Experimental Study and Application of Rheological Properties of Coal Gangue-Fly Ash Backfill Slurry

From the perspective of resource recovery and environmental protection, coal gangue-fly ash cemented backfill coal mining has become an important direction for the green development of coal mines in recent years. Analysis of the rheological parameters of backfill slurry is the basic principle to des...

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Main Authors: Yumin Wang, Yucheng Huang, Yuxin Hao
Format: Article
Language:English
Published: MDPI AG 2020-03-01
Series:Processes
Subjects:
Online Access:https://www.mdpi.com/2227-9717/8/3/284
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spelling doaj-229ffea64ea24fef9744e1a150a7c7bb2020-11-25T02:57:37ZengMDPI AGProcesses2227-97172020-03-018328410.3390/pr8030284pr8030284Experimental Study and Application of Rheological Properties of Coal Gangue-Fly Ash Backfill SlurryYumin Wang0Yucheng Huang1Yuxin Hao2School of Energy and Mining Engineering, China University of Mining & Technology, D11 Xueyuan Road, Haidian District, Beijing 100083, ChinaSchool of Energy and Mining Engineering, China University of Mining & Technology, D11 Xueyuan Road, Haidian District, Beijing 100083, ChinaSchool of Energy and Mining Engineering, China University of Mining & Technology, D11 Xueyuan Road, Haidian District, Beijing 100083, ChinaFrom the perspective of resource recovery and environmental protection, coal gangue-fly ash cemented backfill coal mining has become an important direction for the green development of coal mines in recent years. Analysis of the rheological parameters of backfill slurry is the basic principle to design a backfill pipeline system. Coal gangue-fly ash backfill slurry has a mass concentration of 76% to 79% and a maximum particle size 20 mm. Therefore, it is difficult to use conventional rheometers for experimental analyses of the rheological parameters of such fluids. We developed a rheometer for high-concentration coal gangue backfill slurry (HCGS rheometer) based on the coal gangue-fly ash backfill practice of Gonggeying Mine, and analyzed the rheological properties of the backfill slurry. The experimental results showed that the Reynolds number of the coal gangue-fly ash backfill slurry was much smaller than the critical Reynolds number, indicating the flow state in the pipeline was laminar. Based on these results, it may be more appropriate to control the mass concentration to 77% to 78%, and the suggested fly ash content is 25%. This work provides a scientific basis to optimize the backfill parameters and pipeline system in coal mines.https://www.mdpi.com/2227-9717/8/3/284ganguefly ashbackfill miningrheological properties
collection DOAJ
language English
format Article
sources DOAJ
author Yumin Wang
Yucheng Huang
Yuxin Hao
spellingShingle Yumin Wang
Yucheng Huang
Yuxin Hao
Experimental Study and Application of Rheological Properties of Coal Gangue-Fly Ash Backfill Slurry
Processes
gangue
fly ash
backfill mining
rheological properties
author_facet Yumin Wang
Yucheng Huang
Yuxin Hao
author_sort Yumin Wang
title Experimental Study and Application of Rheological Properties of Coal Gangue-Fly Ash Backfill Slurry
title_short Experimental Study and Application of Rheological Properties of Coal Gangue-Fly Ash Backfill Slurry
title_full Experimental Study and Application of Rheological Properties of Coal Gangue-Fly Ash Backfill Slurry
title_fullStr Experimental Study and Application of Rheological Properties of Coal Gangue-Fly Ash Backfill Slurry
title_full_unstemmed Experimental Study and Application of Rheological Properties of Coal Gangue-Fly Ash Backfill Slurry
title_sort experimental study and application of rheological properties of coal gangue-fly ash backfill slurry
publisher MDPI AG
series Processes
issn 2227-9717
publishDate 2020-03-01
description From the perspective of resource recovery and environmental protection, coal gangue-fly ash cemented backfill coal mining has become an important direction for the green development of coal mines in recent years. Analysis of the rheological parameters of backfill slurry is the basic principle to design a backfill pipeline system. Coal gangue-fly ash backfill slurry has a mass concentration of 76% to 79% and a maximum particle size 20 mm. Therefore, it is difficult to use conventional rheometers for experimental analyses of the rheological parameters of such fluids. We developed a rheometer for high-concentration coal gangue backfill slurry (HCGS rheometer) based on the coal gangue-fly ash backfill practice of Gonggeying Mine, and analyzed the rheological properties of the backfill slurry. The experimental results showed that the Reynolds number of the coal gangue-fly ash backfill slurry was much smaller than the critical Reynolds number, indicating the flow state in the pipeline was laminar. Based on these results, it may be more appropriate to control the mass concentration to 77% to 78%, and the suggested fly ash content is 25%. This work provides a scientific basis to optimize the backfill parameters and pipeline system in coal mines.
topic gangue
fly ash
backfill mining
rheological properties
url https://www.mdpi.com/2227-9717/8/3/284
work_keys_str_mv AT yuminwang experimentalstudyandapplicationofrheologicalpropertiesofcoalgangueflyashbackfillslurry
AT yuchenghuang experimentalstudyandapplicationofrheologicalpropertiesofcoalgangueflyashbackfillslurry
AT yuxinhao experimentalstudyandapplicationofrheologicalpropertiesofcoalgangueflyashbackfillslurry
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