Huang, C.-C., Tang, H.-J., & Liu, J.-Y. (2008). Effects of waves and currents on gravity-type
cages in the open sea. Aquacultural Engineering, 38, 105–116.
Irish, J. D., Carrol, M., Singer, R. C., Newhall, A. E., Paul, W., Johnson, C., et al. (2011).
Instrumentation for open ocean aquaculture monitoring. WHOI. doi:10.1575/1912/25
Irish, J. D., Fredriksson, D. W., & Boduch, S. (2004). Environmental monitoring buoy and
mooring with telemetry. Sea Technology, 45, 14–19.
Kapetsky, J. M., Aguilar-Manjarrez, J., & Jenness, J. (2013). A global assessment of potential for
offshore mariculture development from a spatial perspective. FAO Fisheries and Aquaculture
Technical Paper 549. Rome, Italy: Food and Agriculture Organization of the United Nations.
Lacroix, D., & Pioch, S. (2011). The multi-use in wind farm projects: More conflicts or a win-win
opportunity? Aquatic Living Resources, 24, 129–135.
Lader, P. F., & Enerhaug, B. (2005). Experimental investigation of forces and geometry of a net
cage in uniform flow. IEEE Journal of Oceanic Engineering, 30, 79–84.
Langan, R., & Horton, C. F. (2003). Design, operation and economics of submerged longline
mussel culture in the open ocean. Bulletin of the Aquaculture Association of Canada, 103,
11–20.
Langhamer, O., & Wilhelmsson, D. (2009). Colonisation of fish and crabs of wave energy
foundations and the effects of manufactured holes—A field experiment. Marine Environmental
Research, 68, 151–157.
Liu, T.-L., & Su, D.-T. (2013). Numerical analysis of the influence of reef arrangements on
artificial reef flow fields. Ocean Engineering, 74, 81–89.
Marra, J. (2005). When will we tame the oceans? Nature, 436. doi:10.1038/436175a
Melville, B. W., & Coleman, S. E. (2000). Bridge scour. Littleton, Colorado: Water Resources
Publications.
Raffel, M., Willert, C., & Kompenhans, J. (1998). Particle image velocimetry—A practical guide.
Berlin/Heidelberg, Germany: Springer.
Rice, G., Stommel, M., Chambers, M. D., & Eroshkin, O. (2003). The design, construction, and
testing of the university of New Hampshire feed buoy. Open Ocean Aquaculture, From
Research to Commercial Reality, The World Aquaculture Society
Rillahan, C., Chambers, M., Howell, W. H., & Watson, W. H. (2009). A self-contained system for
observing and quantifying the behavior of Atlantic cod, Gadus morhua, in an offshore
aquaculture cage. Aquaculture, 293, 49–56.
Rillahan, C., Chambers, M. D., Howell, W. H., & Watson, W. H. (2011). The behavior of cod
(Gadus morhua) in an offshore aquaculture net pen. Aquaculture, 310, 361–368.
Sumer, B. M., & Fredsøe, J. (2002). The mechanics of scour. Singapore: The Marine Environment,
World Scientific.
Sveen, J. K., & Cowen, E. A. (2004). PIV and Water Waves, Kapitel: Quantitative imaging
techniques and their application to wavy flow. Singapore: World Scientific.
Swift, M. R., Palczynski, M., Ketler, K., Michelin, D., & Celikkol, B. (1998). Fish cage physical
modeling for software development and design applications. In Proceedings of the 26th
U.S.-Japan aquaculture symposium nutrition and technical development of aquaculture
(pp. 199–206), University of New Hampshire, Durham, NH.
Tsukrov, I., Eroshkin, O., Frederiksson, D., Swift, M. R., & Celikkol, B. (2003). Finite element
modeling of net panels using a consistent net element. Ocean Engineering, 30, 251–270.
94
N. Goseberg et al.
cages in the open sea. Aquacultural Engineering, 38, 105–116.
Irish, J. D., Carrol, M., Singer, R. C., Newhall, A. E., Paul, W., Johnson, C., et al. (2011).
Instrumentation for open ocean aquaculture monitoring. WHOI. doi:10.1575/1912/25
Irish, J. D., Fredriksson, D. W., & Boduch, S. (2004). Environmental monitoring buoy and
mooring with telemetry. Sea Technology, 45, 14–19.
Kapetsky, J. M., Aguilar-Manjarrez, J., & Jenness, J. (2013). A global assessment of potential for
offshore mariculture development from a spatial perspective. FAO Fisheries and Aquaculture
Technical Paper 549. Rome, Italy: Food and Agriculture Organization of the United Nations.
Lacroix, D., & Pioch, S. (2011). The multi-use in wind farm projects: More conflicts or a win-win
opportunity? Aquatic Living Resources, 24, 129–135.
Lader, P. F., & Enerhaug, B. (2005). Experimental investigation of forces and geometry of a net
cage in uniform flow. IEEE Journal of Oceanic Engineering, 30, 79–84.
Langan, R., & Horton, C. F. (2003). Design, operation and economics of submerged longline
mussel culture in the open ocean. Bulletin of the Aquaculture Association of Canada, 103,
11–20.
Langhamer, O., & Wilhelmsson, D. (2009). Colonisation of fish and crabs of wave energy
foundations and the effects of manufactured holes—A field experiment. Marine Environmental
Research, 68, 151–157.
Liu, T.-L., & Su, D.-T. (2013). Numerical analysis of the influence of reef arrangements on
artificial reef flow fields. Ocean Engineering, 74, 81–89.
Marra, J. (2005). When will we tame the oceans? Nature, 436. doi:10.1038/436175a
Melville, B. W., & Coleman, S. E. (2000). Bridge scour. Littleton, Colorado: Water Resources
Publications.
Raffel, M., Willert, C., & Kompenhans, J. (1998). Particle image velocimetry—A practical guide.
Berlin/Heidelberg, Germany: Springer.
Rice, G., Stommel, M., Chambers, M. D., & Eroshkin, O. (2003). The design, construction, and
testing of the university of New Hampshire feed buoy. Open Ocean Aquaculture, From
Research to Commercial Reality, The World Aquaculture Society
Rillahan, C., Chambers, M., Howell, W. H., & Watson, W. H. (2009). A self-contained system for
observing and quantifying the behavior of Atlantic cod, Gadus morhua, in an offshore
aquaculture cage. Aquaculture, 293, 49–56.
Rillahan, C., Chambers, M. D., Howell, W. H., & Watson, W. H. (2011). The behavior of cod
(Gadus morhua) in an offshore aquaculture net pen. Aquaculture, 310, 361–368.
Sumer, B. M., & Fredsøe, J. (2002). The mechanics of scour. Singapore: The Marine Environment,
World Scientific.
Sveen, J. K., & Cowen, E. A. (2004). PIV and Water Waves, Kapitel: Quantitative imaging
techniques and their application to wavy flow. Singapore: World Scientific.
Swift, M. R., Palczynski, M., Ketler, K., Michelin, D., & Celikkol, B. (1998). Fish cage physical
modeling for software development and design applications. In Proceedings of the 26th
U.S.-Japan aquaculture symposium nutrition and technical development of aquaculture
(pp. 199–206), University of New Hampshire, Durham, NH.
Tsukrov, I., Eroshkin, O., Frederiksson, D., Swift, M. R., & Celikkol, B. (2003). Finite element
modeling of net panels using a consistent net element. Ocean Engineering, 30, 251–270.
94
N. Goseberg et al.
