究了典型工程中供氧设备的最优设计参数。最佳方案包括三排氧气扩散装置,入口直径为 0.07 米,横向间距为 0.4 米,倾斜度为 60°,保持恒定的氧气供应率。这项研究阐明了各种设计参数对氧气分布的影响,并提出了典型隧道工程项目的最佳组合。研究结果为在高海拔隧道施工中实施扩散式富氧提供了指导,有助于保障工人安全和提高工程效率。
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
CiteScore
7.20
自引率
4.30%
发文量
567
期刊介绍: ACS Applied Electronic Materials is an interdisciplinary journal publishing original research covering all aspects of electronic materials. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials science, engineering, optics, physics, and chemistry into important applications of electronic materials. Sample research topics that span the journal's scope are inorganic, organic, ionic and polymeric materials with properties that include conducting, semiconducting, superconducting, insulating, dielectric, magnetic, optoelectronic, piezoelectric, ferroelectric and thermoelectric. Indexed/​Abstracted: Web of Science SCIE Scopus CAS INSPEC Portico
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