Dynamic Analysis for a Reciprocating Compressor System with Clearance Fault

In order to explore the failure mechanism of a reciprocating compressor system with clearance fault, we implemented a computational framework whereby a simulation model of the mechanism is established using ADAMS software in this paper, and a typical reciprocating compressor model is introduced to v...

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Main Authors: Shungen Xiao, Qingfeng Xiao, Mengmeng Song, Zexiong Zhang
Format: Article
Language:English
Published: MDPI AG 2021-11-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/11/23/11295
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author Shungen Xiao
Qingfeng Xiao
Mengmeng Song
Zexiong Zhang
author_facet Shungen Xiao
Qingfeng Xiao
Mengmeng Song
Zexiong Zhang
author_sort Shungen Xiao
collection DOAJ
description In order to explore the failure mechanism of a reciprocating compressor system with clearance fault, we implemented a computational framework whereby a simulation model of the mechanism is established using ADAMS software in this paper, and a typical reciprocating compressor model is introduced to validate the design model. In this work, the joint clearance faults between the crankshaft and linkage, between the linkage and crosshead, and in both locations are taken into account computationally. These faults are one of the major causes of vibration. Through dynamic calculation and analysis of a system with clearance fault, the simulated results show that these clearance faults directly influence the vibration. The larger the gap size, the more severe the vibration and the higher the amplitude of the vibration. Furthermore, the clearance number also affects the vibration greatly.
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spelling doaj.art-3369b7d8b1f842b48084b3483471dfe82023-11-23T02:05:48ZengMDPI AGApplied Sciences2076-34172021-11-0111231129510.3390/app112311295Dynamic Analysis for a Reciprocating Compressor System with Clearance FaultShungen Xiao0Qingfeng Xiao1Mengmeng Song2Zexiong Zhang3College of Information, Mechanical and Electrical Engineering, Ningde Normal University, Ningde 352100, ChinaSchool of Mechatronic Engineering and Automation, Shanghai University, Shanghai 200072, ChinaCollege of Information, Mechanical and Electrical Engineering, Ningde Normal University, Ningde 352100, ChinaCollege of Information, Mechanical and Electrical Engineering, Ningde Normal University, Ningde 352100, ChinaIn order to explore the failure mechanism of a reciprocating compressor system with clearance fault, we implemented a computational framework whereby a simulation model of the mechanism is established using ADAMS software in this paper, and a typical reciprocating compressor model is introduced to validate the design model. In this work, the joint clearance faults between the crankshaft and linkage, between the linkage and crosshead, and in both locations are taken into account computationally. These faults are one of the major causes of vibration. Through dynamic calculation and analysis of a system with clearance fault, the simulated results show that these clearance faults directly influence the vibration. The larger the gap size, the more severe the vibration and the higher the amplitude of the vibration. Furthermore, the clearance number also affects the vibration greatly.https://www.mdpi.com/2076-3417/11/23/11295computational analysisreciprocating compressortranslational mechanismclearance faultvibration
spellingShingle Shungen Xiao
Qingfeng Xiao
Mengmeng Song
Zexiong Zhang
Dynamic Analysis for a Reciprocating Compressor System with Clearance Fault
Applied Sciences
computational analysis
reciprocating compressor
translational mechanism
clearance fault
vibration
title Dynamic Analysis for a Reciprocating Compressor System with Clearance Fault
title_full Dynamic Analysis for a Reciprocating Compressor System with Clearance Fault
title_fullStr Dynamic Analysis for a Reciprocating Compressor System with Clearance Fault
title_full_unstemmed Dynamic Analysis for a Reciprocating Compressor System with Clearance Fault
title_short Dynamic Analysis for a Reciprocating Compressor System with Clearance Fault
title_sort dynamic analysis for a reciprocating compressor system with clearance fault
topic computational analysis
reciprocating compressor
translational mechanism
clearance fault
vibration
url https://www.mdpi.com/2076-3417/11/23/11295
work_keys_str_mv AT shungenxiao dynamicanalysisforareciprocatingcompressorsystemwithclearancefault
AT qingfengxiao dynamicanalysisforareciprocatingcompressorsystemwithclearancefault
AT mengmengsong dynamicanalysisforareciprocatingcompressorsystemwithclearancefault
AT zexiongzhang dynamicanalysisforareciprocatingcompressorsystemwithclearancefault