Study on Side-entering Agitator Flow Field Simulation in Large Scale Biogas Digester

Based on the CFD software Fluent, the multi-reference system method, the RNG κ-ε turbulence model and the pressure-velocity coupled SIMPLEC algorithm are applied to simulate the flow field of a single side-entering agitator in a large biogas digester. And the impact of different installation angle,...

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Main Authors: Xinxin Li, Yadong Cao, Zhenfeng Huang, Jingfu Liang, Gang Cheng, Rui Pan
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201815305003
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spelling doaj-c28778a2f5134b4c9c096ea173b321bd2021-02-02T08:02:50ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011530500310.1051/matecconf/201815305003matecconf_icmme2018_05003Study on Side-entering Agitator Flow Field Simulation in Large Scale Biogas DigesterXinxin LiYadong CaoZhenfeng HuangJingfu LiangGang ChengRui PanBased on the CFD software Fluent, the multi-reference system method, the RNG κ-ε turbulence model and the pressure-velocity coupled SIMPLEC algorithm are applied to simulate the flow field of a single side-entering agitator in a large biogas digester. And the impact of different installation angle, agitator-to-bottom height, agitating speed and agitator diameter on the agitating power, the effective area percentage and the effective power ratio are analyzed. The results show that: 1) when the agitating speed is more than 450r/min and the agitating diameter is more than 750 mm, the effective area percentage reaches the maximum value; 2) when the horizontal angle is 30 °, the agitating effect is the best; 3) when the vertical angle is inclined to the bottom and the agitator-to-bottom height is less than 8 m, it is helpful to prevent the sediment from appearing. The results of numerical simulation provide a theoretical basis for the design to optimize the agitator.https://doi.org/10.1051/matecconf/201815305003
collection DOAJ
language English
format Article
sources DOAJ
author Xinxin Li
Yadong Cao
Zhenfeng Huang
Jingfu Liang
Gang Cheng
Rui Pan
spellingShingle Xinxin Li
Yadong Cao
Zhenfeng Huang
Jingfu Liang
Gang Cheng
Rui Pan
Study on Side-entering Agitator Flow Field Simulation in Large Scale Biogas Digester
MATEC Web of Conferences
author_facet Xinxin Li
Yadong Cao
Zhenfeng Huang
Jingfu Liang
Gang Cheng
Rui Pan
author_sort Xinxin Li
title Study on Side-entering Agitator Flow Field Simulation in Large Scale Biogas Digester
title_short Study on Side-entering Agitator Flow Field Simulation in Large Scale Biogas Digester
title_full Study on Side-entering Agitator Flow Field Simulation in Large Scale Biogas Digester
title_fullStr Study on Side-entering Agitator Flow Field Simulation in Large Scale Biogas Digester
title_full_unstemmed Study on Side-entering Agitator Flow Field Simulation in Large Scale Biogas Digester
title_sort study on side-entering agitator flow field simulation in large scale biogas digester
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Based on the CFD software Fluent, the multi-reference system method, the RNG κ-ε turbulence model and the pressure-velocity coupled SIMPLEC algorithm are applied to simulate the flow field of a single side-entering agitator in a large biogas digester. And the impact of different installation angle, agitator-to-bottom height, agitating speed and agitator diameter on the agitating power, the effective area percentage and the effective power ratio are analyzed. The results show that: 1) when the agitating speed is more than 450r/min and the agitating diameter is more than 750 mm, the effective area percentage reaches the maximum value; 2) when the horizontal angle is 30 °, the agitating effect is the best; 3) when the vertical angle is inclined to the bottom and the agitator-to-bottom height is less than 8 m, it is helpful to prevent the sediment from appearing. The results of numerical simulation provide a theoretical basis for the design to optimize the agitator.
url https://doi.org/10.1051/matecconf/201815305003
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AT yadongcao studyonsideenteringagitatorflowfieldsimulationinlargescalebiogasdigester
AT zhenfenghuang studyonsideenteringagitatorflowfieldsimulationinlargescalebiogasdigester
AT jingfuliang studyonsideenteringagitatorflowfieldsimulationinlargescalebiogasdigester
AT gangcheng studyonsideenteringagitatorflowfieldsimulationinlargescalebiogasdigester
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