Experimental study on thermal and mechanical properties of cemented paste backfill with phase change material

The structural safety and thermal properties of cemented paste backfill (CPB) are the key factors to realize geothermal exploitation by using CPB. In this paper, taking the gold tailing-based consolidated backfill body as research object, thermal conductivity, specific heat capacity, density and com...

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Main Authors: Xiaoyan Zhang, Muyan Xu, Lang Liu, Chao Huan, Yujiao Zhao, Chongchong Qi, KI-IL Song
Format: Article
Language:English
Published: Elsevier 2020-03-01
Series:Journal of Materials Research and Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785419318435
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spelling doaj-744f681bde734bc3a84089f978a0bb062020-11-25T03:41:54ZengElsevierJournal of Materials Research and Technology2238-78542020-03-019221642175Experimental study on thermal and mechanical properties of cemented paste backfill with phase change materialXiaoyan Zhang0Muyan Xu1Lang Liu2Chao Huan3Yujiao Zhao4Chongchong Qi5KI-IL Song6Energy School, Xi'an University of Science and Technology, Xi'an, 710054, ChinaEnergy School, Xi'an University of Science and Technology, Xi'an, 710054, ChinaEnergy School, Xi'an University of Science and Technology, Xi'an, 710054, China; Key Laboratory of Western Mines and Hazards Prevention, Ministry of Education of China, Xi’an, 710054, China; Corresponding author.Energy School, Xi'an University of Science and Technology, Xi'an, 710054, ChinaEnergy School, Xi'an University of Science and Technology, Xi'an, 710054, ChinaSchool of Civil, Environmental and Mining Engineering, University of Western Australia, Perth, 6009, AustraliaDepartment of Civil Engineering, Inha University, Incheon 402-751, South KoreaThe structural safety and thermal properties of cemented paste backfill (CPB) are the key factors to realize geothermal exploitation by using CPB. In this paper, taking the gold tailing-based consolidated backfill body as research object, thermal conductivity, specific heat capacity, density and compressive strength of backfill body were tested by changing the proportioning of backfill materials, the effects of slurry concentration, cement-tailing ratio, phase change material (PCM) addition and other factors on thermal and mechanical properties of backfill body were analyzed. The results show: for backfill body without paraffin, the larger the slurry concentration or cement-tailing ratio, the better the thermal conductivity, specific heat capacity, density and compressive strength. The addition of PCM, paraffin, makes the structure of backfill body lose, and thermal conductivity, density and compressive strength decrease, the average reduction rate is 25.6 %, 12.3 % and 18.7 % respectively, but specific heat capacity increases, the average growth rate is 12.5 %. The increase of specific heat capacity and the existence of phase-change latent heat make backfill body have better heat storage performance. When paraffin is added to backfill body, the larger the cement-tailing ratio, the higher the increase degree of compressive strength with increasing slurry concentration; the higher the slurry concentration, the more obvious the effect of increasing cement-tailing ratio on improvement of compressive strength. Therefore, the weakening of mechanical properties for backfill body caused by the addition of PCM can be improved by increasing slurry concentration or cement-tailing ratio appropriately. The research results provide basic data for the research on thermal and mechanical properties of backfill body with PCM, and also provide theoretical reference for the research on technical system of ore deposit-geothermal collaborative mining, which is mainly based on thermal storage backfill body. Keywords: Cemented paste backfill, Heat storage, Mechanical properties, Thermal properties, Paraffinhttp://www.sciencedirect.com/science/article/pii/S2238785419318435
collection DOAJ
language English
format Article
sources DOAJ
author Xiaoyan Zhang
Muyan Xu
Lang Liu
Chao Huan
Yujiao Zhao
Chongchong Qi
KI-IL Song
spellingShingle Xiaoyan Zhang
Muyan Xu
Lang Liu
Chao Huan
Yujiao Zhao
Chongchong Qi
KI-IL Song
Experimental study on thermal and mechanical properties of cemented paste backfill with phase change material
Journal of Materials Research and Technology
author_facet Xiaoyan Zhang
Muyan Xu
Lang Liu
Chao Huan
Yujiao Zhao
Chongchong Qi
KI-IL Song
author_sort Xiaoyan Zhang
title Experimental study on thermal and mechanical properties of cemented paste backfill with phase change material
title_short Experimental study on thermal and mechanical properties of cemented paste backfill with phase change material
title_full Experimental study on thermal and mechanical properties of cemented paste backfill with phase change material
title_fullStr Experimental study on thermal and mechanical properties of cemented paste backfill with phase change material
title_full_unstemmed Experimental study on thermal and mechanical properties of cemented paste backfill with phase change material
title_sort experimental study on thermal and mechanical properties of cemented paste backfill with phase change material
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2020-03-01
description The structural safety and thermal properties of cemented paste backfill (CPB) are the key factors to realize geothermal exploitation by using CPB. In this paper, taking the gold tailing-based consolidated backfill body as research object, thermal conductivity, specific heat capacity, density and compressive strength of backfill body were tested by changing the proportioning of backfill materials, the effects of slurry concentration, cement-tailing ratio, phase change material (PCM) addition and other factors on thermal and mechanical properties of backfill body were analyzed. The results show: for backfill body without paraffin, the larger the slurry concentration or cement-tailing ratio, the better the thermal conductivity, specific heat capacity, density and compressive strength. The addition of PCM, paraffin, makes the structure of backfill body lose, and thermal conductivity, density and compressive strength decrease, the average reduction rate is 25.6 %, 12.3 % and 18.7 % respectively, but specific heat capacity increases, the average growth rate is 12.5 %. The increase of specific heat capacity and the existence of phase-change latent heat make backfill body have better heat storage performance. When paraffin is added to backfill body, the larger the cement-tailing ratio, the higher the increase degree of compressive strength with increasing slurry concentration; the higher the slurry concentration, the more obvious the effect of increasing cement-tailing ratio on improvement of compressive strength. Therefore, the weakening of mechanical properties for backfill body caused by the addition of PCM can be improved by increasing slurry concentration or cement-tailing ratio appropriately. The research results provide basic data for the research on thermal and mechanical properties of backfill body with PCM, and also provide theoretical reference for the research on technical system of ore deposit-geothermal collaborative mining, which is mainly based on thermal storage backfill body. Keywords: Cemented paste backfill, Heat storage, Mechanical properties, Thermal properties, Paraffin
url http://www.sciencedirect.com/science/article/pii/S2238785419318435
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