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中间矿堆粉尘产生与运移规律的数值模拟

Numerical Simulation of the Dust Production and Transportation Law of an Intermediate Mine Heap.

作者信息

Huang Zhian, Huang Yang, Yang Zhijun, Zhang Jun, Gao Yukun, Shao Zhenlu, Zhang Yinghua, Chen Mingli

机构信息

State Key Laboratory of High-Efficient Mining and Safety of Metal Mines, Ministry of Education, University of Science and Technology Beijing, Beijing 100083, China.

Key Laboratory of Gas and Fire Control for Coal Mines, Ministry of Education, China University of Mining and Technology, Xuzhou 221116, China.

出版信息

ACS Omega. 2021 Jan 7;6(2):1623-1635. doi: 10.1021/acsomega.0c05598. eCollection 2021 Jan 19.

Abstract

In view of the current serious dust generation and environmental pollution that occur during the unloading process of an intermediate mine heap, in this study, the flow field and dust migration law for an intermediate mine heap were simulated numerically. Based on the mathematical model of the flow field and dust field, a numerical simulation was used to obtain the impact airflow and dust distribution law under different unloading conditions. The effects of different factors on the impact airflow and dust were studied. It could be concluded that the maximum impact wind velocity and dust concentration increased with an increase in the unloading flow. When the heap height is 23 m, the relationship between the maximum impact wind velocity and unloading volume was = 0.05124( ) and the relationship between the dust concentration and mine unloading flow was = 7.05613( ). The smaller the ore particle size, the larger the impact airflow and the greater the dust concentration. The relationship between the maximum impact wind velocity and the particle size was = 1.54000(). The relationship between the dust concentration and ore particle size was = 30.45323(). The greater the maximum impact wind speed, the more the dust generated. The existence of natural wind flow will initially accelerate the speed of dust diffusion and increase the dust concentration, but with the increase in natural wind flow, the diffusion effect will gradually reduce the dust concentration. An increase in the mine heap height will cause the impact wind's speed and influence range to continuously decrease but will only have a small effect on the dust concentration.

摘要

鉴于目前中间矿堆卸料过程中产生的严重扬尘和环境污染问题,本研究对中间矿堆的流场和粉尘迁移规律进行了数值模拟。基于流场和粉尘场的数学模型,采用数值模拟方法得到了不同卸料条件下的冲击气流和粉尘分布规律。研究了不同因素对冲击气流和粉尘的影响。结果表明,最大冲击风速和粉尘浓度随卸料流量的增加而增大。当矿堆高度为23 m时,最大冲击风速与卸料量的关系为 = 0.05124( ),粉尘浓度与矿石卸料流量的关系为 = 7.05613( )。矿石粒径越小,冲击气流越大,粉尘浓度越高。最大冲击风速与粒径的关系为 = 1.54000( )。粉尘浓度与矿石粒径的关系为 = 30.45323( )。最大冲击风速越大,产生的粉尘越多。自然风流的存在最初会加速粉尘扩散速度并增加粉尘浓度,但随着自然风流的增加,扩散效应会逐渐降低粉尘浓度。矿堆高度的增加会使冲击风的速度和影响范围不断减小,但对粉尘浓度的影响较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ba7/7818640/93f542a4bfd8/ao0c05598_0002.jpg

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