Impact of Particle Sizes on Flow Characteristics of Slurry Pump for Deep-Sea Mining
As the core device of the deep-sea mining transport system, the slurry pump and its internal solid-liquid two-phase flow are extremely complicated; especially, the migration characteristics of particles have a great influence on the flow and wear of the pump. In order to grasp the particle motion la...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Hindawi Limited
2021-01-01
|
Series: | Shock and Vibration |
Online Access: | http://dx.doi.org/10.1155/2021/6684944 |
id |
doaj-af944eec10f647c5a41d95ccae5e9fbf |
---|---|
record_format |
Article |
spelling |
doaj-af944eec10f647c5a41d95ccae5e9fbf2021-03-15T00:01:20ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/6684944Impact of Particle Sizes on Flow Characteristics of Slurry Pump for Deep-Sea MiningRunkun Wang0Yingjie Guan1Xing Jin2Zhenji Tang3Zuchao Zhu4Xianghui Su5The Province Key Lab of Fluid Transmission TechnologyState Key Laboratory of Deep Sea Mineral Resources Development and UtilizationState Key Laboratory of Deep Sea Mineral Resources Development and UtilizationThe Province Key Lab of Fluid Transmission TechnologyThe Province Key Lab of Fluid Transmission TechnologyThe Province Key Lab of Fluid Transmission TechnologyAs the core device of the deep-sea mining transport system, the slurry pump and its internal solid-liquid two-phase flow are extremely complicated; especially, the migration characteristics of particles have a great influence on the flow and wear of the pump. In order to grasp the particle motion law inside the slurry pump, this paper took into consideration the collision effects of the particles with particles and particles with walls and calculated the unsteady flow of the solid-liquid two-phase by CFD-DEM coupling algorithm. Then, the focus was put on the spatial distribution and movement characteristics of different particle diameters (namely, 5 mm, 10 mm, and 15 mm, while volume concentration Cv is constant 5%). The results show that the stratification phenomenon gradually disappears with the increase of particle diameter, and the intensity and scale of the vortex in the guide vane also increase obviously. Besides, as the particle diameter increases, the velocity changes more drastically, and the intensity and scale of the vortex increase significantly. Under low concentration conditions, the presence of particles has a limited influence on the hydraulic performance of the pump. By comparing with the experimental results, the simulation results are in good agreement with it, which proves that the CFD-DEM simulation in this paper is effective, and the conclusions can provide theoretical support for the design and analysis of the slurry pump in engineering application.http://dx.doi.org/10.1155/2021/6684944 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Runkun Wang Yingjie Guan Xing Jin Zhenji Tang Zuchao Zhu Xianghui Su |
spellingShingle |
Runkun Wang Yingjie Guan Xing Jin Zhenji Tang Zuchao Zhu Xianghui Su Impact of Particle Sizes on Flow Characteristics of Slurry Pump for Deep-Sea Mining Shock and Vibration |
author_facet |
Runkun Wang Yingjie Guan Xing Jin Zhenji Tang Zuchao Zhu Xianghui Su |
author_sort |
Runkun Wang |
title |
Impact of Particle Sizes on Flow Characteristics of Slurry Pump for Deep-Sea Mining |
title_short |
Impact of Particle Sizes on Flow Characteristics of Slurry Pump for Deep-Sea Mining |
title_full |
Impact of Particle Sizes on Flow Characteristics of Slurry Pump for Deep-Sea Mining |
title_fullStr |
Impact of Particle Sizes on Flow Characteristics of Slurry Pump for Deep-Sea Mining |
title_full_unstemmed |
Impact of Particle Sizes on Flow Characteristics of Slurry Pump for Deep-Sea Mining |
title_sort |
impact of particle sizes on flow characteristics of slurry pump for deep-sea mining |
publisher |
Hindawi Limited |
series |
Shock and Vibration |
issn |
1875-9203 |
publishDate |
2021-01-01 |
description |
As the core device of the deep-sea mining transport system, the slurry pump and its internal solid-liquid two-phase flow are extremely complicated; especially, the migration characteristics of particles have a great influence on the flow and wear of the pump. In order to grasp the particle motion law inside the slurry pump, this paper took into consideration the collision effects of the particles with particles and particles with walls and calculated the unsteady flow of the solid-liquid two-phase by CFD-DEM coupling algorithm. Then, the focus was put on the spatial distribution and movement characteristics of different particle diameters (namely, 5 mm, 10 mm, and 15 mm, while volume concentration Cv is constant 5%). The results show that the stratification phenomenon gradually disappears with the increase of particle diameter, and the intensity and scale of the vortex in the guide vane also increase obviously. Besides, as the particle diameter increases, the velocity changes more drastically, and the intensity and scale of the vortex increase significantly. Under low concentration conditions, the presence of particles has a limited influence on the hydraulic performance of the pump. By comparing with the experimental results, the simulation results are in good agreement with it, which proves that the CFD-DEM simulation in this paper is effective, and the conclusions can provide theoretical support for the design and analysis of the slurry pump in engineering application. |
url |
http://dx.doi.org/10.1155/2021/6684944 |
work_keys_str_mv |
AT runkunwang impactofparticlesizesonflowcharacteristicsofslurrypumpfordeepseamining AT yingjieguan impactofparticlesizesonflowcharacteristicsofslurrypumpfordeepseamining AT xingjin impactofparticlesizesonflowcharacteristicsofslurrypumpfordeepseamining AT zhenjitang impactofparticlesizesonflowcharacteristicsofslurrypumpfordeepseamining AT zuchaozhu impactofparticlesizesonflowcharacteristicsofslurrypumpfordeepseamining AT xianghuisu impactofparticlesizesonflowcharacteristicsofslurrypumpfordeepseamining |
_version_ |
1714785245582065664 |