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受限矿井空间内错流中射流通风流动特性的实验研究

Experimental study on flow characteristics of jet ventilation in crossflow in confined mine spaces.

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, Liaoning, China.

School of Safety Science and Engineering, Liaoning Technical University, Liaoning, China.

出版信息

Sci Rep. 2024 Apr 5;14(1):8022. doi: 10.1038/s41598-024-58267-5.

Abstract

The increasing depth of mine excavation presents greater challenges in mine ventilation and in managing cooling energy consumption. Therefore, there is an urgent need for comprehensive research on jet ventilation influenced by low-speed crossflows. This study investigated the impact of flow velocity ratios (R) and jet exit diameters (d) on flow-field distribution and flow characteristics through velocity measurements and smoke flow visualization experiments. The results of the study revealed two distinct types of air lakes formed by jet ventilation in crossflow (JVIC), with one being wall-attached and the other suspended. Notably, a significant secondary flow phenomenon was observed in the near-field near the upper wall. Additionally, the deflection angle (θ) of JVIC decreases as R and d/D increase, leading to the formation and movement of a semi-confined point (SP) and a confined point (CP) in the -x direction. Moreover, the wall confinement effect diminishes the jet's diffusion and deflection ability in the -z direction, leading to increased penetration in the x direction. Before the formation of the SP, the deflection section of the jet lengthens, followed by a rapid shortening upon its formation. Finally, the study further developed empirical equations for the jet axial trajectory and diffusion width.

摘要

矿井开采深度的不断增加给矿井通风和冷却能耗管理带来了更大的挑战。因此,迫切需要对受低速横流影响的射流通风进行全面研究。本研究通过速度测量和烟流可视化实验,研究了流速比(R)和射流出口直径(d)对流场分布和流动特性的影响。研究结果揭示了横流中射流通风形成的两种不同类型的气湖,一种附着在壁面上,另一种悬浮着。值得注意的是,在上壁附近的近场中观察到了显著的二次流现象。此外,随着R和d/D的增加,横流中射流通风(JVIC)的偏转角(θ)减小,导致在 -x 方向上形成并移动一个半受限点(SP)和一个受限点(CP)。而且,壁面约束效应减弱了射流在 -z 方向上的扩散和偏转能力,导致在x方向上的穿透增加。在SP形成之前,射流的偏转段会变长,形成后则迅速缩短。最后,该研究进一步推导了射流轴向轨迹和扩散宽度的经验方程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60f9/10997619/a8c3aac0201c/41598_2024_58267_Fig1_HTML.jpg

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