Hydrodynamics of High-Speed Marine Vehicles
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[1] Martin Greenhow,et al. High- and low-frequency asymptotic consequences of the Kramers-Kronig relations , 1986 .
[2] J Allison,et al. MARINE WATERJET PROPULSION , 1993 .
[3] Apostolos D. Papanikolaou. 技術解説 Developments and Potential of Advanced Marine Vehicles Concepts , 2002 .
[4] W Beukelman,et al. Analysis of the resistance increase in waves of a fast cargo ship , 1972 .
[5] Jean-Marc Vanden-Broeck,et al. Nonlinear stern waves , 1980, Journal of Fluid Mechanics.
[6] Anthony F. Molland,et al. Resistance experiments on a systematic series of high speed displacement catamaran forms: variation of length-displacement ratio and breadth-draught ratio , 1994 .
[7] D L Blount,et al. RESEARCH PLAN FOR THE INVESTIGATION OF DYNAMIC INSTABILITY OF SMALL HIGH-SPEED CRAFT , 1986 .
[8] M. Lighthill. Note on the swimming of slender fish , 1960, Journal of Fluid Mechanics.
[9] Odd M. Faltinsen,et al. Wave impact on a horizontal elastic plate , 1997 .
[10] Eugene P Clement,et al. Resistance tests of a systematic series of planing hull forms , 1963 .
[11] Hiroyasu Takemoto. Some Considerations on Water Impact Pressure , 1984 .
[12] M. J. Lighthill,et al. A New Approach to Thin Aerofoil Theory , 1951 .
[13] Armin W. Troesch,et al. Asymmetric Vessel Impact and Planing Hydrodynamics , 1998 .
[14] Edward M. Lewandowski. Transverse dynamic stability of planing craft , 1997 .
[15] O. Nwogu. Alternative form of Boussinesq equations for nearshore wave propagation , 1993 .
[16] R B Chapman. FREE-SURFACE EFFECTS FOR YAWED SURFACE-PIERCING PLATES , 1976 .
[17] Nils Salvesen,et al. SHIP MOTIONS AND SEA LOADS , 1970 .
[18] Hideomi Ohtsubo,et al. Water Impact of Wedge model , 1984 .
[19] O. Faltinsen,et al. Slamming in marine applications , 2004 .
[20] J. N. Newman. The Exciting Forces on Fixed Bodies in Waves , 1963 .
[21] Michel K. Ochi,et al. Stochastic Analysis and Probabilistic Prediction of Random Seas , 1982 .
[22] Gregory J. Grigoropoulos,et al. Resistance and seakeeping characteristics of a systematic series in the pre-planing condition (part I) , 2003 .
[23] Madeleine Coutanceau,et al. The early stage of development of the wake behind an impulsively started cylinder for 40 < Re < 104 , 1980, Journal of Fluid Mechanics.
[24] Odd M. Faltinsen,et al. A Linear Theory of Springing , 1980 .
[25] T F Ogilvie,et al. NONLINEAR HYDRODYNAMIC THEORY FOR FINITE-SPAN PLANING SURFACES , 1972 .
[26] E. O. Tuck,et al. Free-surface pressure distributions with minimum wave resistance , 2001 .
[27] J. N. Newman. Lateral motion of a slender body between two parallel walls , 1969, Journal of Fluid Mechanics.
[28] Donald L. Blount,et al. DYNAMIC STABILITY OF PLANING BOATS , 1992 .
[29] J. R. Morison,et al. The Force Exerted by Surface Waves on Piles , 1950 .
[30] J. N. Newman. The Theory of Ship Motions , 1979 .
[31] M. Tucker,et al. Numerical simulation of a random sea: a common error and its effect upon wave group statistics , 1984 .
[32] Henning Borgen,et al. Seakeeping analysis of a high-speed monohull with a motion-control bow hydrofoil , 2004 .
[33] W. E. Cummins,et al. The Impulse Response Function and Ship Motion , 1962 .
[34] M Fujino. Experimental studies on ship manoeuvrability in restricted waters , 1968 .
[35] J. Nikuradse,et al. Untersuchungen über turbulente Strömungen in nicht kreisförmigen Rohren , 1930 .
[36] E. O. Tuck,et al. Shallow-water flows past slender bodies , 1966, Journal of Fluid Mechanics.
[37] J. P. Giesing,et al. Nonlinear two-dimensional unsteady potential flow with lift. , 1968 .
[38] J C Tatinclaux. ON THE WAVE RESISTANCE OF SURFACE-EFFECT SHIPS , 1975 .
[39] Walter Tollmien,et al. Neuere Ergebnisse der Turbulenzforschung , 1961 .
[40] Richard Eppler,et al. SECTION DESIGN FOR HYDROFOIL WINGS WITH FLAPS , 1979 .
[41] L. Schwartz. Computer extension and analytic continuation of Stokes’ expansion for gravity waves , 1974, Journal of Fluid Mechanics.
[42] Lawrence J. Doctors. HYDRODYNAMIC POWER RADIATED BY A HEAVING AND PITCHING AIR-CUSHION VEHICLE , 1978 .
[43] Odd M. Faltinsen. The effect of hydroelasticity on ship slamming , 1997, Philosophical Transactions of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[44] O. Faltinsen,et al. Numerical predictions of ship motions at high forward speed , 1991, Philosophical Transactions of the Royal Society of London. Series A: Physical and Engineering Sciences.
[45] Michael Sfakiotakis,et al. Review of fish swimming modes for aquatic locomotion , 1999 .
[46] T. Havelock. The propagation of groups of waves in dispersive media, with application to waves on water produced by a travelling disturbance , 1908 .
[47] A. Green,et al. Note on the Gliding of a Plate on the Surface of a Stream , 1936, Mathematical Proceedings of the Cambridge Philosophical Society.
[48] T. ShenY. Wing Sections for Hydrofoils—Part 3: Experimental Verifications , 1985 .
[49] T. Sarpkaya,et al. Separated flow about lifting bodies and impulsive flow about cylinders. , 1966 .
[50] Sakir Bal,et al. Numerical Analysis of 2-D and 3-D Cavitating Hydrofoils under a Free Surface , 2001 .
[51] Odd M. Faltinsen. Water entry of a wedge by hydroelastic orthotropic plate theory , 1999 .
[52] B. Stratford. An experimental flow with zero skin friction throughout its region of pressure rise , 1959, Journal of Fluid Mechanics.
[53] Jørgen Juncher Jensen,et al. Wave-induced ship hull vibrations in stochastic seaways , 1996 .
[54] Sam Howison,et al. Incompressible water-entry problems at small deadrise angles , 1991, Journal of Fluid Mechanics.
[55] Armin W. Troesch. ON THE HYDRODYNAMICS OF VERTICALLY OSCILLATING PLANING HULLS , 1992 .
[56] Odd M. Faltinsen,et al. TWO-DIMENSIONAL UNSTEADY PLANING , 1996 .
[57] J A Keuning,et al. RESISTANCE TESTS OF A SERIES OF PLANING HULL FORMS WITH 25 DEGREES DEADRISE ANGLE , 1982 .
[58] P. Koumoutsakos,et al. High-resolution simulations of the flow around an impulsively started cylinder using vortex methods , 1995, Journal of Fluid Mechanics.
[59] P R Payne. On the High-Speed Porpoising Instability of a Prismatic Hull , 1984 .
[60] H. Wagner. Über Stoß- und Gleitvorgänge an der Oberfläche von Flüssigkeiten , 1932 .
[61] Hisaaki Maeda. Modelling techniques for dynamics of ships , 1991, Philosophical Transactions of the Royal Society of London. Series A: Physical and Engineering Sciences.
[62] Martin Greenhow,et al. ADDED MASSES FOR CIRCULAR CYLINDERS NEAR OR PENETRATING FLUID BOUNDARIES-- REVIEW, EXTENSION AND APPLICATION TO WATER-ENTRY, -EXIT AND SLAMMING , 1987 .
[63] Robert Krasny,et al. Computation of vortex sheet roll-up in the Trefftz plane , 1987, Journal of Fluid Mechanics.
[64] Odd M. Faltinsen,et al. New insight into the generation of ship bow waves , 2000, Journal of Fluid Mechanics.
[65] Chunhua Ge,et al. Global Hydroelastic Response of Catamarans Due to Wetdeck Slamming , 2002 .
[66] Alexander Korobkin,et al. Three-dimensional theory of water impact. Part 1. Inverse Wagner problem , 2001, Journal of Fluid Mechanics.
[67] J. A. Geurst. Linearized theory for fully cavitated hydrofoils , 1960 .
[68] Armin W. Troesch,et al. Modern nonlinear dynamical analysis of vertical plane motion of planing hulls , 1993 .
[69] Armin W. Troesch,et al. Effects of Nonlinearities on Hull Springing , 1984 .
[70] Claudio Lugni,et al. Numerical And Experimental Transient Tests For Ship Seakeeping , 2000 .
[71] Daniel Savitsky,et al. Hydrodynamic Design of Planing Hulls , 1964 .
[72] W B Van Berlekom,et al. MANEUVERING OF LARGE TANKERS , 1972 .
[73] Paul D. Sclavounos,et al. An unsteady lifting-line theory , 1987 .
[74] John F. Foss,et al. Review of "Multimedia Fluid Mechanics - Multilingual Version CD-ROM" , 2006 .
[75] Jørgen Juncher Jensen,et al. Wave induced bending moments in ships - A quadratic Theory , 1978 .
[76] A B Stavovy,et al. ANALYTICAL DETERMINATION OF SLAMMING PRESSURES FOR HIGH- SPEED VEHICLES IN WAVES , 1976 .
[77] W. H. Auf’m Keller. EXTENDED DIAGRAMS FOR DETERMINING THE RESISTANCE AND REQUIRED POWER FOR SINGLE SCREW SHIPS , 1973 .
[78] Odd M. Faltinsen,et al. Hydroelastic Modeling of Wet Deck Slamming on Multihull Vessels , 2021 .
[79] J. Michell,et al. XI. The wave-resistance of a ship , 1898 .
[80] J N Newman,et al. EVALUATION OF THE WAVE-RESISTANCE GREEN FUNCTION, PART 1: THE DOUBLE INTEGRAL , 1987 .
[81] F. M. White,et al. An Analysis of Axisymmetric Turbulent Flow Past a Long Cylinder , 1972 .
[82] Charles J. Henry,et al. Aeroelastic Stability of Lifting Surfaces in High-Density Fluids , 1959 .
[83] J E Kerwin,et al. PREDICTION OF STEADY AND UNSTEADY MARINE PROPELLER PERFORMANCE BY NUMERICAL LIFTING-SURFACE THEORY , 1978 .
[84] John V. Wehausen,et al. THE WAVE RESISTANCE OF SHIPS , 1973 .
[85] O. Faltinsen,et al. Water entry of two-dimensional bodies , 1993, Journal of Fluid Mechanics.
[86] E. O. Tuck,et al. REPRESENTATION OF SHIP HULLS BY CONFORMAL MAPPING FUNCTIONS , 1969 .
[87] Z. N. Dobrovol'skaya. On some problems of similarity flow of fluid with a free surface , 1969, Journal of Fluid Mechanics.
[88] H Soding. INFLUENCE OF COURSE CONTROL ON PROPULSION POWER , 1984 .
[89] J. N. Newman,et al. SWAY ADDED-MASS COEFFICIENTS FOR RECTANGULAR PROFILES IN SHALLOW WATER , 1971 .
[90] R. B. Chapman,et al. Hydrodynamic Drag of Semisubmerged Ships , 1972 .
[91] Visvaldis Mangulis,et al. On the Kramers-Kronig relations for ship motions1 , 1962 .
[92] John P. Breslin,et al. Application of Ship-Wave Theory to the Hydrofoil of Finite Span , 1957 .
[93] O M Faltinsen. BOW FLOW AND ADDED RESISTANCE OF SLENDER SHIPS AT HIGH FROUDE NUMBER AND LOW WAVE LENGTHS , 1983 .