Scaling macroscopic aquatic locomotion
暂无分享,去创建一个
[1] Babak Hejazialhosseini,et al. Reinforcement Learning and Wavelet Adapted Vortex Methods for Simulations of Self-propelled Swimmers , 2014, SIAM J. Sci. Comput..
[2] Boyce E. Griffith,et al. A Forced Damped Oscillation Framework for Undulatory Swimming Provides New Insights into How Propulsion Arises in Active and Passive Swimming , 2013, PLoS Comput. Biol..
[3] Thaine W. Rowley,et al. The Tree of Life and a New Classification of Bony Fishes , 2013, PLoS currents.
[4] P. Koumoutsakos,et al. Optimal shapes for anguilliform swimmers at intermediate Reynolds numbers , 2013, Journal of Fluid Mechanics.
[5] Petros Koumoutsakos,et al. Flow mediated interactions between two cylinders at finite Re numbers , 2012 .
[6] M. Triantafyllou. Survival hydrodynamics , 2012, Journal of Fluid Mechanics.
[7] Petros Koumoutsakos,et al. C-start: optimal start of larval fish , 2012, Journal of Fluid Mechanics.
[8] G. Lauder,et al. Dynamics of freely swimming flexible foils , 2011 .
[9] Melina E. Hale,et al. Movement and function of the pectoral fins of the larval zebrafish (Danio rerio) during slow swimming , 2011, Journal of Experimental Biology.
[10] Petros Koumoutsakos,et al. Simulations of single and multiple swimmers with non-divergence free deforming geometries , 2011, J. Comput. Phys..
[11] T. Y. Wu. Fish Swimming and Bird/Insect Flight , 2011 .
[12] G. Lauder,et al. Disentangling the functional roles of morphology and motion in the swimming of fish. , 2010, Integrative and comparative biology.
[13] Petros Koumoutsakos,et al. Shape Optimization for Drag Reduction in Linked Bodies using Evolution Strategies and the Hybrid Wavelet Collocation - Brinkman Penalization Method , 2010 .
[14] Diego Rossinelli,et al. High order finite volume methods on wavelet-adapted grids with local time-stepping on multicore architectures for the simulation of shock-bubble interactions , 2010, J. Comput. Phys..
[15] A. Cohen,et al. Interactions between internal forces, body stiffness, and fluid environment in a neuromechanical model of lamprey swimming , 2010, Proceedings of the National Academy of Sciences.
[16] P. Ponganis,et al. Scaling of swim speed and stroke frequency in geometrically similar penguins: they swim optimally to minimize cost of transport , 2010, Proceedings of the Royal Society B: Biological Sciences.
[17] Brian D. Clark,et al. Kinematics of swimming of penguins at the Detroit Zoo , 2009 .
[18] G. Cottet,et al. A vortex level set method for the two-way coupling of an incompressible fluid with colliding rigid bodies , 2008, J. Comput. Phys..
[19] T. Williams,et al. Nonlinear Muscles, Passive Viscoelasticity and Body Taper Conspire To Create Neuromechanical Phase Lags in Anguilliform Swimmers , 2008, PLoS Comput. Biol..
[20] B. Jayne,et al. The effects of viscosity on the axial motor pattern and kinematics of the African lungfish (Protopterus annectens) during lateral undulatory swimming , 2008, Journal of Experimental Biology.
[21] F. Fish,et al. Swimming kinematics of the Florida manatee (Trichechus manatus latirostris): hydrodynamic analysis of an undulatory mammalian swimmer , 2007, Journal of Experimental Biology.
[22] P. Koumoutsakos,et al. Simulations of optimized anguilliform swimming , 2006, Journal of Experimental Biology.
[23] John Calambokidis,et al. Kinematics of foraging dives and lunge-feeding in fin whales , 2006, Journal of Experimental Biology.
[24] M. Stanhope,et al. Molecules consolidate the placental mammal tree. , 2004, Trends in ecology & evolution.
[25] F. Fish,et al. Strouhal numbers and optimization of swimming by odontocete cetaceans , 2004, Journal of Experimental Biology.
[26] J. Brackenbury. Kinematics and hydrodynamics of swimming in the mayfly larva , 2004, Journal of Experimental Biology.
[27] J. V. van Leeuwen,et al. Swimming of larval zebrafish: ontogeny of body waves and implications for locomotory development , 2004, Journal of Experimental Biology.
[28] Adrian L. R. Thomas,et al. Flying and swimming animals cruise at a Strouhal number tuned for high power efficiency , 2003, Nature.
[29] D. O'Malley,et al. Locomotor repertoire of the larval zebrafish: swimming, turning and prey capture. , 2000, The Journal of experimental biology.
[30] M. Westneat,et al. Functional morphology of undulatory pectoral fin locomotion in the stingray taeniura lymma (Chondrichthyes: dasyatidae) , 1999, The Journal of experimental biology.
[31] Williams,et al. Self-propelled anguilliform swimming: simultaneous solution of the two-dimensional navier-stokes equations and Newton's laws of motion , 1998, The Journal of experimental biology.
[32] F. Fish,et al. Comparative kinematics and hydrodynamics of odontocete cetaceans: morphological and ecological correlates with swimming performance. , 1998, The Journal of experimental biology.
[33] J. H. Long. Muscles, Elastic Energy, and the Dynamics of Body Stiffness in Swimming Eels' , 1998 .
[34] J. Altringham,et al. A continuous dynamic beam model for swimming fish , 1998 .
[35] C. A. Pell,et al. Mechanical control of swimming speed: stiffness and axial wave form in undulating fish models , 1995, The Journal of experimental biology.
[36] C. S. Wardle,et al. Fish swimming stride by stride: speed limits and endurance , 1991, Reviews in Fish Biology and Fisheries.
[37] Pingguo He,et al. The muscle twitch and the maximum swimming speed of giant bluefin tuna, Thunnus thynnus L. , 1989 .
[38] Paul W. Webb,et al. ‘Steady’ Swimming Kinematics of Tiger Musky, an Esociform Accelerator, and Rainbow Trout, a Generalist Cruiser , 1988 .
[39] F E Fish,et al. Kinematics and estimated thrust production of swimming harp and ringed seals. , 1988, The Journal of experimental biology.
[40] P. Webb. Kinematics of lake sturgeon, Acipenser fulvescens, at cruising speeds , 1986 .
[41] Richard J. Wassersug,et al. THE KINEMATICS OF SWIMMING IN ANURAN LARVAE , 1985 .
[42] Frank E. Fish,et al. Kinematics of undulatory swimming in the american alligator , 1984 .
[43] John J. Videler,et al. Fast Continuous Swimming of Two Pelagic Predators, Saithe (Pollachius Virens) and Mackerel (Scomber Scombrus): a Kinematic Analysis , 1984 .
[44] J. Videler,et al. FAST CONTINUOUS SWIMMING OF SAITHE (POLLACHIUS VIRENS): A DYNAMIC ANALYSIS OF BENDING MOMENTS AND MUSCLE POWER , 1984 .
[45] P. W. Webb,et al. THE EFFECT OF SIZE AND SWIMMING SPEED ON LOCOMOTOR KINEMATICS OF RAINBOW TROUT , 1984 .
[46] J. Murray,et al. Scale Effects in Animal Locomotion. , 1978 .
[47] M. Lighthill. Large-amplitude elongated-body theory of fish locomotion , 1971, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[48] P. Pedley,et al. An Introduction to Fluid Dynamics , 1968 .
[49] R. Bainbridge,et al. The Speed of Swimming of Fish as Related to Size and to the Frequency and Amplitude of the Tail Beat , 1958 .
[50] G. Taylor. Analysis of the swimming of long and narrow animals , 1952, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[51] G. Lauder,et al. Passive and Active Flow Control by Swimming Fishes and Mammals , 2006 .
[52] M. McHenry. The morphology, behavior, and biomechanics of swimming in ascidian larvae , 2005 .
[53] M. McHenry,et al. The kinematics of phototaxis in larvae of the ascidian Aplidium constellatum , 2003 .
[54] M. Triantafyllou,et al. Hydrodynamics of Fishlike Swimming , 2000 .
[55] Paul W. Webb,et al. SWIMMING KINEMATICS OF SHARKS , 1982 .
[56] S. Vogel. Life in Moving Fluids: The Physical Biology of Flow , 1981 .
[57] S. Childress. Mechanics of swimming and flying: Frontmatter , 1977 .
[58] J. Zweifel,et al. SWIMMING SPEED, TAIL BEAT FREQUENCY7 TAIL BEAT AMPLITUDE, AND SIZE IN JACK MACKEREL, Trucharzcs symmetricas, AND OTHER FISHES , 1971 .
[59] H. Hertel,et al. Structure-form-movement , 1966 .