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Articles

Bow rudder of cavitator attached with a non-symmetric anti-roll fin for strong manoeuvring underwater supercavitating vehicles

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Pages 840-851 | Received 19 Apr 2020, Accepted 04 Jan 2021, Published online: 19 Feb 2021

References

  • Ahn SS, Ruzzene M, Scorcelletti F, Bottasso CL. 2010. Configuration optimization of supercavitating underwater vehicles with maneuvering constraints. IEEE J Ocean Eng. 35(3):647–662.
  • Alyanak E, Grandhi R, Penmetsa R. 2006. Optimum design of a supercavitating torpedo considering overall size, shape, and structural configuration. Int J Solids Struct. 43:642–657.
  • Alyanak E, Grandhi R, Venkayya V, Penmetsa R. 2005. Structural response and optimization of a supercavitating torpedo. Finite Elem Anal Des. 41(6):563–582.
  • Choi JK, Ahn BK, Kim HT. 2015. A numerical and experimental study on the drag of a cavitating underwater vehicle in cavitation tunnel. Int J Naval Archit Ocean Eng. 7(5):888–905.
  • Choi JH, Penmetsa RC, Grandhi RV. 2005. Shape optimization of the cavitator for a supercavitating torpedo. Struct Multidiscip Optim. 29(2):159–167.
  • Choi JY, Ruzzene M, Bauchau OA. 2004. Dynamic analysis of flexible supercavitating vehicles using modal-based elements. Simulation. 80(11):619–633.
  • Dzielski J, Kurdila A. 2003. A benchmark control problem for supercavitating vehicles and an initial investigation of solutions. J Vib Control. 9(9):791–804.
  • Erfanian MR, Anbarsooz M. 2018. Numerical investigation of body and hole effects on the cavitating flow behind a disk cavitator at extremely low cavitation numbers. Appl Math Modell. 62:163–180.
  • Hassouneh M, Nguyen V, Balachandran B, Abed E. 2013. Stability analysis and control of supercavitating vehicles with advection delay. J Comput Nonlinear Dynam. 8(2):021003–0210013.
  • Howe M, Colgan A, Brungart T. 2009. On self-noise at the nose of a supercavitating vehicle. J Sound Vib. 322:772–784.
  • Huang C, Luo K, Dang J, Qin K, Li D. 2017. Spatial kinetics model of supercavitating vehicles reflecting conic-like oscillation. Math Prob Eng. 2017:3671618.
  • Kawakami E, Arndt REA. 2011. Investigation of the behavior of ventilated supercavities. J Fluids Eng. 133(9):57–64.
  • Kirschner IN, Fine NE, Uhlman JS, Kring DC, Rosenthal BJ, Gieseke TA, Kuklinski R, Varghese AN, Stinebring DR, Dzielski JE, et al. 2001. Supercavitation research and development. Undersea Defense Technologies, Waikiki, Hawaii, USA, pp. 1–10.
  • Kirschner IN, Kring DC, Stokes AW, Fine NE, James J, Uhlman S. 2002. Control strategies for supercavitating vehicles. J Vib Control. 8(2):219–242.
  • Kirschner IN, Uhlman JS, Perkins J. 2006. Overview of high-speed supercavitating vehicle control. AIAA Guidance, Navigation, and Control Conference and Exhibit, Keystone, Colorado, USA.
  • Kong C, Oh K, Park H. 2015. Investigation of structural stability characteristics of high-speed underwater vehicles according to mass change. Aerosp Sci Technol. 41:1–6.
  • Kuklinski R, Fredette A, Henoch C, Castano J. 2006. Experimental studies in the control of cavitating bodies. AIAA Guidance, Navigation, and Control Conference and Exhibit, Keystone, Colorado, USA.
  • Li D, Liu Q, Qin K, Huang C, Luo K, Dang J. 2019. Classical control of underwater supercavitating vehicles via variable splitting method. Ships Offshore Struct. 14(7):765–776.
  • Logvinovich GV. 1972. Hydrodynamics of free-boundary flows. Translated from Russian (NASA-TT-F-658).
  • Mirzaei M, Taghvaei H. 2019. A novel configuration optimization for highspeed ventilated supercavitating vehicles. Ocean Eng. 179:13–21.
  • Mokhtarzadeh H, Balas G, Arndt R. 2012. Effect of cavitator on supercavitating vehicle dynamics. IEEE J Ocean Eng. 37(2):156–165.
  • Nguyen V, Balachandran B. 2011. Supercavitating vehicles with noncylindrical, nonsymmetric cavities: dynamics and instabilities. J Comput Nonlinear Dynam. 6(4):041001-1–041001-11.
  • Park S, Rhee SH. 2012. Computational analysis of turbulent super-cavitating flow around a two-dimensional wedge-shaped cavitator geometry. Comput Fluids. 70:73–85.
  • Petitpas FP, Saurel R, Ahn BK, Ko S. 2011. Modelling cavitating flow around underwater missiles. Int J Naval Archit Ocean Eng. 3:263–273.
  • Phuc BDH, You SS, Rathore NS, Kim HS. 2019. Dynamical analysis and robust control for dive plane of supercavitating vehicles. Appl Ocean Res. 84:259–267.
  • Ruzzene M. 2004. Non-axisymmetric buckling of stiffened supercavitating shells: Static and dynamic analysis. Comput Struct. 82(2):257–269.
  • Ruzzene M, Soranna F. 2004. Impact dynamics of stiffened elastic supercavitating underwater vehicles. J Vib Control. 10(2):243–267.
  • Sanabria DE, Arndt REA. 2018. Robust control of a small-scale supercavitating vehicle: from modeling to testing. Ocean Eng. 160:412–424.
  • Savchenko YN. 2001. Supercavitation – problems and perspectives. Proc 4th International Symposium Cavitation (CAV2001), Paris, France.
  • Savchenko YN. 2002. Control of supercavitation flow and stability of supercavitating motion of bodies. Proc RTO AVT Lecture Series on Supercavitating Flows, Von Karman Institute, Brussels, Belgium.
  • Savchenko YN, Semenenko VN. 1998. The gas absorption into supercavity from liquid-gas bubble mixture. Proc 3rd International Symposium on Cavitation (CAV2001), Grenoble, Frence, Vol. 2, 49–53.
  • Scorcelletti F, Bottasso CL, Ruzzene M. 2009. Multiple shooting solution of optimal control problems for time-delayed dynamic systems. J Dyn Syst Meas Control. 131:011009.
  • Semenenko VN. 2001a. Artificial supercavitation: Physics and calculation. Proc RTO AVT Lecture Series on Supercavitating Flows, Von Karman Institute, Brussels, Belgium.
  • Semenenko VN. 2001b. Dynamic processes of supercavitation and computer simulation. Proc RTO AVT Lecture Series on Supercavitating Flows, Von Karman Institute, Brussels, Belgium.
  • Sweger J, Kamada R, Ruzzene M. 2004. Optimization of trimmed flight configurations for supercavitating vehicles. 45th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics & Materials Conference, Palm Springs, California, USA.
  • Uhlman JS. 2006. A note on the development of a nonlinear axisymmetric reentrant jet cavitation model. J Ship Res. 50(3):259–267.
  • Vanek, B. 2008. Control methods for high-speed supercavitating vehicles. PhD thesis, University of Minnesota.
  • Vasin AD, Paryshev EV. 2001. Immersion of a cylinder in a fluid through a cylindrical free surface. Fluid Dyn. 36:169–177.
  • Zhao X, Zhang X, Ye X, Liu Y. 2019. Sliding mode controller design for supercavitating vehicles. Ocean Eng. 184:173–183.
  • Zou W, Yu K, Arndt R. 2015. Modeling and simulations of supercavitating vehicle with planing force in the longitudinal plane. Appl Math Modell. 39(19):6008–6020.

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