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狭长型矿井工作面的头颈部局部通风方式

Head-neck local ventilation mode for long-narrow mine working face.

作者信息

Wang Jue, Jiang Cheng, Zhou Xihua, Kang Jiayu, Yu Shixuan, Bai Gang

机构信息

School of Civil Engineering, Liaoning Technical University, Fuxin, 123000, China.

School of Safety Science & Engineering, Liaoning Technical University, Fuxin, 123000, China.

出版信息

Sci Rep. 2024 Aug 24;14(1):19663. doi: 10.1038/s41598-024-70739-2.

Abstract

To improve the thermal health state of workers in mines facing heat hazards and enhance cooling capacity utilization efficiency of mine ventilation, this study proposes a suitable air distribution for mine workers' local cooling, taking into account the characteristics of long-narrow underground space and workers. The suggested air distribution involves harnessing underground cold air jets along with the mine's crossflow (mainstream ventilation) to create a localized safeguard airflow around the worker's head-neck, known as jet ventilation in crossflow (JVIC). The flow visualization experiment identified five flow patterns within a confined space. The study explores the impact of the velocity ratio (R) and confinement scale (C) on the evolution of JVIC flow patterns and presents a parametric description of the resulting flow field. Drawing on the microclimate control scope around mine workers' head-neck, the study defines the effective cooling zone and the ineffective cooling zone as the boundaries for controlling JVIC air distribution within confined mine spaces. This clarifies the applicability of the air distribution form and introduces an evaluation model for assessing the cooling effect and the efficiency of cooling capacity utilization to manage the non-uniform underground environment.

摘要

为改善面临热害的矿山工人的热健康状况,提高矿井通风冷却能力利用效率,本研究结合狭长地下空间和工人的特点,提出了一种适用于矿山工人局部降温的气流分布方式。建议的气流分布方式是利用井下冷空气射流与矿井横流(主流通风)相结合,在工人头颈周围形成局部防护气流,即横流中的射流通风(JVIC)。流动可视化实验确定了密闭空间内的五种流动模式。该研究探讨了速度比(R)和受限尺度(C)对JVIC流动模式演变的影响,并给出了所得流场的参数描述。基于矿山工人头颈周围的微气候控制范围,该研究将有效冷却区和无效冷却区定义为在受限矿井空间内控制JVIC气流分布的边界。这阐明了气流分布形式的适用性,并引入了一个评估模型,用于评估冷却效果和冷却能力利用效率,以应对不均匀的地下环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96ab/11343875/a0e6cd1c2a3f/41598_2024_70739_Fig1_HTML.jpg

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