State-of-the-art in plant component flow-induced vibration (FIV)

Experimental and Computational Multiphase Flow - Tập 2 Số 1 - Trang 1-12 - 2020
Miwa, Shuichiro1, Hibiki, Takashi2
1Graduate School of Engineering, Hokkaido University, Sapporo, Japan
2School of Nuclear Engineering, Purdue University, West Lafayette, USA

Tóm tắt

Flow-induced vibration (FIV) continues to be a critical phenomenon for plant safety. Notably, the understanding of FIV generated by multiphase flow is still immature, and various accidents and troubles have been reported for the plant components including a steam generator, natural gas lines, piping systems, and so on. It is because FIV is complicated to be predicted during the plant’s design stage, and usually is first noticed in the operation stage. Hence, a practical solution for new types of FIV has been through post-processing by conducting the laboratory-scale experiment to simulate the prototype. Computational fluid dynamics (CFD) has become a powerful tool to assess FIV, but the approach is still under development for multiphase flow case. It is partly due to the lack of experimental data, incomplete interfacial transfer terms included in the two-fluid model, as well as the difficulty to couple two-phase flow dynamics and structural dynamics in the simulation stage. Additionally, inadequate FIV database for the simulation benchmark also needs to be resolved for the advancement of CFD and finite-element-method (FEM) models. The present review summarizes fundamentals of FIV caused by gas-liquid two-phase flow, and recent FIV research activities ranging from experiment to simulation.

Tài liệu tham khảo

citation_title=Transient multiphase simulation in separator vessel internals design in Saudi Aramco; citation_inbook_title=Proceedings of the ASME 2016 International Mechanical Engineering Congress and Exposition, IMECE2016-65250; citation_publication_date=2016; citation_id=CR1; citation_author=H A Al-Khalifa; citation_author=L Oshinowo; citation_author=O A Al-Saif citation_journal_title=J Fluid Struct; citation_title=Validation of turbulence induced vibration design guidelines in a normal triangular tube bundle during two-phase crossflow; citation_author=R Álvarez-Briceño, F T Kanizawa, G Ribatski, L P R de Oliveira; citation_volume=76; citation_publication_date=2018; citation_pages=301-318; citation_doi=10.1016/j.jfluidstructs.2017.10.013; citation_id=CR2 citation_title=ASME boiler and pressure vessel code Section III, Nonmandatory Appendix N, Subarticle N-1300, Flow-Induced Vibration of Tubes and Tube Banks 1998 with 2000 Addendum; citation_publication_date=1998; citation_id=CR3 citation_title=Multiphase forces on bends—Large scale 6-inch experiments; citation_inbook_title=Proceedings of the SPE Annual Technical Conference and Exhibition, SPE-181604-MS; citation_publication_date=2016; citation_id=CR4; citation_author=S P C Belfroid; citation_author=E Nennie; citation_author=M Lewis citation_title=Flow-Induced Vibration; citation_publication_date=1990; citation_id=CR5; citation_author=R D Blevins; citation_publisher=Van Nostrand Reinhold citation_journal_title=J Pressure Vessel Technol; citation_title=Nonproprietary flow-induced vibration analysis of San Onofre nuclear generating station replacement steam generators to ASME code section III appendix N; citation_author=R D Blevins; citation_volume=140; citation_publication_date=2018; citation_pages=034502; citation_doi=10.1115/1.4039391; citation_id=CR6 citation_journal_title=Ocean Eng; citation_title=Two-phase flow induced vibrations in a marine riser conveying a fluid with rectangular pulse train mass; citation_author=J M Cabrera-Miranda, J K Paik; citation_volume=174; citation_publication_date=2019; citation_pages=71-83; citation_doi=10.1016/j.oceaneng.2019.01.044; citation_id=CR7 citation_journal_title=Oil Gas J; citation_title=Flow simulations solve WHRSG vibration issues; citation_author=B L Da Silva, C M dos Santos, P Bianchi, N Henry, F Meier, E Oliveira, W P Martiganoni; citation_volume=114; citation_publication_date=2016; citation_pages=72; citation_id=CR8 citation_title=Flow induced vibration of equipment internals in a two-phase gas/liquid flow; citation_inbook_title=Proceedings of the ASME 2017 Pressure Vessels and Piping Conference, PVP2017-65812; citation_publication_date=2017; citation_id=CR9; citation_author=P Diwakar; citation_author=A Prakash; citation_author=C Thomas citation_journal_title=J Pressure Vessel Technol; citation_title=Two-phase flow-induced forces on piping in vertical upward flow: Excitation mechanisms and correlation models; citation_author=M Giraudeau, N W Mureithi, M J Pettigrew; citation_volume=135; citation_publication_date=2013; citation_pages=030907; citation_doi=10.1115/1.4024210; citation_id=CR10 citation_title=Thermo-Fluid Dynamics of Two-Phase Flow; citation_publication_date=2010; citation_id=CR11; citation_author=M Ishii; citation_author=T Hibiki citation_title=Study of two-fluid model and interfacial area; citation_publication_date=1980; citation_id=CR12; citation_author=M Ishii; citation_author=K Mishima; citation_publisher=Argonne National Lab. citation_title=Flow Induced Vibrations—Classification and Lessons from Practical Experiences; citation_publication_date=2018; citation_id=CR13; citation_publisher=Gihodo Publishing Co. citation_title=Two-phase flow induced vibration of subsea span pipeline; citation_inbook_title=Proceedings of the 26th International Ocean and Polar Engineering Conference, ISOPE-I-16-333; citation_publication_date=2016; citation_id=CR14; citation_author=F Li; citation_author=J Cao; citation_author=M Duan; citation_author=C An; citation_author=J Su citation_journal_title=Chem Eng Sci; citation_title=Experimental study of internal two-phase flow induced fluctuating force on a 90° elbow; citation_author=Y Liu, S Miwa, T Hibiki, M Ishii, H Morita, Y Kondoh, K Tanimoto; citation_volume=76; citation_publication_date=2012; citation_pages=173-187; citation_doi=10.1016/j.ces.2012.04.021; citation_id=CR15 citation_journal_title=Int J Heat Mass Tran; citation_title=Flow regime transition criteria for upward two-phase flow in vertical tubes; citation_author=K Mishima, M Ishii; citation_volume=27; citation_publication_date=1984; citation_pages=723-737; citation_doi=10.1016/0017-9310(84)90142-X; citation_id=CR16 citation_journal_title=J Fluid Eng; citation_title=Analysis of flow-induced vibration due to stratified wavy two-phase flow; citation_author=S Miwa, T Hibiki, M Mori; citation_volume=138; citation_publication_date=2016; citation_pages=091302; citation_doi=10.1115/1.4033371; citation_id=CR17 citation_title=Study of unsteady gas-liquid two-phase flow induced force fluctuation (Part 2: Horizontal-downward two-phase flow); citation_inbook_title=Trans JSME, 80: TEP0046; citation_publication_date=2014; citation_id=CR18; citation_author=S Miwa; citation_author=Y Liu; citation_author=T Hibiki; citation_author=M Ishii; citation_author=Y Kondo; citation_author=H Morita; citation_author=K Tanimoto citation_title=Study of unsteady gas-liquid two-phase flow induced force fluctuation (Part 1: Evaluation and modeling of two-phase flow induced force fluctuation); citation_inbook_title=Trans JSME, 80: FE0005; citation_publication_date=2014; citation_id=CR19; citation_author=S Miwa; citation_author=Y Liu; citation_author=T Hibiki; citation_author=M Ishii; citation_author=Y Kondo; citation_author=H Morita; citation_author=K Tanimoto citation_journal_title=Prog Nucl Energ; citation_title=Two-phase flow induced vibration in piping systems; citation_author=S Miwa, M Mori, T Hibiki; citation_volume=78; citation_publication_date=2015; citation_pages=270-284; citation_doi=10.1016/j.pnucene.2014.10.003; citation_id=CR20 citation_journal_title=J Nucl Sci Technol; citation_title=Research activities on nuclear reactor physics and thermal-hydraulics in Japan afterFukushima-Daiichi accident; citation_author=S Miwa, Y Yamamoto, G Chiba; citation_volume=55; citation_publication_date=2018; citation_pages=575-598; citation_doi=10.1080/00223131.2017.1417177; citation_id=CR21 citation_title=Flow-induced vibration of a large-diameter elbow piping based on random force measurement caused by conveying fluid (visualization test results); citation_inbook_title=Proceedings of the ASME 2005 Pressure Vessel and Piping, PVP2005-71277; citation_publication_date=2005; citation_id=CR22; citation_author=T Nakamura; citation_author=T Shiraishi; citation_author=Y Ishitani; citation_author=H Watakabe; citation_author=H Sago; citation_author=T Fujii; citation_author=M Konomura citation_title=Streamwise fluidelastic forces in tube arrays subjected to two-phase flows; citation_inbook_title=Proceedings of the ASME 2014 Pressure Vessels and Piping Conference, PVP2014-28153; citation_publication_date=2014; citation_id=CR23; citation_author=S Olala; citation_author=N W Mureithi; citation_author=T Sawadogo; citation_author=M J Pettigrew citation_journal_title=Eng Fail Anal; citation_title=Non-destructive testing and assessment of a piping system with excessive vibration and recurrence crack issue: An industrial case study; citation_author=Z C Ong, H C Eng, S Noroozi; citation_volume=82; citation_publication_date=2017; citation_pages=280-297; citation_doi=10.1016/j.engfailanal.2016.12.007; citation_id=CR24 citation_journal_title=Nucl Eng Des; citation_title=Vibration response of a pipe subjected to two-phase flow: Analytical formulations and experiments; citation_author=L E Ortiz-Vidal, N W Mureithi, O M H Rodriguez; citation_volume=313; citation_publication_date=2017; citation_pages=214-224; citation_doi=10.1016/j.nucengdes.2016.12.020; citation_id=CR25 citation_journal_title=Int J Heat Fluid Fl; citation_title=Interfacial area concentration in gas-liquid bubbly to churn-turbulent flow regime; citation_author=B Ozar, A Dixit, S W Chen, T Hibiki, M Ishii; citation_volume=38; citation_publication_date=2012; citation_pages=168-179; citation_doi=10.1016/j.ijheatfluidflow.2012.08.006; citation_id=CR26 citation_journal_title=J Mech Eng Sci; citation_title=Dynamics of tubular cantilevers conveying fluid; citation_author=M P Paidoussis; citation_volume=12; citation_publication_date=1970; citation_pages=85-103; citation_doi=10.1243/JMES_JOUR_1970_012_017_02; citation_id=CR27 citation_title=Development of fiber-optic probes to measure two-phase flow dynamic parameters in support of flow-induced vibration studies; citation_inbook_title=Proceedings of the ASME 2014 Pressure Vessels and Piping Conference, PVP2014-28106; citation_publication_date=2014; citation_id=CR28; citation_author=M J Pettigrew; citation_author=B Besner; citation_author=N W Mureithi; citation_author=T Lafrance; citation_author=J M Patrick citation_title=Two-phase flow regime identification using fluctuating force signals under machine learning techniques; citation_inbook_title=Proceedings of the 2018 26th International Conference on Nuclear Engineering, ICONE26-81288; citation_publication_date=2018; citation_id=CR29; citation_author=Y Saito; citation_author=S Torisaki; citation_author=S Miwa citation_title=Slug frequency revisited; citation_inbook_title=Proceedings of the 15th International Conference on Multiphase Production Technology, BHR-2011-H1; citation_publication_date=2011; citation_id=CR30; citation_author=R Schulkes citation_journal_title=Exp Therm Fluid Sci; citation_title=The effect of the fluid properties on the wave velocity and wave frequency of gas-liquid annular two-phase flow in a horizontal pipe; citation_author=A Setyawan, null Indarto, null Deendarlianto; citation_volume=71; citation_publication_date=2016; citation_pages=25-41; citation_doi=10.1016/j.expthermflusci.2015.10.008; citation_id=CR31 citation_journal_title=Int J Pres Ves Pip; citation_title=Dynamic behaviours of horizontal gas-liquid pipes subjected to hydrodynamic slug flow: Modelling and experiments; citation_author=L Wang, Y R Yang, Y X Li, Y T Wang; citation_volume=161; citation_publication_date=2018; citation_pages=50-57; citation_doi=10.1016/j.ijpvp.2018.02.005; citation_id=CR32 citation_journal_title=Int J Pres Ves Pip; citation_title=Resonance analyses of a pipeline-riser system conveying gas-liquid two-phase flow with flow-pattern evolution; citation_author=L Wang, Y R Yang, Y X Li, Y T Wang; citation_volume=161; citation_publication_date=2018; citation_pages=22-32; citation_doi=10.1016/j.ijpvp.2018.01.005; citation_id=CR33 citation_journal_title=Int J Pres Ves Pip; citation_title=Numerical investigation of dynamic response of a pipeline-riser system caused by severe slugging flow; citation_author=L Wang, Y R Yang, C Liu, Y X Li, Q H Hu; citation_volume=159; citation_publication_date=2018; citation_pages=15-27; citation_doi=10.1016/j.ijpvp.2017.11.002; citation_id=CR34 citation_journal_title=Appl Therm Eng; citation_title=Effects of fluidized solid particles on vibration behaviors of a graphite tube evaporator with an internal vapor-liquid flow; citation_author=X P Xu, M Y Liu, Y Ma, M An; citation_volume=100; citation_publication_date=2016; citation_pages=1229-1244; citation_doi=10.1016/j.applthermaleng.2015.12.126; citation_id=CR35