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Erschienen in: Experimental Mechanics 3/2011

01.03.2011

Study of the Damping Mechanisms of Loose Spring Skirts on Vibrating Pipes

verfasst von: J. Park, S. Wang, M. J. Crocker

Erschienen in: Experimental Mechanics | Ausgabe 3/2011

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Abstract

Damping of the loose spring skirt (LSS) of a vibrating pipe under operating conditions was studied experimentally and numerically. Motion images made using a high speed charge-coupled device (CCD) camera as well as acceleration signals were analyzed in order to correlate the physical states of the LSS pipe system with the vibration transmissibility (TM) through the pipe. Experiments on the pipe undergoing harmonic excitation demonstrate that the damping of the LSS is caused by the same mechanism as with a conventional impact damper. Measurements of the acceleration TM as a function of excitation amplitude verified that the momentum exchange between the pipe and the auxiliary spring is the cause of the damping produced by the LSS pipe. Another finding of this research is that the experimental representation of the resonance shift phenomenon is related to two main operating conditions, namely: 1) the driving frequency and 2) the excitation amplitude. This research demonstrated the occurrence of the resonance shift phenomenon through experimental mapping of the system response at increasing excitation amplitudes using frequency sweep tests. Simulations of the LSS pipe system based on principal coordinate and impact damping analysis were performed in order to investigate and provide better explanations for LSS pipe system damping mechanisms. As a result of this research study, a new damping mechanism is proposed which is different from previous damping models. This research study has also addressed more practical boundary and excitation conditions for LSS pipe systems.

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Literatur
1.
Zurück zum Zitat Crocker MJ (ed) (2007) Handbook of noise and vibration control, chapters 15, 59–62 and 64. Wiley, New York Crocker MJ (ed) (2007) Handbook of noise and vibration control, chapters 15, 59–62 and 64. Wiley, New York
2.
Zurück zum Zitat Roozen B, van der Oetelaar J, Geerlings A, Vliegenthart T (2009) Source identification and noise reduction of a reciprocating compressor: a case history. IJAV 14:90–98 Roozen B, van der Oetelaar J, Geerlings A, Vliegenthart T (2009) Source identification and noise reduction of a reciprocating compressor: a case history. IJAV 14:90–98
3.
Zurück zum Zitat Randall RB (2009) The application of fault simulation to machine diagnostics and prognostics. IJAV 14:81–89 Randall RB (2009) The application of fault simulation to machine diagnostics and prognostics. IJAV 14:81–89
4.
Zurück zum Zitat Tuma J (2009) Gearbox noise and vibration prediction and control. IJAV 14:99–108 Tuma J (2009) Gearbox noise and vibration prediction and control. IJAV 14:99–108
5.
Zurück zum Zitat Simon AS, Flowers GT (2008) Adaptive disturbance rejection and stabilisation for rotor systems with internal damping. IJAV 13:73–81 Simon AS, Flowers GT (2008) Adaptive disturbance rejection and stabilisation for rotor systems with internal damping. IJAV 13:73–81
6.
Zurück zum Zitat Chavan AT, Manik DN (2008) Optimum design of vibro-acoustic systems using SEA. IJAV 13(2):15–20 Chavan AT, Manik DN (2008) Optimum design of vibro-acoustic systems using SEA. IJAV 13(2):15–20
7.
Zurück zum Zitat Nazeer MM, Afzal M, Khan AF, Ahmed N (2001) Modeling and simulation of loose spring skirt damping and control of vibrations in a multi-segment hanging cantilever. Comput Meth Appl Mech Eng 190(26–27):3511–3526MATHCrossRef Nazeer MM, Afzal M, Khan AF, Ahmed N (2001) Modeling and simulation of loose spring skirt damping and control of vibrations in a multi-segment hanging cantilever. Comput Meth Appl Mech Eng 190(26–27):3511–3526MATHCrossRef
8.
Zurück zum Zitat Bakre SV, Jangid RS, Reddy GR (2007) Response of piping system on friction support to bi-directional excitation. Nucl Eng Des 237(2):124–136CrossRef Bakre SV, Jangid RS, Reddy GR (2007) Response of piping system on friction support to bi-directional excitation. Nucl Eng Des 237(2):124–136CrossRef
9.
Zurück zum Zitat Wang S, Kang J, Park J, Kim C (2004) Design optimization of a compressor loop pipe using response surface method, Purdue, July 12–15, 2004, C088: 1–6 Wang S, Kang J, Park J, Kim C (2004) Design optimization of a compressor loop pipe using response surface method, Purdue, July 12–15, 2004, C088: 1–6
10.
Zurück zum Zitat Friend R, Kinra V (2000) Particle impact damping. J Sound Vib 233(1):93–118CrossRef Friend R, Kinra V (2000) Particle impact damping. J Sound Vib 233(1):93–118CrossRef
12.
Zurück zum Zitat Saeki M (2005) Analytical study of multi-particle damping. J Sound Vib 281(3–5):1133–1144CrossRef Saeki M (2005) Analytical study of multi-particle damping. J Sound Vib 281(3–5):1133–1144CrossRef
13.
Zurück zum Zitat Xu Z, Wang M, Chen T (2005) Particle damping for passive vibration suppression: numerical modeling and experimental investigation. J Sound Vib 279(3–5):1097–1120CrossRef Xu Z, Wang M, Chen T (2005) Particle damping for passive vibration suppression: numerical modeling and experimental investigation. J Sound Vib 279(3–5):1097–1120CrossRef
14.
Zurück zum Zitat Paget A (1937) Vibration in steam turbine buckets and damping by impacts. Engineering 143:305–307 Paget A (1937) Vibration in steam turbine buckets and damping by impacts. Engineering 143:305–307
15.
Zurück zum Zitat Popplewell N, Bapat C, McLachlan K (1983) Stable periodic vibroimpacts of an oscillator. J Sound Vib 87(4):41–59MATHCrossRef Popplewell N, Bapat C, McLachlan K (1983) Stable periodic vibroimpacts of an oscillator. J Sound Vib 87(4):41–59MATHCrossRef
16.
Zurück zum Zitat Dokainish M, Elmaraghy H (1973) Optimum design parameters for impact dampers. ASME Pap:1–7 Dokainish M, Elmaraghy H (1973) Optimum design parameters for impact dampers. ASME Pap:1–7
17.
18.
Zurück zum Zitat Dankowicz H, Zhao X (2005) Local analysis of co-dimension-one and co-dimension-two grazing bifurcations in impact microactuators. Physica D 202(3–4):238–257MathSciNetMATHCrossRef Dankowicz H, Zhao X (2005) Local analysis of co-dimension-one and co-dimension-two grazing bifurcations in impact microactuators. Physica D 202(3–4):238–257MathSciNetMATHCrossRef
19.
Zurück zum Zitat Grubin C (1956) On the theory of the acceleration damper. Trans ASME, J Appl Mech 23(3):373–378MATH Grubin C (1956) On the theory of the acceleration damper. Trans ASME, J Appl Mech 23(3):373–378MATH
20.
Zurück zum Zitat Masri SF, Caughey TK (1966) On the stability of the impact damper. J Appl Mech Trans ASME 33(3):586–592MathSciNet Masri SF, Caughey TK (1966) On the stability of the impact damper. J Appl Mech Trans ASME 33(3):586–592MathSciNet
21.
Zurück zum Zitat Masri SF (1970) General motion of impact damper. J Acoust Soc Am 47(1 pt 2):229–237CrossRef Masri SF (1970) General motion of impact damper. J Acoust Soc Am 47(1 pt 2):229–237CrossRef
22.
Zurück zum Zitat Masri SF, Ibrahim AM (1973) Response of the impact damper to stationary random excitation. J Acoust Soc Am 53(1):200–211CrossRef Masri SF, Ibrahim AM (1973) Response of the impact damper to stationary random excitation. J Acoust Soc Am 53(1):200–211CrossRef
23.
Zurück zum Zitat Chen LA, Semercigil SE (1993) A beam-like damper for attenuating transient vibrations of light structures. J Sound Vib 164(1):53–65CrossRef Chen LA, Semercigil SE (1993) A beam-like damper for attenuating transient vibrations of light structures. J Sound Vib 164(1):53–65CrossRef
24.
Zurück zum Zitat Butt AS, Akl FA (1997) Numerical model of impact-damped continuous systems. J Eng Mech 123(4):384–392CrossRef Butt AS, Akl FA (1997) Numerical model of impact-damped continuous systems. J Eng Mech 123(4):384–392CrossRef
25.
Zurück zum Zitat Chatterjee S, Mallik AK, Ghosh A (1996) Impact dampers for controlling self-excited oscillation. J Sound Vib 193(5):1003–1014MathSciNetCrossRef Chatterjee S, Mallik AK, Ghosh A (1996) Impact dampers for controlling self-excited oscillation. J Sound Vib 193(5):1003–1014MathSciNetCrossRef
26.
Zurück zum Zitat Collette FS (1998) A Combined tuned absorber and pendulum impact damper under random excitation. J Sound Vib 216(2):199–213CrossRef Collette FS (1998) A Combined tuned absorber and pendulum impact damper under random excitation. J Sound Vib 216(2):199–213CrossRef
27.
Zurück zum Zitat Semercigil SE, Collette F, Huynh D (2002) Experiments with tuned absorber—impact damper combination. J Sound Vib 256(1):179–188CrossRef Semercigil SE, Collette F, Huynh D (2002) Experiments with tuned absorber—impact damper combination. J Sound Vib 256(1):179–188CrossRef
28.
Zurück zum Zitat Cheng J, Xu H (2006) Inner mass impact damper for attenuating structure vibration. Int J Solids Struct 43(17):5355–5369MATHCrossRef Cheng J, Xu H (2006) Inner mass impact damper for attenuating structure vibration. Int J Solids Struct 43(17):5355–5369MATHCrossRef
29.
Zurück zum Zitat Li K, Darby AP (2006) An experimental investigation into the use of a buffered impact damper. J Sound Vib 291(3–5):844–860CrossRef Li K, Darby AP (2006) An experimental investigation into the use of a buffered impact damper. J Sound Vib 291(3–5):844–860CrossRef
30.
Zurück zum Zitat Ema S, Marui E (1994) A fundamental study on impact dampers. Int J Mach Tools Manuf 34(3):407–421CrossRef Ema S, Marui E (1994) A fundamental study on impact dampers. Int J Mach Tools Manuf 34(3):407–421CrossRef
31.
Zurück zum Zitat Duncan MR, Wassgren CR, Krousgrill CM (2005) The damping performance of a single particle impact damper. J Sound Vib 286(1–2):123–144CrossRef Duncan MR, Wassgren CR, Krousgrill CM (2005) The damping performance of a single particle impact damper. J Sound Vib 286(1–2):123–144CrossRef
32.
Zurück zum Zitat Ekwaro-Osire S, Ozerdim C, Khandaker MPH (2006) Effect of attachment configuration on impact vibration absorbers. Exp Mech 46(6):669–681CrossRef Ekwaro-Osire S, Ozerdim C, Khandaker MPH (2006) Effect of attachment configuration on impact vibration absorbers. Exp Mech 46(6):669–681CrossRef
33.
Zurück zum Zitat Mead DJ (1999) Passive vibration control. Wiley, University of Southampton Mead DJ (1999) Passive vibration control. Wiley, University of Southampton
34.
Zurück zum Zitat Park J, Wang S, Crocker MJ (2009) Mass loaded resonance by impact through kinetic energy influx for a single unit impact damper. J Sound Vib 323(3–5):877–985 Park J, Wang S, Crocker MJ (2009) Mass loaded resonance by impact through kinetic energy influx for a single unit impact damper. J Sound Vib 323(3–5):877–985
Metadaten
Titel
Study of the Damping Mechanisms of Loose Spring Skirts on Vibrating Pipes
verfasst von
J. Park
S. Wang
M. J. Crocker
Publikationsdatum
01.03.2011
Verlag
Springer US
Erschienen in
Experimental Mechanics / Ausgabe 3/2011
Print ISSN: 0014-4851
Elektronische ISSN: 1741-2765
DOI
https://doi.org/10.1007/s11340-010-9361-3

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