Innovative Benthic Lander for Macroalgae Monitoring in Shallow-Water Environments

João Pedro Santana , Nuno Mathias , Richelle Hoveling , Hugo Alves , Tiago Morais

Journal of Marine Science and Application ›› 2020, Vol. 19 ›› Issue (1) : 133 -147.

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Journal of Marine Science and Application ›› 2020, Vol. 19 ›› Issue (1) : 133 -147. DOI: 10.1007/s11804-020-00128-4
Research Article

Innovative Benthic Lander for Macroalgae Monitoring in Shallow-Water Environments

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Abstract

The colonization of underwater environments by exotic seaweeds is causing major ecological problems around the world. This project, referred to AMALIA, aims to transform this current ocean threat into an opportunity by adding value to the macroalgae present off the northwest of the Iberian Peninsula. To do so and to observe the presence of seaweeds in situ, an ocean modular submersible platform was developed. This platform was designed to be capable of detecting and surveying surges of invasive seaweeds while withstanding sea conditions. Conceptual designs followed by a screening process were performed, taking into consideration criteria such as operational range and modularity. An open-frame lander was considered and further developed using buckling criteria. In parallel, a state-of-the-art monitoring system was created using spectral imaging, allowing for the future creation of a macroalgae identification system. In addition, sensorial systems for characterizing growth conditions were introduced. Laboratory trials were executed to assess the capability of the system, and sea trials are currently being performed. Numerical simulations and laboratory trials indicate that the structure is fully capable of being deployed for shallow-water environments with a state-of-the-art invasive seaweed monitoring system while maintaining a high degree of modularity.

Keywords

Benthic landers / Ocean surveillance / Environmental protection / Ocean technology / Marine instrumentation

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João Pedro Santana, Nuno Mathias, Richelle Hoveling, Hugo Alves, Tiago Morais. Innovative Benthic Lander for Macroalgae Monitoring in Shallow-Water Environments. Journal of Marine Science and Application, 2020, 19(1): 133-147 DOI:10.1007/s11804-020-00128-4

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References

[1]

Barbero E, Tomblin J. Euler buckling of thin-walled composite columns. Thin-Walled Struct, 1993, 17(4): 237-258

[2]

Barbier EB. Marine ecosystem services. Curr Biol, 2017, 27(11): R507-R510

[3]

Domokos G, Holmes P, Royce B. Constrained Euler buckling. Mechanics: from theory to computation, 2000, New York: Springer, 413-446

[4]

Erhard G (2013) Designing with plastics. Carl Hanser Verlag GmbH Co KG

[5]

European Sea Observatory Network (2008) Deep-ocean environmental long-term observatory system. ESONEWS:2–5 Available from http://www.esonet-noe.org/content/download/20734/300257/.../

[6]

Ferreira H, Martins A, Valente A, Figueiredo A, da Cruz B, Camilo M, Lobo VS, Pinho C, Olivier A, Silva E, Almeida JM (2014). TURTLE - systems and technologies for deep ocean long term presence. OCEANS'14 MTS/IEEE, St. John’s, Canada, 1-10. https://doi.org/10.1109/OCEANS.2014.7003138

[7]

Geyer RA (ed) (2011) Submersibles and their use in oceanography and ocean engineering. Elsevier

[8]

HADES (2014) HADAL-Lander A. Available from https://web.whoi.edu/hades/hadal-lander-a/ [Accessed on April 10, 2019]

[9]

K.U.M. Umwelt- und Meerestechnik Kiel GmbH (2002). Lander K/MT 100. Available from http://www.kum-kiel.de/fileadmin/pdf/en/Datenblatt_Lander_eng.pdf

[10]

Kongsberg Group (2015) K-Lander autonomous seabed sensor carrier. Available at: https://www.kongsberg.com/globalassets/maritime/km-products/product-documents/k-lander-autonomous-seabed-sensor-carrier

[11]

Kramer IR, Demer LJ. Effects of environment on mechanical properties of metals. Prog Mater Sci, 1961, 9(3): 133-199

[12]

Lu G, Lu G, Fei B. Medical hyperspectral imaging: a review. J Biomed Opt, 2019, 19(1): 010901

[13]

Monnerie L (1990) Mechanical properties of polymeric materials. Stat Mod Fract Disord Media:66–76. https://doi.org/10.1016/B978-0-444-88551-7.50012-4

[14]

Nautilus Marine Services (2019) Instrument Housings – vitrovex. Available from https://www.vitrovex.com/instrumenthousings/#spheres [Accessed on May 6, 2019]

[15]

Pierre Beer F, Russell Johnston E (1981) Mechanics of materials. Ed. Ferdinand P. Beer, E. Russell Johnston. SERBIULA (sistema Librum 2.0)

[16]

Qin J, Chao K, Kim MS, Lu R, Burks TF. Hyperspectral and multispectral imaging for evaluating food safety and quality. J Food Eng, 2013, 118(2): 157-171

[17]

Shah VP (2007) Design considerations for engineering autonomous underwater vehicles. (Doctoral dissertation, Massachusetts Institute of Technology)

[18]

Silva E, Martins A, Almeida JM, Ferreira H, Valente A, Camilo M, Figueiredo A, Pinheiro C (2016) TURTLE - a robotic autonomous deep sea lander. OCEANS 2016 MTS/IEEE, Monterey, 1–5. https://doi.org/10.1109/OCEANS.2016.7761262

[19]

Spagnoli F, Penna P, Giuliani G, Masini L, Martinotti V. The AMERIGO Lander and the Automatic Benthic Chamber (CBA): two new instruments to measure benthic fluxes of dissolved chemical species. Sensors, 2019, 19(11): 2632

[20]

State of Green; Aarhus University (2018) Macroalgae as a new source of bio-based products. Available at: https://stateofgreen.com/en/partners/aarhusuniversity/solutions/macroalgae-as-a-new-source-of-bio-based-products/

[21]

Tengberg A, De Bovee F, Hall P, Berelson W, Chadwick D, Ciceri G, . Benthic chamber and profiling landers in oceanography - a review of design, technical solutions and functioning. Prog Oceanogr, 1995, 35(3): 253-294

[22]

The Ocean Portal Team (2016). The Deep Sea | Smithsonian Ocean Portal

[23]

Uhl F, Oppelt N, Bartsch I. Spectral mixture of intertidal marine macroalgae around the island of Helgoland (Germany, North Sea). Aquat Bot, 2013, 111: 112-124

[24]

Universitat Politécnica de Catalunya (2019) OBSEA. Available from https://obsea.es/about/overview.php [Accessed on April 9, 2019]

[25]

US Department of Commerce, National Oceanic and Atmospheric Administration (2018) What is ocean exploration and why is it important? Available at: https://www.oceanexplorer.noaa.gov/backmatter/whatisexploration.html

[26]

Van der Wal D, Van Dalen J, Wielemaker-van den Dool A, Dijkstra JT, Ysebaert T. Biophysical control of intertidal benthic macroalgae revealed by high-frequency multispectral camera images. J Sea Res, 2014, 90: 111-120

[27]

Wynn RB, Huvenne VAI, Le Bas TP, Murton BJ, Connelly DP, Bett BJ, Ruhla HA, Morris KJ, Peakall J, Parsons DR, Sumner EJ, Darby SE, Dorrell RM, Hunt JE. Autonomous underwater vehicles (AUVs): their past, present and future contributions to the advancement of marine geoscience. Mar Geol, 2014, 352: 451-468

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