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Articles

Deformation and stress distribution of floating collar of net cage in steady current

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Pages 371-383 | Received 05 Jun 2015, Accepted 04 Jul 2016, Published online: 02 Aug 2016

References

  • Avi E , Lillemäe I , Romanoff J , Niemelä A . 2015. Equivalent shell element for ship structural design. Ships Offshore Struct. 10:239–255.
  • Bai Y , Ruan W , Cheng P , Yu B , Xu W. 2014. Buckling of reinforced thermoplastic pipe (RTP) under combined bending and tension. Ships Offshore Struct. 9:525–539.
  • Bai Y , Yuan S , Tang J , Qiao H , Cheng P , Cao Y , Wang N . 2015. Behaviour of reinforced thermoplastic pipe under combined bending and external pressure. Ships Offshore Struct. 10:575–586.
  • Bai X , Zhao Y , Dong G , Li Y . 2015. Hydrodynamic analysis of elastic floating collars in random waves. China Ocean Eng. 29:341–356.
  • Bi C , Zhao Y , Dong G , Cui Y , Gui F . 2015. Experimental and numerical investigation on the damping effect of net cages in waves. J Fluids Struct. 55:122–138.
  • Bi C , Zhao Y , Dong G , Zheng Y , Gui F . 2014. A numerical analysis on the hydrodynamic characteristics of net cages using coupled fluid-structure interaction model. Aquac Eng. 59:1–12.
  • Decew J , Fredriksson D , Lader P , Chambers M , Howell W , Osienki M , Chelikkol B , Frank K , Høy E . 2013. Field measurements of cage deformation using acoustic sensors. Aquac Eng. 57:114–125.
  • Decew J , Tsukrov I , Risso A , Swift M , Celikkol B . 2010. Modeling of dynamic behavior of a single-point moored submersible fish cage under currents. Aquac Eng. 3:38–45.
  • Fredriksson D , DeCew J , Tsukrov I . 2007. Development of structural modeling techniques for evaluating HDPE plastic net pen used in marine aquaculture. Ocean Eng. 34:2114–2137.
  • Fredriksson D , Swift M , Irish J , Tsukrov I , Celikkol B . 2003. Fish cage and mooring system dynamics using physical and numerical models with field measurement. Aquac Eng. 27:17–146.
  • Gerhard K . 1983. Fibre ropes for fishing gear. Farnham: FAO Fishing Manuals Fishing News Books Ltd.
  • Huang C , Pan J . 2010. Mooring line fatigue: a risk analysis for an SPM cage system. Aquac Eng. 42:8–16.
  • Huang C , Tang H , Wang B . 2010. Numerical modeling for an in situ single-point-mooring cage system. IEEE J Ocean Eng. 35:565–573.
  • Kim T , Yang K , Hwang K , Jang D , Hur J . 2011. Automatic submerging and surfacing performances of model submersible fish cage system operated by air control. Aquac Eng. 45:74–86.
  • Kristiansen T , Faltinsen O . 2012. Modelling of current loads on aquaculture net cages. J Fluids Struct. 34:218–235.
  • Kristiansen T , Faltinsen O . 2014. Experimental and numerical study of an aquaculture net cage with floater in waves and current. J Fluids Struct. 54:1–26.
  • Lader P , Enerhaug B . 2005. Experimental investigation of forces and geometry of a net cage in uniform flow. IEEE J Ocean Eng. 30:79–84.
  • Lader P , Fredheim A . 2006. Dynamic properties of a flexible net sheet in waves and current – a numerical approach. Aquac Eng. 35:228–238.
  • Lee C , Kim Y , Lee G , Choe M , Lee M , Koo K . 2008. Dynamic simulation of a fish cage system subjected to currents and waves. Ocean Eng. 35:1521–1532.
  • Li L , Fu S , Xu Y , Wang J , Yang J . 2013. Dynamic responses of floating fish cage in waves and current. Ocean Eng. 72:297–303.
  • Li Y , Gui F , Teng B . 2007. Hydrodynamic behavior of a straight floating pipe under wave conditions. Ocean Eng. 34:552–559.
  • Loland G . 1991. Current forces on and flow through fish farms [dissertation]. [Trondheim]: Institute of Technology.
  • Moe H , Fredheim A , Hopperstad O . 2010. Structural analysis of aquaculture net cages in current. J Fluids Struct. 26:503–516.
  • Shainee M , DeCew J , Leira BJ , Ellingsen H , Fredheim A . 2012. Numerical simulation of a self-submersible SPM cage system in regular waves with following currents. Aquac Eng. 54:29–37.
  • Tsukrov I , Eroshkin O , Fredriksson D , Robinson S , Celikkol B . 2003. Finite element modeling of net panels using a consistent net element. Ocean Eng. 30:251–270.
  • Tsukrov I , Eroshkin O , Paul W , Celikkol B . 2005. Numerical modeling of nonlinear elastic components of mooring systems. IEEE J Ocean Eng. 30:37–46.
  • Wilson B . 1967. Elastic characteristics of moorings. ASCE J Waterways Harbors Div. 93:27–56.
  • Xu T , Dong G , Li Y , Guo W . 2014. Numerical study of a self-submersible single-point mooring gravity cage in combined wave-current flow. Appl Ocean Res. 48:66–79.
  • Zhang Y , Duan M , Wang Y , Chu G . 2015. Analytical study of the strength of adhesive joints of riser pipes. Ships Offshore Struct. 10:545–553.
  • Zhao Y , Bai X , Dong G , Bi C , Gui F . 2014. Numerical analysis of the elastic response of a floating collar in waves. Ocean Eng. 95:175–182.
  • Zhao Y , Bi C , Dong G , Gui F , Cui Y , Xu T . 2013. Numerical simulation of the flow field inside and around gravity cages. Aquac Eng. 52:1–13.
  • Zhao Y , Li Y , Dong G , Gui F , Teng B . 2007. A numerical study on dynamic properties of the gravity cage in combined wave-current flow. Ocean Eng. 34:2350–2363.
  • Zhao Y , Li Y , Dong G , Teng B , Gui F . 2009. Numerical simulation of hydrodynamic behaviors of gravity cage in current and waves. Int J Offshore Polar Eng. 19:97–107.
  • Zhao Y , Wang X , Decew J , Tsukrov I , Bai X , Bi C . 2015. Comparative study of two approaches to model the offshore fish cages. China Ocean Eng. 29:459–472.

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