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       5.2 Bibliography: Authors F-M


 

REFERENCES

Fan D (1989), "Fluid-structure interactions in internal flows," Ph.D. Thesis, The University of Dundee, Department of Civil Engineering, Dundee, UK.

Fan D and Tijsseling AS (1992), "Fluid-structure interaction with cavitation in transient pipe flows," Journal of Fluids Engineering 114 268-274.

 

 

Fan, D. & Vardy, A.E. 1994 Waterhammer including fluid-structure interactions. In Proceedings of the First International Conference on Flow Interaction, Hong Kong, September 1994, pp. 439-442.

Finnveden S (1994), Exact Spectral Finite Element analysis of stationary vibrations in a railway car structure, Acta Acustica 2 461-482.

Firnhaber, M. & Müller, W.Ch. 1987 Evaluation of a German Standard Problem on the statics and dynamics of a large pipe. In Transactions of SMiRT9, Lausanne, Switzerland, August 1987, Vol. F, pp. 225-230.

FLUSTRIN 1986 Proceedings of Seminar on Fluid-Structure Interaction, Delft Hydraulics, Delft, The Netherlands, October 1986, Report J0113.

FLUSTRIN 1990 Manual, version 1. Vol. 1: Theory, Global design, Tests. Vol. 2: User manual, Components. March 1990, Delft Hydraulics, Delft, The Netherlands.

Formaggia L, Gerbeau JF, Nobile F, and Quarteroni A (2001), On the coupling of 3D and 1D Navier-Stokes equations for flow problems in compliant vessels, Computer Methods in Applied Mechanics and Engineering 191 561-582.

Fox, J.A. 1977 Hydraulic analysis of unsteady flow in pipe networks. London: MacMillan Press Ltd.

Fox, J.A. 1989 Transient flow in pipes, open channels and sewers. Chichester, UK: Ellis Horwood.

Frikha S (1992), "Analyse expérimentale des sollicitations dynamiques appliquées à une portion de structure en service modélisable par la théorie des poutres," Ph.D. Thesis, Ecole Nationale Supérieure des Arts et Métiers (ENSAM), Laboratoire de Mécanique des Structures, Paris, France (in French).

Frizell, J.P. 1898 Pressures resulting from changes of velocity of water in pipes. Transactions of the ASCE 39, Paper No. 819, June 1898, pp. 1-18.

Gajić A, Pejović S, Stojanović Z, and Kratića J (1995), “Fluid-structure interaction analysis in frequency domain," Proceedings of the 7th International Meeting of the IAHR Work Group on the Behavior of Hydraulic Machinery under Steady Oscillatory Conditions, Ljubljana, Slovenia, Paper F5.

Gajić A, Pejović S, and Stojanović Z (1996), “Hydraulic oscillation analysis using the fluid-structure interaction model," Proceedings of the 18th IAHR Symposium on Hydraulic Machinery and Cavitation, Valencia, Spain, 845-854.

Gandenberger, W. 1950 Druckschwankungen in Wasserversorgungsleitungen. (Pressure surges in water supply conduits.) Munich, Germany: R. Oldenbourg (in German).

Gibert, R.J., Axisa, F. & Villard, B. 1978 Flow induced vibrations of piping system. (Vibration sources - Mechanical response of the pipes). In Proceedings BNES International Conference on Vibration in Nuclear Plant, Keswick, UK, May 1978, Paper 6.2, pp. 617-631.

Giesecke, H.D. 1981 Calculation of piping response to fluid transients including effects of fluid/structure interaction. In Transactions of SMiRT6, Paris, France, August 1981, Paper B 4/4.

Giot M (UCL, Louvain-la-Neuve), Prasser HM (FZR, Dresden), Dudlik A (Fraunhofer, UMSICHT, Oberhausen), Ezsol G (KFKI, Budapest), Habip M (Framatome ANP, Offenbach), Lemonnier H (CEA, Grenoble), Tiselj I (Institut Jozef Stefan, Ljubljana), Castrillo F (Iberdrola, Madrid), Van Hove W (Tractebel, Brussels), Perezagua R (Empresarios Agrupados, Madrid), and Potapov S (EDF, Clamart) (2001), Two-phase flow water hammer transients and induced loads on materials and structures of nuclear power plants (WAHALoads), Proceedings of Conference FISA-2001 - EU Research in Reactor Safety, Luxembourg, 12-14 November 2001.

Gorman DG, Reese JM, and Zhang YL (2000), "Vibration of a flexible pipe conveying viscous pulsating fluid flow," Journal of Sound and Vibration 230(2) 379-392.

Greenshields CJ, Weller HG, and Ivankovic A (1999), "The finite volume method for coupled fluid flow and stress analysis," Computer Modeling and Simulation in Engineering 4 213-218.

Gregory, R.W. & Païdoussis, M.P. 1966 Unstable oscillations of tubular cantilevers conveying fluids: I. Theory, II. Experiments. Proceedings of the Royal Society (London)293, 512-527, 528-542.

Grillenberger, T. 1985 Simulation von Druckwellen im Kühlsystem von Druckwasserreaktoren mit einem Netzwerk eindimensionaler Strömungskanäle unter Berücksichtigung der Strukturflexibilität. (Simulation of pressure waves in the cooling system of pressurized-water reactors by a network of one-dimensional flow-reaches taking into account the structural flexibility.) Ph.D. Thesis, Technische Universität München, Fakultät für Maschinenwesen, May 1985, Munich, Germany. Also: Gesellschaft für Reaktorsicherheit, GRS-60, November 1985, Cologne, Germany, ISBN 3-923875-08-8 (in German).

Gromeka, I.S. 1883 ? F8@D@FH4 D"FBD@FHD">,>nb &@:>@@$D"2>"(@ *&40,>nb 04*8@FH,6 &X JBDJ(4NX HDJ$8"NX. (On the velocity of propagation of wave-like motion of fluids in elastic tubes.) Physical-Mathematical Section of the Scientific Society of the Imperial University of Kazan, Kazan, Russia, May 1883, pp. 1-19 (in Russian).

Halliwell, A.R. 1963 Velocity of a water-hammer wave in an elastic pipe. ASCE Journal of the Hydraulics Division 89, 1-21. (Discussed by V.L. Streeter in 89, 295-296)

Hamilton M and Taylor G (1996), "Pressure surge – Criteria for acceptability," Proceedings of the 7th International Conference on Pressure Surges and Fluid Transients in Pipelines and Open Channels, BHR Group, Harrogate, UK, 343-362.

Hamilton M and Taylor G (1996), "Pressure surge – Case studies," Proceedings of the 7th International Conference on Pressure Surges and Fluid Transients in Pipelines and Open Channels, BHR Group, Harrogate, UK, 15-27.

Hankinson, R.F. & Van Duyne, D.A. 1987 Dynamic analysis of fluid transients utilizing the force time-history modal-superposition method. ASME - PVP, Vol. 129, Advances in piping analysis and life assessment for pressure vessels and piping, pp. 109-113.

Hansson P-A and Sandberg G (2001), Dynamic finite element analysis of fluid-filled pipes, Computer Methods in Applied Mechanics and Engineering 190 3111-3120.

Hara F (1988), "Seismic vibration analysis of fluid-structure interaction in LMFBR piping systems," Journal of Pressure Vessel Technology 110 177-181.

Hatfield, F.J., Davidson, L.C. & Wiggert, D.C. 1982b Acoustic analysis of liquid-filled piping by component synthesis: experimental validation and examination of assumptions. ASME -PVP, Vol. 64, Fluid transients and fluid-structure interaction, pp. 106-115.

Hatfield, F.J. & Wiggert, D.C. 1983 Harmonic analysis of coupled fluid and piping. In Proceedings of the ASCE Engineering Mechanics Specialty Conference, Purdue University, USA, May 1983, pp. 180-192.

Hatfield, F.J. & Wiggert, D.C. 1987 Response of pipelines to seismic motion in the axial direction. In Proceedings of the ASME Pressure Vessels and Piping Conference, Symposium on Recent Advances in Design, Analysis, Testing and Qualification Methods, San Diego, USA, July 1987.

Hatfield, F.J. & Wiggert, D.C. 1990 Seismic pressure surges in liquid-filled pipelines. ASME Journal of Pressure Vessel Technology 112, 279-283.

Hatfield FJ and Wiggert DC (1991), "Waterhammer response of flexible piping by component synthesis," Journal of Pressure Vessel Technology 113 115-119.

Hatfield, F.J., Wiggert, D.C. & Davidson, L.C. 1983 Experimental validation of the component synthesis method for predicting vibration of liquid-filled piping. The Shock and Vibration Bulletin, No. 53, Part 2, pp. 1-10.

Hatfield, F.J., Wiggert, D.C. & Otwell, R.S. 1982a Fluid structure interaction in piping by component synthesis. ASME Journal of Fluids Engineering 104, 318-325.

Heinsbroek AGTJ (1993), "Fluid-structure interaction in non-rigid pipeline systems—comparative analyses," ASME/TWI 12th International Conference on Offshore Mechanics and Arctic Engineering, Glasgow, UK, Paper OMAE-93-1018, 405-410.

Heinsbroek AGTJ (1997), "Fluid-structure interaction in non-rigid pipeline systems," Nuclear Engineering and Design 172 123-135.

Heinsbroek AGTJ and Kruisbrink ACH (1993), "Fluid-structure interaction in non-rigid pipeline systems—large scale validation experiments," Transactions of SMiRT12, Stuttgart, Germany, Paper J08/1.

Heinsbroek AGTJ and Kruisbrink ACH (1991), "FLUSTRIN Phase 3 Validation Experiments and Simulations," Research Report J 526, Delft Hydraulics, Delft, The Netherlands.

Heinsbroek AGTJ, Lavooij CSW, and Tijsseling AS (1991), "Fluid-structure interaction in non-rigid piping—a numerical investigation," Transactions of SMiRT 11, Tokyo, Japan, Paper B12/1, 309-314.

Heinsbroek AGTJ and Tijsseling AS (1993), "Fluid-structure interaction in non-rigid pipeline systems—a numerical investigation II," Transactions of SMiRT12, Stuttgart, Germany, Paper J08/2.

Heinsbroek AGTJ and Tijsseling AS (1994), "The influence of support rigidity on waterhammer pressures and pipe stresses," Proceedings of the Second International Conference on Water Pipeline Systems, BHR Group, Edinburgh, UK, 17-30.

Helmholtz, H.L.F. von 1848 In: Die Fortschritte der Physik (Berlin) 4, 101-118. Also: Bericht über die theoretische Akustik betreffenden Arbeiten vom Jahre 1848 und 1849. (Report on theoretical acoustics concerning works of the years 1848 and 1849.) Gesammelte wissenschaftliche Abhandlungen, 1882, 1, 233-255, in particular p. 246, Leipzig, Germany: J.A. Barth (in German).

Herrmann, G. & Mirsky, I. 1956 Three-dimensional and shell-theory analysis of axially symmetric motions of cylinders. ASME Journal of Applied Mechanics 23, 563-568.

Hilber HM, Hughes TJR, and Taylor RL (1977), "Improved numerical dissipation for time integration algorithms in structural dynamics," Earthquake Engineering and Structural Dynamics 5 283-292.

Holmboe, E.L. & Rouleau, W.T. 1967 The effect of viscous shear on transients in liquid lines. ASME Journal of Basic Engineering 89, 174-180.

Housner, G.W. 1952 Bending vibrations of a pipe line containing flowing fluid. ASME Journal of Applied Mechanics 19, 205-208.

Hovgaard, W. 1926 The elastic deformation of pipe-bends. Journal of Mathematics and Physics (Massachusetts Institute of Technology) 6, 69-118.

Howlett, J.T. 1971 Applications of NASTRAN to coupled structural and hydrodynamic responses in aircraft hydraulic systems. NASTRAN: Users' experiences, NASA TM X-2378, National Aeronautics and Space Administration, Washington DC, USA, pp. 407-419.

Hsu CK and Phillips JW (1981), "Pulse propagation in fluid-filled elastic curved tubes," Journal of Pressure Vessel Technology 103 43-49.

Hu, C.K. & Phillips, J.W. 1981 Pulse propagation in fluid-filled elastic curved tubes. ASME Journal of Pressure Vessel Technology 103, 43-49.

Ichchou MN, Khamlichi A, Jezequel L, and Tephany F (1998), Elastic-plastic strain in a frame pipe system under water hammer loads: analysis and parametric study, Proceedings of the ASME/JSME Joint Pressure Vessels and Piping Conference, July'98, San Diego, USA, ASME-PVP 366 165-172.

Ichchou MN, Jezequel L, and Tephany F (1999), Elastic-plastic dynamics of a frame pipe, Proceedings of the ASME Pressure Vessels and Piping Conference, August'99, Boston, USA, ASME-PVP 394 209-217.

Jaeger, C. 1977 Fluid transients (in hydro-electric engineering practice). Glasgow, UK: Blackie & Son.

Janssens MHA and Verheij JW (1999), "The use of an equivalent forces method for the experimental quantification of structural sound transmission in ships," Journal of Sound and Vibration 226(2) 305-328.

Jelev, I. 1989 The damping of flow and pressure oscillations in water hammer analysis. IAHR Journal of Hydraulic Research 27, 91-114.

Jendrzejczyk, J.A. & Chen, S.S. 1984 Experiments on tubes conveying fluid. ASME - PVP, Vol. 78, Advances in fluid-structure interaction, pp. 145-162.

Jendrzejczyk, J.A. & Chen, S.S. 1985 Experiments on tubes conveying fluid. Thin-Walled Structures 3, 109-134.

Jezequel L, Khamlichi A, and Tephany F (1994), "Interpretation of fluid-structure interaction experiment in a frame pipe," Sloshing, Fluid-Structure Interaction and Structural Response due to Shock and Impact Loads, ASME -PVP 272 1-12.

Jiao Z, Hua Q, and Yu K (1999), "Frequency domain analysis of vibrations in liquid-filled piping systems," Acta Aeronautica et Astronautica Sinica 20(4) 1-18 (in Chinese).

Jones, S.E. & Wood, D.J. 1972 The effect of axial boundary motion on pressure surge generation. ASME Journal of Basic Engineering 94, 441-446.

Jong, C.A.F. de 1994 Analysis of pulsations and vibrations in fluid-filled pipe systems. Ph.D. Thesis, Eindhoven University of Technology, Eindhoven, The Netherlands, ISBN 90-386-0074-7.

Joung, I. & Shin, Y.S. 1985 A new model on transient wave propagation in fluid-filled tubes. ASME - PVP, Vol. 98-7, Proceedings of the Pressure Vessels and Piping Conference, pp. 275-281.

Joukowsky N. 1898 Über den hydraulischen Stoss in Wasserleitungsröhren. (On the hydraulic hammer in water supply pipes.) Mémoires de l'Académie Impériale des Sciences de St.-Pétersbourg, 1900, Series 8, 9, No. 5 (in German). (English translation, partly, by O. Simin: Water hammer. In Proceedings of the 24th Annual Convention of the American Water Works Association, St. Louis, USA, June 1904, pp. 341-424; French translation, partly, by M. Goupil: Notice sur les principaux travaux concernant le coup de bélier et spécialement sur le mémoire et les expériences du Professeur N. Joukovsky (1898). Annales des Ponts et Chaussées, 1907, pp. 199-221)

Kármán, Th. von 1911 Ueber die Formänderung dünnwandiger Rohre, insbesondere federnder Ausgleichrohre. (On the deformation of thin-walled pipes, in particular elastic expansion pipes.) Zeitschrift des Vereines deutscher Ingenieure 55, 1889-1895 (in German).

Kellner A and Schönfelder C (1982), Die Bedeutung der Fluid/Struktur-Wechselwirkung für die Druckstoßbelastung von Rohrleitungen. (The effect of fluid/structure-interaction on pressure pulse loads on pipes.), 3R international 21 443-449 (in German).

Kellner A, Voss J, and Schoenfelder C (1983), Fluid/structure-interaction in piping systems: experiment and theory. Transactions of SMiRT7, Chicago, USA, August 1983, Paper B 4/3, 193-199.

King, W.W. & Frederick, D. 1968 Transient elastic waves in a fluid-filled cylinder. ASCE Journal of the Sanitary Engineering Mechanics Division 94, 1215-1230.

Kojima E and Shinada M (1988), Dynamic behavior of a finite length straight pipe subject to water-hammer (2nd report, for a very thin-walled pipe). Transactions of the Japan Society of Mechanical Engineers, Series B, 54 3346-3353 (in Japanese).

Kojima, E., Shinada, M., Nishimuta, S. & Murayama, S. 1986 The dynamic behaviour of a finite length straight pipe subject to waterhammer. Transactions of the Japanese Society of Mechanical Engineers, Series B, 52, 777-784 (in Japanese).

Kollmann D, Hirsch O, and Ungar K (1998), Einsparung von Rohrhalterungen durch rechentechnische Optimierung des Halterungskonzeptes. (Reduction of pipe supports through computationally optimising of the pipe support concept.), 3R international 37(8) 528-534 (in German).

Kollmann D and Swidersky H (2000a), Pressure wave loads on cooler elements taking into account fluid structure interaction (FSI), KAE Report 1(2), KAE Kraftwerks- und Anlagen Engineering GmbH, Bubenreuth, Germany.

Kollmann D and Swidersky H (2000b), Fluid-structure-interaction (FSI) at a connection line between pre- and main pump of a feedwater system, KAE Report 1(4), KAE Kraftwerks- und Anlagen Engineering GmbH, Bubenreuth, Germany.

Koo GH and Park YS (1998), "Vibration reduction by using periodic supports in a piping system," Journal of Sound and Vibration 210(1) 53-68.

Korteweg, D.J. 1878 Ueber die Fortpflanzungsgeschwindigkeit des Schalles in elastischen Röhren. (On the velocity of propagation of sound in elastic pipes.) Annalen der Physik und Chemie, New Series, 5, 525-542 (in German).

Kot, C.A. & Youngdahl, C.K. 1978a Transient cavitation effects in fluid piping systems. Nuclear Engineering and Design 45, 93-100.

Kot, C.A. & Youngdahl, C.K. 1978b The analysis of fluid transients in piping systems, including the effects of cavitation. In Proceedings of the Winter Annual Meeting of the ASME, Fluid Transients and Acoustics in the Power Industry, San Francisco, USA, December 1978, pp. 45-52.

Kot, C.A., Hsieh, B.J., Youngdahl, C.K. & Valentin, R.A. 1980 Transient cavitation phenomena in fluid-structure interactions. In Proceedings of the 3rd International Conference on Pressure Surges, BHRA, Canterbury, UK, March 1980, pp. 165-184.

Kot, C.A., Hsieh, B.J., Youngdahl, C.K. & Valentin, R.A. 1981 Transient cavitation in fluid-structure interactions. ASME Journal of Pressure Vessel Technology 103, 345-351.

Krause, N., Goldsmith, W. & Sackman, J.L. 1977 Transients in tubes containing liquids. International Journal of Mechanical Sciences 19, 53-68.

Kwong AHM and Edge KA (1996), "Structure-borne noise prediction in liquid-conveying pipe systems," Proceedings of the Institution of Mechanical Engineers Part I - Journal of Systems and Control Engineering 210(3) 189-200.

Kwong AHM and Edge KAA (1998), "A method to reduce noise in hydraulic systems by optimizing pipe clamp locations," Proceedings of the Institution of Mechanical Engineers Part I - Journal of Systems and Control Engineering 212(I4) 267-280.

Kruisbrink ACH (1990), "Modelling of safety and relief valves in waterhammer computer codes," Proceedings of the 3rd International Conference on Developments in Valves and Actuators for Fluid Control, BHRA, Bournemouth, UK, 137-149.

Kruisbrink, A.C.H. & Heinsbroek, A.G.T.J. 1992a Fluid-structure interaction in non-rigid pipeline systems - large scale validation tests. In Proceedings of the International Conference on Pipeline Systems, BHR Group, Manchester, UK, March 1992, pp. 151-164, ISBN 0-7923-1668-1.

Kruisbrink, A.C.H. & Heinsbroek, A.G.T.J. 1992b Fluid-structure interaction in non-rigid pipeline systems - large scale validation tests. In Proceedings of the Second National Mechanics Congress, Kerkrade, The Netherlands, November 1992, pp. 57-64; Dordrecht, The Netherlands: Kluwer Academic Publishers, ISBN 0-7923-2442-0.

Kuiken, G.D.C. 1984a Wave propagation in initially stressed orthotropic compliant tubes containing a compressible, viscous and heat-conducting fluid. Ph.D. Thesis, Delft University of Technology, Department of Mechanical Engineering, WTHD 165, September 1984, Delft, The Netherlands.

Kuiken, G.D.C. 1984b Approximate dispersion equations for thin walled liquid-filled tubes. Applied Scientific Research 41, 37-53.

Kuiken, G.D.C. 1984c Wave propagation in fluid lines. Applied Scientific Research 41, 69-91.

Kuiken, G.D.C. 1984d Wave propagation in a thin-walled liquid-filled initially stressed tube. Journal of Fluid Mechanics 141, 289-308.

Kuiken, G.D.C. 1988 Amplification of pressure fluctuations due to fluid-structure interaction. Journal of Fluids and Structures 2, 425-435.

Kulak, R.F. 1982 Some aspects of fluid-structure coupling. ASME - PVP, Vol. 64, Fluid transients and fluid-structure interaction, pp. 244-260.

Kulak, R.F. 1985 Three-dimensional fluid-structure coupling in transient analysis. Computers & Structures 21, 529-542.

Kussmaul, K., Kerkhof, K. & Herter, K.-H. 1989 System response of piping configurations under overload conditions. In Transactions of SMiRT10, Anaheim, USA, August 1989, Division T, pp. 93-104.

Lamb, H. 1898 On the velocity of sound in a tube, as affected by the elasticity of the walls. Memoirs of the Manchester Literary and Philosophical Society, Manchester, UK, 42, No. 9, pp. 1-16.

Lavooij, C.S.W. & Tijsseling, A.S. 1989 Fluid-structure interaction in compliant piping systems. In Proceedings of the 6th International Conference on Pressure Surges, BHRA, Cambridge, UK, October 1989, pp. 85-100.

Lavooij CSW and Tijsseling AS (1991), "Fluid-structure interaction in liquid-filled piping systems," Journal of Fluids and Structures 5 573-595.

Lee U, Pak CH, and Hong SC (1993), "Dynamics of piping system with internal unsteady flow," Fluid-Structure Interaction, Transient Thermal-Hydraulics, and Structural Mechanics, ASME-PVP 253 103-110.

Lee U, Pak CH, and Hong SC (1995), "The dynamics of a piping system with internal unsteady-flow," Journal of Sound and Vibration 180(2) 297-311.

Lee U and Kim J (1999), "Dynamics of branched pipeline systems conveying internal unsteady flow," Journal of Vibration and Acoustics 121 114-122.

Leonard, R.W. & Budiansky, B. 1954 On traveling waves in beams. Washington: National Advisory Committee for Aeronautics, Report 1173.

Leslie DJ and Tijsseling AS (1999), "A review of modelling damping mechanisms in coupled liquid-pipe vibrations," Proceedings of the 3rd ASME & JSME Joint Fluids Engineering Conference, Symposium S-290 Waterhammer (Editor JCP Liou), San Francisco, USA, ASME-FED 248 1-8.

Leslie DJ and Tijsseling AS (1999), "Wave speeds and phase velocities in liquid-filled pipes," Proceedings of the 9th International Meeting of the IAHR Work Group on the Behavior of Hydraulic Machinery under Steady Oscillatory Conditions, Brno, Czech Republic, Paper E1.

Lesmez MW (1989), "Modal analysis of vibrations in liquid-filled piping systems," Ph.D. Thesis, Michigan State University, Department of Civil and Environmental Engineering, East Lansing, USA.

Lesmez MW, Wiggert DC, and Hatfield FJ (1990), "Modal analysis of vibrations in liquid-filled piping-systems," Journal of Fluids Engineering 112 311-318.

Lin, T.C. & Morgan, G.W. 1956a A study of axisymmetric vibrations of cylindrical shells as affected by rotatory inertia and transverse shear. ASME Journal of Applied Mechanics 23, 255-261.

Lin, T.C. & Morgan, G.W. 1956b Wave propagation through fluid contained in a cylindrical, elastic shell. Journal of the Acoustical Society of America 28, 1165-1176.

Liu GL and Ohashi H (1988), Fluid/structure interaction in a two-dimensional bend during hydraulic transients, Proceedings of the 14th Symposium on Progress within Large and High-Specific Energy Units, Trondheim, Norway, June'88, Vol. 1, 229-240, ISBN 82-519-08521-1.

Locher FA, Huntamer JB, and O’Sullivan JD (2000), "Caution—pressure surges in process and industrial systems may be fatal," Proceedings of the 8th International Conference on Pressure Surges, BHR Group, The Hague, The Netherlands, 3-18.

Malcher, L. & Steinhilber, H. 1991 A review of 15 years full-scale seismic testing at the HDR. In Transactions of SMiRT11, Tokyo, Japan, August 1991, Paper K15/1*, pp. 397-408.

Mansour SGS (1998), "Waterhammer and fluid-structure interaction modelling," Ph.D. Thesis, Technical University Braunschweig, Department of Civil Engineering, Leichtweiss Institute for Hydraulic Engineering, Braunschweig, Germany.

Mansour SGS (1998), "The application of Verwey-Yu scheme in FSI simulations," Proceedings of the 3rd International Conference on Hydroinformatics, Copenhagen, Denmark.

Martin, C.S. 1973 Status of fluid transients in Western Europe and the United Kingdom. Report on laboratory visits by Freeman scholar. ASME Journal of Fluids Engineering 95, 301-318.

Meder, G. & Nguyen-Tuong, B. 1984 Strukturdynamische Methoden der Druckstoßberechnung von Rohrleitungen. (Structural-dynamics methods in waterhammer calculations of pipelines.) VGB Kraftwerkstechnik 64, 119-132 (in German).

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Mirsky, I. & Herrmann, G. 1957 Nonaxially symmetric motions of cylindrical shells. The Journal of the Acoustical Society of America 29, 1116-1123.

Mirsky, I. & Herrmann, G. 1958 Axially symmetric motions of thick cylindrical shells. ASME Journal of Applied Mechanics 25, 97-102.

Mitchell AR and Griffiths DF (1980), The Finite Difference Method in Partial Differential Equations, John Wiley and Sons.

Moens, A.I. 1878 Die Pulscurve. (The pulsation.) Leyden, The Netherlands: E.J. Brill (in German).

Möser, M., Heckl, M. & Ginters, K.-H. 1986 Zur Schallausbreitung in flüssigkeitsgefüllten kreiszylindrischen Rohren. (On wave propagation in fluid-filled circular cylindrical tubes.) Acustica 60, 34-44 (in German).

Moussou P and Boyelle H (1999), Analysis of the vibrations of a complete French PWR power plant piping system, Proceedings of the ASME Pressure Vessels and Piping Conference, August'99, Boston, USA, ASME-PVP 389 415-422.

Moussou P, Vaugrante P, Guivarch M, and Seligmann D (2000), "Coupling effects in a two elbows piping system," Proceedings of the 7th International Conference on Flow Induced Vibrations, Lucerne, Switzerland, 579-586.

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Müller, W.Ch. 1986 Pre- and posttest calculations of the fluiddynamic and structural dynamic behaviour of a pipeline under blowdown conditions including valve dynamics. In Proceedings of the 5th International Conference on Pressure Surges, BHRA, Hanover, Germany, September 1986, pp. 223-227.

Müller, W.Ch. 1987a Piping analysis of large scale experiments with ADINA and DAPSY. Computers & Structures 26, 111-121.

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ABBREVIATIONS

ASCE American Society of Civil Engineers

ASME American Society of Mechanical Engineers

BHRA British Hydromechanics Research Association

BNES British Nuclear Engineering Society

FED Fluids Engineering Division

IAHR International Association of Hydraulic Research

IMechE Institution of Mechanical Engineers

PVP Pressure Vessels and Piping

3R Rohre Rohrleitungsbau Rohrleitungstransport

SMiRT Structural Mechanics in Reactor Technology