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作 者:Defeng Wang Dengwu Jiao Zhanbo Cheng Qingwen Shi Helmut Mischo
机构地区:[1]Department for Underground Mining Methods,Institute of Mining and Special Civil Engineering,Technical University of Bergakademie Freiberg,Fuchsmühlenweg 9,09599 Freiberg [2]Dresden,Germany,Department of Structural Engineering and Building Materials,Faculty of Engineering and Architecture,Ghent University,9052 Zwijnaarde,Belgium [3]School of Engineering,University of Warwick,Coventry CV47AL,UK [4]Department of Engineering,West Virginia University,Morgantown 26505,USA
出 处:《International Journal of Coal Science & Technology》2023年第2期129-145,共17页国际煤炭科学技术学报(英文)
摘 要:Disposing of coal gangue and fly-ash on the surface is a risky method with tremendous potential catastrophic consequences for the environment.Backfill mining is a promising practice for turning those hazardous wastes into functional backfill materi-als.Unfortunately,how to efficiently deliver the slurry to the desired places remains under-researched.To address this issue,the computational fluid dynamics software Fluent was used in the current study in addition to a laboratory rheological test to simulate the impact of various parameters on the evolution of pressure at a particular section of the pipeline.Furthermore,the response surface method was employed to investigate how the various components and their corresponding influencing weights interact to affect the pressure drop.This study demonstrates that the pressure drop of the slurry is highly influenced by slurry concentration,speed,and pipe diameter.While conveying speed is the main component in the bend section,pipe diameter takes over in the horizontal and vertical pipe sections.
关 键 词:Coal gangue slurry Pressure drop Numerical simulation Response surface analysis
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