Analysis and Prediction of Flow-Induced Vibration of Convection Pipe for 200 t/h D Type Gas Boiler

This paper is aimed at the analysis and prediction of the fluid-induced vibration phenomenon in the convection tube bundle area caused by Karman vortex street shedding in the background of a 200 t/h large-capacity D-type gas boiler. Based on the numerical simulation of flue heat state flow field and...

Full description

Bibliographic Details
Main Authors: Shouguang Yao, Xinyu Huang, Linglong Zhang, Huiyi Mao, Xiaofei Sun
Format: Article
Language:English
Published: MDPI AG 2022-04-01
Series:Axioms
Subjects:
Online Access:https://www.mdpi.com/2075-1680/11/4/163
_version_ 1827621680499916800
author Shouguang Yao
Xinyu Huang
Linglong Zhang
Huiyi Mao
Xiaofei Sun
author_facet Shouguang Yao
Xinyu Huang
Linglong Zhang
Huiyi Mao
Xiaofei Sun
author_sort Shouguang Yao
collection DOAJ
description This paper is aimed at the analysis and prediction of the fluid-induced vibration phenomenon in the convection tube bundle area caused by Karman vortex street shedding in the background of a 200 t/h large-capacity D-type gas boiler. Based on the numerical simulation of flue heat state flow field and fast Fourier transform, the lift coefficient curve of different monitoring areas and the corresponding Karman vortex street shedding frequency are obtained. The accuracy of the analysis model is validated by comparing Karman vortex shedding frequency with acoustic equipment standing wave frequency. In order to meet the design requirements of the 200 t/h D-type gas boiler for reliable and stable operation, the vibration characteristics and variation rules of a convection tube bundle in a D-type boiler under different working conditions are predicted.
first_indexed 2024-03-09T11:09:45Z
format Article
id doaj.art-12f024af2fcd490d99621ee88ce7c6a2
institution Directory Open Access Journal
issn 2075-1680
language English
last_indexed 2024-03-09T11:09:45Z
publishDate 2022-04-01
publisher MDPI AG
record_format Article
series Axioms
spelling doaj.art-12f024af2fcd490d99621ee88ce7c6a22023-12-01T00:48:24ZengMDPI AGAxioms2075-16802022-04-0111416310.3390/axioms11040163Analysis and Prediction of Flow-Induced Vibration of Convection Pipe for 200 t/h D Type Gas BoilerShouguang Yao0Xinyu Huang1Linglong Zhang2Huiyi Mao3Xiaofei Sun4School of Energy and Power Engineering, Jiangsu University of Science and Technology, Zhenjiang 212100, ChinaSchool of Energy and Power Engineering, Jiangsu University of Science and Technology, Zhenjiang 212100, ChinaSchool of Energy and Power Engineering, Jiangsu University of Science and Technology, Zhenjiang 212100, ChinaSchool of Energy and Power Engineering, Jiangsu University of Science and Technology, Zhenjiang 212100, ChinaKey Laboratory of Energy Thermal Conversion and Control of Ministry of Education, School of Energy and Environment, Southeast University, Nanjing 210096, ChinaThis paper is aimed at the analysis and prediction of the fluid-induced vibration phenomenon in the convection tube bundle area caused by Karman vortex street shedding in the background of a 200 t/h large-capacity D-type gas boiler. Based on the numerical simulation of flue heat state flow field and fast Fourier transform, the lift coefficient curve of different monitoring areas and the corresponding Karman vortex street shedding frequency are obtained. The accuracy of the analysis model is validated by comparing Karman vortex shedding frequency with acoustic equipment standing wave frequency. In order to meet the design requirements of the 200 t/h D-type gas boiler for reliable and stable operation, the vibration characteristics and variation rules of a convection tube bundle in a D-type boiler under different working conditions are predicted.https://www.mdpi.com/2075-1680/11/4/163D-type gas boilernumerical simulationKarman vortex sheddingflow-induced vibration
spellingShingle Shouguang Yao
Xinyu Huang
Linglong Zhang
Huiyi Mao
Xiaofei Sun
Analysis and Prediction of Flow-Induced Vibration of Convection Pipe for 200 t/h D Type Gas Boiler
Axioms
D-type gas boiler
numerical simulation
Karman vortex shedding
flow-induced vibration
title Analysis and Prediction of Flow-Induced Vibration of Convection Pipe for 200 t/h D Type Gas Boiler
title_full Analysis and Prediction of Flow-Induced Vibration of Convection Pipe for 200 t/h D Type Gas Boiler
title_fullStr Analysis and Prediction of Flow-Induced Vibration of Convection Pipe for 200 t/h D Type Gas Boiler
title_full_unstemmed Analysis and Prediction of Flow-Induced Vibration of Convection Pipe for 200 t/h D Type Gas Boiler
title_short Analysis and Prediction of Flow-Induced Vibration of Convection Pipe for 200 t/h D Type Gas Boiler
title_sort analysis and prediction of flow induced vibration of convection pipe for 200 t h d type gas boiler
topic D-type gas boiler
numerical simulation
Karman vortex shedding
flow-induced vibration
url https://www.mdpi.com/2075-1680/11/4/163
work_keys_str_mv AT shouguangyao analysisandpredictionofflowinducedvibrationofconvectionpipefor200thdtypegasboiler
AT xinyuhuang analysisandpredictionofflowinducedvibrationofconvectionpipefor200thdtypegasboiler
AT linglongzhang analysisandpredictionofflowinducedvibrationofconvectionpipefor200thdtypegasboiler
AT huiyimao analysisandpredictionofflowinducedvibrationofconvectionpipefor200thdtypegasboiler
AT xiaofeisun analysisandpredictionofflowinducedvibrationofconvectionpipefor200thdtypegasboiler