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Wave energy and wave-induced flow reduction by full-scale model Posidonia oceanica seagrass

(2012) CONTINENTAL SHELF RESEARCH. 50-51. p.100-116
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Keywords
Energy dissipation factor, Wave-induced flow, Wave-vegetation interactions, FIELD, HYDRODYNAMICS, VEGETATION, SALT-MARSH, SHALLOW-WATER, SEDIMENT RETENTION, DISTRIBUTIONS, ATTENUATION, TURBULENCE, Seagrass, MEADOWS, Posidonia oceanica

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Citation

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Chicago
Manca, E, I Caceres, JM Alsina, Vicky Stratigaki, I Townend, and CL Amos. 2012. “Wave Energy and Wave-induced Flow Reduction by Full-scale Model Posidonia Oceanica Seagrass.” Continental Shelf Research 50-51: 100–116.
APA
Manca, E, Caceres, I., Alsina, J., Stratigaki, V., Townend, I., & Amos, C. (2012). Wave energy and wave-induced flow reduction by full-scale model Posidonia oceanica seagrass. CONTINENTAL SHELF RESEARCH, 50-51, 100–116.
Vancouver
1.
Manca E, Caceres I, Alsina J, Stratigaki V, Townend I, Amos C. Wave energy and wave-induced flow reduction by full-scale model Posidonia oceanica seagrass. CONTINENTAL SHELF RESEARCH. 2012;50-51:100–16.
MLA
Manca, E, I Caceres, JM Alsina, et al. “Wave Energy and Wave-induced Flow Reduction by Full-scale Model Posidonia Oceanica Seagrass.” CONTINENTAL SHELF RESEARCH 50-51 (2012): 100–116. Print.
@article{3239817,
  author       = {Manca, E and Caceres, I and Alsina, JM and Stratigaki, Vicky and Townend, I and Amos, CL},
  issn         = {0278-4343},
  journal      = {CONTINENTAL SHELF RESEARCH},
  keyword      = {Energy dissipation factor,Wave-induced flow,Wave-vegetation interactions,FIELD,HYDRODYNAMICS,VEGETATION,SALT-MARSH,SHALLOW-WATER,SEDIMENT RETENTION,DISTRIBUTIONS,ATTENUATION,TURBULENCE,Seagrass,MEADOWS,Posidonia oceanica},
  language     = {eng},
  pages        = {100--116},
  title        = {Wave energy and wave-induced flow reduction by full-scale model Posidonia oceanica seagrass},
  url          = {http://dx.doi.org/10.1016/j.csr.2012.10.008},
  volume       = {50-51},
  year         = {2012},
}

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