Numerical Simulation of the Flow Field Characteristics of Stationary Two-Pipe Vehicles under Different Spacings

The piped hydraulic transportation of tube-contained raw material is a new long- distance transportation technology. This technology has the advantages of high efficiency, energy savings and environmental protection. The research in the published literature has mostly been limited to the speed, flow...

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Main Authors: Xiaomeng Jia, Xihuan Sun, Yongye Li
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Water
Subjects:
Online Access:https://www.mdpi.com/2073-4441/12/8/2158
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spelling doaj-ccc9d8e507a3405189b9b7b85b9d70f12020-11-25T02:31:40ZengMDPI AGWater2073-44412020-07-01122158215810.3390/w12082158Numerical Simulation of the Flow Field Characteristics of Stationary Two-Pipe Vehicles under Different SpacingsXiaomeng Jia0Xihuan Sun1Yongye Li2College of Water Resources Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, ChinaCollege of Water Resources Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, ChinaCollege of Water Resources Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, ChinaThe piped hydraulic transportation of tube-contained raw material is a new long- distance transportation technology. This technology has the advantages of high efficiency, energy savings and environmental protection. The research in the published literature has mostly been limited to the speed, flow field, pressure field and energy consumption of a single-pipe vehicle. With the continuous improvement and development of this technology, two-pipe vehicles will become the focus of future research. The change of the vehicle spacing will affect the starting speed, flow field distribution and pressure drop characteristics of the water flow within the pipeline; thus, a numerical simulation is used in this work to study the hydraulic characteristics of stationary two-pipe vehicles under different spacings and compare them with physical experiments. The results show that the simulation results are in good agreement with the experimental results, which indicates that it is feasible to study two-pipe vehicles using numerical simulation. The results also show that, as the vehicle spacing increases, the interaction between the two-pipe vehicles gradually weakens. When the vehicle spacing reaches 4 <i>l</i> (where<i> l</i> represents the length of a single-pipe vehicle), the interaction between the two-pipe vehicles becomes negligible. There is no vortex shedding in the pipeline under different vehicle spacings. This study provides a reference for choosing the proper spacing between two-pipe vehicles and provides a theoretical basis for further research on the hydraulic characteristics of two-pipe vehicles in motion.https://www.mdpi.com/2073-4441/12/8/2158two-pipe vehiclesvehicle spacingannular gap flowpressurevorticity
collection DOAJ
language English
format Article
sources DOAJ
author Xiaomeng Jia
Xihuan Sun
Yongye Li
spellingShingle Xiaomeng Jia
Xihuan Sun
Yongye Li
Numerical Simulation of the Flow Field Characteristics of Stationary Two-Pipe Vehicles under Different Spacings
Water
two-pipe vehicles
vehicle spacing
annular gap flow
pressure
vorticity
author_facet Xiaomeng Jia
Xihuan Sun
Yongye Li
author_sort Xiaomeng Jia
title Numerical Simulation of the Flow Field Characteristics of Stationary Two-Pipe Vehicles under Different Spacings
title_short Numerical Simulation of the Flow Field Characteristics of Stationary Two-Pipe Vehicles under Different Spacings
title_full Numerical Simulation of the Flow Field Characteristics of Stationary Two-Pipe Vehicles under Different Spacings
title_fullStr Numerical Simulation of the Flow Field Characteristics of Stationary Two-Pipe Vehicles under Different Spacings
title_full_unstemmed Numerical Simulation of the Flow Field Characteristics of Stationary Two-Pipe Vehicles under Different Spacings
title_sort numerical simulation of the flow field characteristics of stationary two-pipe vehicles under different spacings
publisher MDPI AG
series Water
issn 2073-4441
publishDate 2020-07-01
description The piped hydraulic transportation of tube-contained raw material is a new long- distance transportation technology. This technology has the advantages of high efficiency, energy savings and environmental protection. The research in the published literature has mostly been limited to the speed, flow field, pressure field and energy consumption of a single-pipe vehicle. With the continuous improvement and development of this technology, two-pipe vehicles will become the focus of future research. The change of the vehicle spacing will affect the starting speed, flow field distribution and pressure drop characteristics of the water flow within the pipeline; thus, a numerical simulation is used in this work to study the hydraulic characteristics of stationary two-pipe vehicles under different spacings and compare them with physical experiments. The results show that the simulation results are in good agreement with the experimental results, which indicates that it is feasible to study two-pipe vehicles using numerical simulation. The results also show that, as the vehicle spacing increases, the interaction between the two-pipe vehicles gradually weakens. When the vehicle spacing reaches 4 <i>l</i> (where<i> l</i> represents the length of a single-pipe vehicle), the interaction between the two-pipe vehicles becomes negligible. There is no vortex shedding in the pipeline under different vehicle spacings. This study provides a reference for choosing the proper spacing between two-pipe vehicles and provides a theoretical basis for further research on the hydraulic characteristics of two-pipe vehicles in motion.
topic two-pipe vehicles
vehicle spacing
annular gap flow
pressure
vorticity
url https://www.mdpi.com/2073-4441/12/8/2158
work_keys_str_mv AT xiaomengjia numericalsimulationoftheflowfieldcharacteristicsofstationarytwopipevehiclesunderdifferentspacings
AT xihuansun numericalsimulationoftheflowfieldcharacteristicsofstationarytwopipevehiclesunderdifferentspacings
AT yongyeli numericalsimulationoftheflowfieldcharacteristicsofstationarytwopipevehiclesunderdifferentspacings
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