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1

Farren, Maureen A. Some experiments with underwater acoustic returns from cylinders relative to object identification for AUV operation. Monterey, California: Naval Postgraduate School, 1988.

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2

Becker, Kyle M. Geoacoustic inversion in laterally varying shallow-water experiments using high-resolution wavenumber estimation. Cambridge, Mass: Massachusetts Institute of Technology, 2002.

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3

Great Britain. Marine Accident Investigation Branch. Report on the underwater survey of the stern trawler Gaul H.243 and the supporting model experiments August 1998-January 1999. Southampton: Marine Accident Investigation Branch, 1999.

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4

Tolstoy, Ivan. Ocean acoustics: Theory and experiment in underwater sound. New York, N.Y: Published for the Acoustical Society of America by the American Institute of Physics, 1987.

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5

Headrick, Robert Hugh. Analysis of internal wave induced mode coupling effects on the 1995 SWARM experiment acoustic transmissions. Woods Hole, Mass: Woods Hole Oceanographic Institution, 1997.

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6

Plueddemann, Albert J. ADCP measurements from the ICESHELF 94 experiment. Woods Hole, Mass: Woods Hole Oceanographic Institution, 1995.

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7

A, Caiti, red. Experimental acoustic inversion methods for exploration of the shallow water environment. Dordrecht: Kluwer Academic, 2000.

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8

Meyer, Robert H. Experimental determination of transfer functions for a coated, ring stiffened cylinder as a function of hydrostatic pressure. Springfield, Va: Available from National Technical Information Service, 1997.

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9

Russia) U.S.-Russia Workshop on Experimental Underwater Acoustics (1999 Nizhniĭ Novgorod. Proceedings of the U.S.-Russia Workshop on Experimental Underwater Acoustics, November 18-20, 1999. Redaktorzy Talanov V. I i Institut prikladnoĭ fiziki (Rossiĭskai͡a akademii͡a nauk). Nizhniĭ Novgorod: Russian Academy of Science, Institute of Applied Physics, 2000.

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10

Heinemann, Michael Gerhard. Experimental studies of applications of time-reversal acoustics to non-coherent underwater communications. Monterey, Calif: Naval Postgraduate School, 2000.

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11

Furey, Heather H. Red Sea outflow experiment (REDSOX): DLD2 RAFOS float data report, February 2001-March 2003. Woods Hole, Mass: WHOI, 2005.

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12

Caiti, A. Experimental Acoustic Inversion Methods for Exploration of the Shallow Water Environment. Dordrecht: Springer Netherlands, 2000.

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13

Heydt, Keith von der. Radio LAN acquisition module (RLAM): Recent developments for high resolution data collection systems as implemented for the ONR sea ice mechanics experiment, spring 1994. Woods Hole, Mass: Woods Hole Oceanographic Institution, 1995.

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14

Woodworth-Lynas, C. M. T. Pressure ridge ice scour experiment (PRISE) phase II progress report. [Calgary, AB: National Energy Board, 1993.

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15

Durham, Richard W. Experimental investigation of the effects of underwater exposure on the damping characteristics of bolted structural connections for plates and shells. Monterey, California: Naval Postgraduate School, 1988.

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16

Gross, Carolin. Victoria: Bautagebuch einer römischen Flussgaleere. Gutenberg: Computus Druck Satz & Verlag, 2012.

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17

Quadrelli, Davide Enrico, i Francesco Braghin. Acoustic Invisibility for Elliptic Objects: Theory and Experiments for Underwater Sound. Springer, 2023.

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18

Chapman, N. Ross, Jean-Pierre Hermand, Sérgio M. Jesus i Andrea Caiti. Acoustic Sensing Techniques for the Shallow Water Environment: Inversion Methods and Experiments. Springer Netherlands, 2017.

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19

Chapman, N. Ross, Jean-Pierre Hermand, Sérgio M. Jesus i Andrea Caiti. Acoustic Sensing Techniques for the Shallow Water Environment: Inversion Methods and Experiments. Springer London, Limited, 2006.

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20

Eimanis, Mārcis. Usage of Double-Helical Propulsion Principle in Underwater Vehicles. RTU Press, 2022. http://dx.doi.org/10.7250/9789934227370.

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The Thesis describes a new underwater vehicle propulsion type developed by the author. Flow and vehicle interaction dynamics are studied, and factors impacting the flow, control methods and the ability to move in other media (in addition to fluid) are reviewed. A geometry of the propulsion system was created by studying its hydrodynamic properties using special CFD software. A mathematical model for the control system was created. The dynamics of the underwater vehicle were modelled with the multibody dynamics modelling software MSC Adams, using the developed control system and the water resistance model developed with CFD software. Flow dynamics were combined with multibody mechanism dynamics using the metamodeling and numerical experiment approach. Numerical experiments in bulk or granular media were performed using the discrete element method, simulating the vehicle movement using the EDEM software. Within the framework of the Thesis, a prototype of the model was also created for observing the model behaviour in real-life conditions. High-quality and good fit results were obtained from the mathematical model and the physical prototype dynamics, proving the performance of both the new propulsion principle and the control system.
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21

Stroud, John Steven. Twinkling of underwater sound reflected by one realization from a Gaussian spectrum population of corrugated surfaces: Experiments and comparisons with a catastrophe theory approximation. 1995.

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22

Sobey, Ed. Motorboat Book: Build and Launch 20 Jet Boats, Paddle-Wheelers, Electric Submarines and More. Chicago Review Press, Incorporated, 2013.

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23

Sobey, Ed. Motorboat Book: Build and Launch 20 Jet Boats, Paddle-Wheelers, Electric Submarines and More. Chicago Review Press, Incorporated, 2013.

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24

Sobey, Ed. Motorboat Book: Build and Launch 20 Jet Boats, Paddle-Wheelers, Electric Submarines and More. Chicago Review Press, Incorporated, 2013.

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25

Sobey, Ed. Motorboat Book: Build and Launch 20 Jet Boats, Paddle-Wheelers, Electric Submarines and More. Chicago Review Press, Incorporated, 2013.

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26

Abbasov, Iftikhar B. Hyrdoacoustic Ocean Exploration: Theories and Experimental Application. Wiley & Sons, Incorporated, John, 2016.

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27

Abbasov, Iftikhar B. Hyrdoacoustic Ocean Exploration: Theories and Experimental Application. Wiley & Sons, Limited, John, 2016.

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28

Abbasov, Iftikhar B. Hyrdoacoustic Ocean Exploration: Theories and Experimental Application. Wiley & Sons, Incorporated, John, 2016.

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29

Lumiere, Germain. Mind-Bending Black Operations, Weapons Systems and Experiments by Extraterrestrials, Grays and Governments: The Hidden World of the Anunnaki, Ulema, Grays and Secret Military-Aliens Bases and Laboratories on Earth, Underwater and in Space. Lulu Press, Inc., 2010.

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30

Lafayette, Maximillien De. Mind-Bending Black Operations, Weapons Systems and Experiments by Extraterrestrials, Grays and Governments: The Hidden World of the Anunnaki, Ulema, Grays and Secret Military-Aliens Bases and Laboratories on Earth, Underwater and in Space. 4th Edition. Lulu Press, Inc., 2011.

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31

(Editor), Andrea Caiti, Jean-Pierre Hermand (Editor), Sérgio Jesus (Editor) i Michael Porter (Editor), red. Experimental Acoustic Inversion Methods for Exploration of the Shallow Water Environment. Springer, 2000.

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32

Wright, Susan. UNDERWATER SCIENCE EXPERIMENT LOG DIVE IN AND SEE IF YOU GET HOOKED (MAD SCIENCE). SCHOLASTIC, 2001.

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33

Experimental Studies of Applications of Time-Reversal Acoustics to Non- Coherent Underwater Communications. Storming Media, 2000.

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34

Maxey, W. A. Experimental Evaluation of Fracture Propagation in an Underwater Gas Pipeline (Ng-18 Report, No 153). Amer Gas Assn, 1985.

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35

Deep Black Sea and Dark Tide Rising. Simon & Schuster, 2017.

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36

Mission Planning and Mission Control Software For the Phoenix Autonomous Underwater Vehicle (AUV): Implementation and Experimental Study. Storming Media, 1996.

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