References
Buck, B. H., & Buchholz, C. M. (2004). The offshore-ring: A new system design for the open
ocean aquaculture of macroalgae. Journal of Applied Phycology, 16, 355–368.
Buck, B. H., & Buchholz, C. M. (2005). Response of offshore cultivated Laminaria saccharina to
hydrodynamic forcing in the North Sea. Aquaculture, 250, 674–691.
Chambers, M. D., DeCew, J., Celikkol, B., Yigit, M., & Cremer, M. C. (2011). Small-scale,
submersible fish cages suitable for developing economies. Global Aquaculture Advocate, 14,
30–32.
Chambers, M. D., & Howell, W. H. (2006). Preliminary information on cod and haddock
production in submerged cages off the coast of New Hampshire, USA. ICES Journal of Marine
Science, 63(2)
Chambers, M. D., Langan, R., Howell, W., Celikkol, B., Watson, B., Barnaby, R., et al. (2007).
Recent developments at the University of New Hampshire Open Ocean Aquaculture Site.
Bulletin-Aquaculture Association of Canada, 105(3).
DeCew, J., Baldwin, K., Celikkol, B., Chambers, M., Frederiksson, D. W., Irish, J., et al. (2010a).
Assessment of a submerged grid mooring in the Gulf of Maine. In OCEANS 2010. doi:10.
1109/OCEANS.2010.5664025
DeCew, J., Celikkol, B., Baldwin, K., Chambers, M., Irish, J., Robinson, M. R., et al. (2012).
Assessment of a mooring system for finfish aquaculture. Journal of the World Aquaculture
Society, 43, 32–36.
DeCew, J., Frederiksson, D. W., Bugrov, L., Swift, M. R., Eroshkin, O., & Celikkol, B. (2005).
A case study of a modified gravity type cage and mooring system using numerical and physical
models. IEEE Journal of Oceanic Engineering, 30, 47–58.
DeCew, J., Tsukrov, I., Risso, A., Swift, M. R., & Celikkol, B. (2010b). Modeling of dynamic
behavior of a single-point moored submersible fish cage under currents. Aquacultural
Engineering, 43, 38–45.
Drumm, A. (2010). Evaluation of the promotion of offshore aquaculture through a technology
platform (OATP) (p. 46). Galway, Ireland, Marine Institute. Retrieved October 1, 2016, from
www.offshoreaqua.com/docs/OATP_Final_Publishable_report.pdf
FAO. (2012). FAO yearbook. Fishery and Aquaculture Statistics 2010. Rome, Italy: Food and
Agriculture Organization of the United Nations.
Fredriksson, D. W., Swift, M. R., Eroshkin, O., Tsukurov, I., Irish, J. D., & Celikkol, B. (2004).
The design and analysis of a four-cage, grid mooring for open ocean aquaculture. Aqua
Engineering, 32, 77–94.
Fullerton, B., Swift, M. R., Boduch, S., Eroshkin, O., & Rice, G. (2004). Design and analysis of an
automated feed buoy for submerged cages. Aquacultural Engineering, 95, 95–111.
Goseberg, N., Franz, B., & Schlurmann, T. (2012). The potential co-use of aquaculture and
offshore wind energy structures. In Proceedings of the 6th Chinese-German joint symposium
on hydraulic and ocean engineering (JOINT 2012). Keelung, Taiwan: National Taiwan Ocean
University.
Hau, E., & von Renouard, H. (2006). Wind turbines: Fundamentals, technologies, application,
economics. Heidelberg/Berlin, Germany: Springer.
Howell, W. H., & Chambers, M. D. (2005). Growth performance and survival of Atlantic halibut
(Hippoglossus hippoglossus) grown in submerged net pens. Bulletin-Aquaculture Association
of Canada, 9, 35–37.
Huang, C.-C., Tang, H.-J., & Liu, J.-Y. (2006). Dynamical analysis of net cage structures for
marine aquaculture: Numerical simulation and model testing. Aquacultural Engineering, 35,
258–270.
3 Technological Approaches to Longline- and Cage-Based …
93
Buck, B. H., & Buchholz, C. M. (2004). The offshore-ring: A new system design for the open
ocean aquaculture of macroalgae. Journal of Applied Phycology, 16, 355–368.
Buck, B. H., & Buchholz, C. M. (2005). Response of offshore cultivated Laminaria saccharina to
hydrodynamic forcing in the North Sea. Aquaculture, 250, 674–691.
Chambers, M. D., DeCew, J., Celikkol, B., Yigit, M., & Cremer, M. C. (2011). Small-scale,
submersible fish cages suitable for developing economies. Global Aquaculture Advocate, 14,
30–32.
Chambers, M. D., & Howell, W. H. (2006). Preliminary information on cod and haddock
production in submerged cages off the coast of New Hampshire, USA. ICES Journal of Marine
Science, 63(2)
Chambers, M. D., Langan, R., Howell, W., Celikkol, B., Watson, B., Barnaby, R., et al. (2007).
Recent developments at the University of New Hampshire Open Ocean Aquaculture Site.
Bulletin-Aquaculture Association of Canada, 105(3).
DeCew, J., Baldwin, K., Celikkol, B., Chambers, M., Frederiksson, D. W., Irish, J., et al. (2010a).
Assessment of a submerged grid mooring in the Gulf of Maine. In OCEANS 2010. doi:10.
1109/OCEANS.2010.5664025
DeCew, J., Celikkol, B., Baldwin, K., Chambers, M., Irish, J., Robinson, M. R., et al. (2012).
Assessment of a mooring system for finfish aquaculture. Journal of the World Aquaculture
Society, 43, 32–36.
DeCew, J., Frederiksson, D. W., Bugrov, L., Swift, M. R., Eroshkin, O., & Celikkol, B. (2005).
A case study of a modified gravity type cage and mooring system using numerical and physical
models. IEEE Journal of Oceanic Engineering, 30, 47–58.
DeCew, J., Tsukrov, I., Risso, A., Swift, M. R., & Celikkol, B. (2010b). Modeling of dynamic
behavior of a single-point moored submersible fish cage under currents. Aquacultural
Engineering, 43, 38–45.
Drumm, A. (2010). Evaluation of the promotion of offshore aquaculture through a technology
platform (OATP) (p. 46). Galway, Ireland, Marine Institute. Retrieved October 1, 2016, from
www.offshoreaqua.com/docs/OATP_Final_Publishable_report.pdf
FAO. (2012). FAO yearbook. Fishery and Aquaculture Statistics 2010. Rome, Italy: Food and
Agriculture Organization of the United Nations.
Fredriksson, D. W., Swift, M. R., Eroshkin, O., Tsukurov, I., Irish, J. D., & Celikkol, B. (2004).
The design and analysis of a four-cage, grid mooring for open ocean aquaculture. Aqua
Engineering, 32, 77–94.
Fullerton, B., Swift, M. R., Boduch, S., Eroshkin, O., & Rice, G. (2004). Design and analysis of an
automated feed buoy for submerged cages. Aquacultural Engineering, 95, 95–111.
Goseberg, N., Franz, B., & Schlurmann, T. (2012). The potential co-use of aquaculture and
offshore wind energy structures. In Proceedings of the 6th Chinese-German joint symposium
on hydraulic and ocean engineering (JOINT 2012). Keelung, Taiwan: National Taiwan Ocean
University.
Hau, E., & von Renouard, H. (2006). Wind turbines: Fundamentals, technologies, application,
economics. Heidelberg/Berlin, Germany: Springer.
Howell, W. H., & Chambers, M. D. (2005). Growth performance and survival of Atlantic halibut
(Hippoglossus hippoglossus) grown in submerged net pens. Bulletin-Aquaculture Association
of Canada, 9, 35–37.
Huang, C.-C., Tang, H.-J., & Liu, J.-Y. (2006). Dynamical analysis of net cage structures for
marine aquaculture: Numerical simulation and model testing. Aquacultural Engineering, 35,
258–270.
3 Technological Approaches to Longline- and Cage-Based …
93
