The Study of Three-Dimensional Granular Stream Flowing through the Test Hopper-Shaped Target

The experiments are carried out in a three-dimensional channel with a screw conveyor, which plays the role of granular drives for the granular flow system and determines the injection of granular in the test target section. The jam-to-dense transition of granular flow is studied with the different i...

Full description

Bibliographic Details
Main Authors: Chengwen Qiang, Weifeng Yang, Long Li, Fei Wang, Weiping Deng, Qiang Zhao, Cong Liu, Xueying Zhang
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Science and Technology of Nuclear Installations
Online Access:http://dx.doi.org/10.1155/2020/9564879
id doaj-9bd14aca022f46d09f18f08c55231d3d
record_format Article
spelling doaj-9bd14aca022f46d09f18f08c55231d3d2020-11-25T03:59:17ZengHindawi LimitedScience and Technology of Nuclear Installations1687-60751687-60832020-01-01202010.1155/2020/95648799564879The Study of Three-Dimensional Granular Stream Flowing through the Test Hopper-Shaped TargetChengwen Qiang0Weifeng Yang1Long Li2Fei Wang3Weiping Deng4Qiang Zhao5Cong Liu6Xueying Zhang7Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, ChinaInstitute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, ChinaInstitute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, ChinaInstitute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, ChinaInstitute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, ChinaInstitute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, ChinaInstitute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, ChinaInstitute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, ChinaThe experiments are carried out in a three-dimensional channel with a screw conveyor, which plays the role of granular drives for the granular flow system and determines the injection of granular in the test target section. The jam-to-dense transition of granular flow is studied with the different inclination angle. The results show that, with a fixed diameter of hopper orifice and initial filling position, there is a change from jam to dense when the inclination angle larger than 22°. Variation of the flow rate with elevated frequency of the screw conveyor is further studied. The flow pattern is changed from dilute to dense with increasing rotation frequency of the screw rod. When the rotation frequency is larger than 5 Hz, the flow is dense. The dynamic balance of the interface between dilute to dense granular is observed in the main target section. We further research the dynamic interface by measuring the highest and lowest location with time and also simulate the gravity flow rate and screw conveyor flow rate with EDEM. From the results, we find that the interface between dilute flow and dense flow is influenced by the combined action of crew conveyor flow and dense gravity flow.http://dx.doi.org/10.1155/2020/9564879
collection DOAJ
language English
format Article
sources DOAJ
author Chengwen Qiang
Weifeng Yang
Long Li
Fei Wang
Weiping Deng
Qiang Zhao
Cong Liu
Xueying Zhang
spellingShingle Chengwen Qiang
Weifeng Yang
Long Li
Fei Wang
Weiping Deng
Qiang Zhao
Cong Liu
Xueying Zhang
The Study of Three-Dimensional Granular Stream Flowing through the Test Hopper-Shaped Target
Science and Technology of Nuclear Installations
author_facet Chengwen Qiang
Weifeng Yang
Long Li
Fei Wang
Weiping Deng
Qiang Zhao
Cong Liu
Xueying Zhang
author_sort Chengwen Qiang
title The Study of Three-Dimensional Granular Stream Flowing through the Test Hopper-Shaped Target
title_short The Study of Three-Dimensional Granular Stream Flowing through the Test Hopper-Shaped Target
title_full The Study of Three-Dimensional Granular Stream Flowing through the Test Hopper-Shaped Target
title_fullStr The Study of Three-Dimensional Granular Stream Flowing through the Test Hopper-Shaped Target
title_full_unstemmed The Study of Three-Dimensional Granular Stream Flowing through the Test Hopper-Shaped Target
title_sort study of three-dimensional granular stream flowing through the test hopper-shaped target
publisher Hindawi Limited
series Science and Technology of Nuclear Installations
issn 1687-6075
1687-6083
publishDate 2020-01-01
description The experiments are carried out in a three-dimensional channel with a screw conveyor, which plays the role of granular drives for the granular flow system and determines the injection of granular in the test target section. The jam-to-dense transition of granular flow is studied with the different inclination angle. The results show that, with a fixed diameter of hopper orifice and initial filling position, there is a change from jam to dense when the inclination angle larger than 22°. Variation of the flow rate with elevated frequency of the screw conveyor is further studied. The flow pattern is changed from dilute to dense with increasing rotation frequency of the screw rod. When the rotation frequency is larger than 5 Hz, the flow is dense. The dynamic balance of the interface between dilute to dense granular is observed in the main target section. We further research the dynamic interface by measuring the highest and lowest location with time and also simulate the gravity flow rate and screw conveyor flow rate with EDEM. From the results, we find that the interface between dilute flow and dense flow is influenced by the combined action of crew conveyor flow and dense gravity flow.
url http://dx.doi.org/10.1155/2020/9564879
work_keys_str_mv AT chengwenqiang thestudyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT weifengyang thestudyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT longli thestudyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT feiwang thestudyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT weipingdeng thestudyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT qiangzhao thestudyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT congliu thestudyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT xueyingzhang thestudyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT chengwenqiang studyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT weifengyang studyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT longli studyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT feiwang studyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT weipingdeng studyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT qiangzhao studyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT congliu studyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
AT xueyingzhang studyofthreedimensionalgranularstreamflowingthroughthetesthoppershapedtarget
_version_ 1715073315521953792