The Optimization of Forced Ventilation Parameters on Blind Roadway Based on Fluent Numerical Simulation
In view of the fact that toxic and harmful gases are not easily discharged after blasting on the mining face of blind roadway in underground mine, it is necessary to optimize the forced ventilation parameters of this kind roadway. Taking a Fluorite mine as example, the distribution and diffusion law...
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Published in | 2017 10th International Symposium on Computational Intelligence and Design (ISCID) Vol. 1; pp. 260 - 263 |
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Main Authors | , , , , , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
01.12.2017
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Subjects | |
Online Access | Get full text |
ISSN | 2473-3547 |
DOI | 10.1109/ISCID.2017.85 |
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Abstract | In view of the fact that toxic and harmful gases are not easily discharged after blasting on the mining face of blind roadway in underground mine, it is necessary to optimize the forced ventilation parameters of this kind roadway. Taking a Fluorite mine as example, the distribution and diffusion law of toxic and harmful gases after blasting were analyzed by using Fluent software through the numerical simulation of component transportation. Besides, the numerical simulation was carried out to study some optimum conditions, such as design of the fan outlet, diameter of the air duct and magnitude of the wind speed. The study results indicates that: the best distance between the fan and digging surface is about 10m; the fan diameter should be no more than 400mm; the wind speed of the fan outlet should be kept within the range between 8m/s to 10m/s. The above conclusions can provide reference and basis for technical renovation of the mine ventilation. |
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AbstractList | In view of the fact that toxic and harmful gases are not easily discharged after blasting on the mining face of blind roadway in underground mine, it is necessary to optimize the forced ventilation parameters of this kind roadway. Taking a Fluorite mine as example, the distribution and diffusion law of toxic and harmful gases after blasting were analyzed by using Fluent software through the numerical simulation of component transportation. Besides, the numerical simulation was carried out to study some optimum conditions, such as design of the fan outlet, diameter of the air duct and magnitude of the wind speed. The study results indicates that: the best distance between the fan and digging surface is about 10m; the fan diameter should be no more than 400mm; the wind speed of the fan outlet should be kept within the range between 8m/s to 10m/s. The above conclusions can provide reference and basis for technical renovation of the mine ventilation. |
Author | Fuliang, Jiang Wenchao, Yang Ming, Li Shuai, Zhang Xiangyang, Li Zengguang, Yang Xiaoli, Wang |
Author_xml | – sequence: 1 givenname: Jiang surname: Fuliang fullname: Fuliang, Jiang – sequence: 2 givenname: Zhang surname: Shuai fullname: Shuai, Zhang – sequence: 3 givenname: Yang surname: Zengguang fullname: Zengguang, Yang – sequence: 4 givenname: Li surname: Xiangyang fullname: Xiangyang, Li – sequence: 5 givenname: Li surname: Ming fullname: Ming, Li – sequence: 6 givenname: Yang surname: Wenchao fullname: Wenchao, Yang – sequence: 7 givenname: Wang surname: Xiaoli fullname: Xiaoli, Wang |
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Snippet | In view of the fact that toxic and harmful gases are not easily discharged after blasting on the mining face of blind roadway in underground mine, it is... |
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StartPage | 260 |
SubjectTerms | blind roadway Ducts Fans Fuel processing industries Mathematical model numerical simulation Surface discharges toxic and harmful gases underground mine ventilation Wind speed |
Title | The Optimization of Forced Ventilation Parameters on Blind Roadway Based on Fluent Numerical Simulation |
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