Fluidity Study on Chemical Behavior of Bingham Materials in Pipe Transportation

Bingham material has commonly been used to control subsidence damage caused by underground coal mining. This paper discusses the Bingham materials fluidity characteristics in the pipe transportation. A general description about the components of the Bingham materials is provided involving the variou...

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Main Authors: Jie Yang, Baogui Yang, Tao Li, Mingming Yu
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2018-12-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/9459
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spelling doaj-303f4a5e1c894604ba76acf5de48a7bc2021-02-16T21:12:03ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162018-12-017110.3303/CET1871176Fluidity Study on Chemical Behavior of Bingham Materials in Pipe TransportationJie YangBaogui YangTao LiMingming YuBingham material has commonly been used to control subsidence damage caused by underground coal mining. This paper discusses the Bingham materials fluidity characteristics in the pipe transportation. A general description about the components of the Bingham materials is provided involving the various chemical behavior and rheological performance. The flow characteristics in pipeline has been simulated in the straight pipe and 90° elbow pipe respectively combined with the pressure loss and conveying velocity distribution. With the help of the commercial Computational Fluid Dynamic (CFD) code FLUENT, the modeling is conducted with various materials feeding velocity. These results show the local resistance loss in bending pipe is significantly higher than the resistance in the straight pipe under the same condition associated with Bingham materials transportation. The velocity distribution of the slurry solid particle in the slurry movement forward is more decentralize as the increasing hydraulic inlet velocity. Bingham materials fluidity characteristics based on different chemical behavior was concluded in the paper.https://www.cetjournal.it/index.php/cet/article/view/9459
collection DOAJ
language English
format Article
sources DOAJ
author Jie Yang
Baogui Yang
Tao Li
Mingming Yu
spellingShingle Jie Yang
Baogui Yang
Tao Li
Mingming Yu
Fluidity Study on Chemical Behavior of Bingham Materials in Pipe Transportation
Chemical Engineering Transactions
author_facet Jie Yang
Baogui Yang
Tao Li
Mingming Yu
author_sort Jie Yang
title Fluidity Study on Chemical Behavior of Bingham Materials in Pipe Transportation
title_short Fluidity Study on Chemical Behavior of Bingham Materials in Pipe Transportation
title_full Fluidity Study on Chemical Behavior of Bingham Materials in Pipe Transportation
title_fullStr Fluidity Study on Chemical Behavior of Bingham Materials in Pipe Transportation
title_full_unstemmed Fluidity Study on Chemical Behavior of Bingham Materials in Pipe Transportation
title_sort fluidity study on chemical behavior of bingham materials in pipe transportation
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2018-12-01
description Bingham material has commonly been used to control subsidence damage caused by underground coal mining. This paper discusses the Bingham materials fluidity characteristics in the pipe transportation. A general description about the components of the Bingham materials is provided involving the various chemical behavior and rheological performance. The flow characteristics in pipeline has been simulated in the straight pipe and 90° elbow pipe respectively combined with the pressure loss and conveying velocity distribution. With the help of the commercial Computational Fluid Dynamic (CFD) code FLUENT, the modeling is conducted with various materials feeding velocity. These results show the local resistance loss in bending pipe is significantly higher than the resistance in the straight pipe under the same condition associated with Bingham materials transportation. The velocity distribution of the slurry solid particle in the slurry movement forward is more decentralize as the increasing hydraulic inlet velocity. Bingham materials fluidity characteristics based on different chemical behavior was concluded in the paper.
url https://www.cetjournal.it/index.php/cet/article/view/9459
work_keys_str_mv AT jieyang fluiditystudyonchemicalbehaviorofbinghammaterialsinpipetransportation
AT baoguiyang fluiditystudyonchemicalbehaviorofbinghammaterialsinpipetransportation
AT taoli fluiditystudyonchemicalbehaviorofbinghammaterialsinpipetransportation
AT mingmingyu fluiditystudyonchemicalbehaviorofbinghammaterialsinpipetransportation
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