Tail Thrust of BluefishPomatomus SaltatrixAt Different Buoyancies, Speeds, and Swimming Angles
Open Access
- 1 June 1982
- journal article
- research article
- Published by The Company of Biologists in Journal of Experimental Biology
- Vol. 98 (1) , 105-117
- https://doi.org/10.1242/jeb.98.1.105
Abstract
1. The tail thrust of bluefish Pomatomus saltatrix was measured using a body accelerometer at different water speeds, buoyancies, and angles of water flow to determine the contribution of tail thrust in overcoming parasitic drag, induced drag, and weight directed along the track. The lengths and weights of the fish averaged 0.52 m and 1.50 kg respectively. 2. The tail thrust overcoming parasitic drag in Newtons, as measured during neutral buoyancy, was: 0.51 × speed + 0.15, with a standard error of estimate of 0.09 N. 3. When buoyancy was altered by the introduction or removal of air from a balloon implanted in the swim bladder, the tail thrust was altered by an amount of the same order as the value calculated for the induced drag of the pectoral fins. 4. The component of weight directed backward along the track was the weight in water multiplied by the sine of the angle of the swimming tunnel relative to horizontal. When this force was added to the calculated induced drag and tail thrust measured at neutral buoyancy, the rearward force equal to the tail thrust, at 45 ml negative buoyancy, 0.5 m s-1, and 15 degrees head up, was 0.12 N due to weight + 0.05 N due to induced drag + 0.40 N due to parasitic drag = 0.57 N total rearward force. 5. The conditions required for gliding were not achieved in our bluefish because the drag exceeded the component of the weight in water directed forward along the track at speeds above the stalling speed of the pectoral fins.This publication has 9 references indexed in Scilit:
- The Hydrodynamic Drag of Swimming Bluefish (Pomatomus Saltatrix) in Different Intensities of Turbulence: Variation With Changes of BuoyancyJournal of Experimental Biology, 1981
- Forces on the Tail Surface of Swimming Fish: Thrust, Drag and Acceleration in Bluefish (Pomatomus Saltatrix)Journal of Experimental Biology, 1978
- Locomotion by Scombrid Fishes: Hydromechanics, Morphology, and BehaviorPublished by Elsevier ,1978
- Large-amplitude elongated-body theory of fish locomotionProceedings of the Royal Society of London. B. Biological Sciences, 1971
- Hydrostatic Equilibrium of Euthynnus affinis, a Pelagic Teleost without a Gas BladderIchthyology & Herpetology, 1970
- Caudal Fin and Body Movement in the Propulsion of Some FishJournal of Experimental Biology, 1963
- Note on the swimming of slender fishJournal of Fluid Mechanics, 1960
- The Speed of Swimming of Fish as Related to Size and to the Frequency and Amplitude of the Tail BeatJournal of Experimental Biology, 1958
- The Role of the Fins in the Equilibrium of the Swimming FishJournal of Experimental Biology, 1936