An investigation into the effects of marine biofilm on the roughness and drag characteristics of surfaces coated with different sized cuprous oxide (Cu2O) particles

Author:

Li Chang1ORCID,Atlar Mehmet2,Haroutunian Maryam1,Norman Rose1,Anderson Colin3

Affiliation:

1. Marine, Offshore and Subsea Technology group, School of Engineering, Newcastle University, Newcastle upon Tyne, UK;

2. Department of Naval Architecture Ocean and Marine Engineering, University of Strathclyde, Glasgow, UK;

3. Department of Research and Development, American Chemet Corporation, East Helena, Montana 59635, USA

Publisher

Informa UK Limited

Subject

Water Science and Technology,Applied Microbiology and Biotechnology,Aquatic Science

Reference61 articles.

1. Atlar M, Bashir M, Turkmen S, Yeginbayeva I, Carchen A, Politis G. 2015. Design, manufacture and operation of a strut system deployed on a research catamaran to collect samples of dynamically grown biofilms in-service. The 4th International Conference on Advanced Model Measurement Technology for the Maritime Industry (AMT’15), Istanbul. Istanbul Technical University Press. p. 67–82.

2. Atlar M, Turkmen S, Bashir M. 2015. Design of a strut system for RV-The Princess Royal to collect samples of dynamically grown biofilms in-service. SEAFRONT project Deliverable D5.10.

3. Atlar M, Turkmen S, Yeginbayeva I, Carchen A. 2015. Commissioning and deployment of a strut arrangement on board The Princess Royal for dynamic biofilm sample collection. SEAFRONT project Deliverable D5.11.

4. Roughness Corrections for the k–ω Shear Stress Transport Model: Status and Proposals

5. Baier RE. 1973. Influence of the initial surface condition of materials on bioadhesion. In The Third International Congress on Marine Corrosion and Fouling; Gaithersburg, MD, USA: Northwestern University Press; p. 633–639.

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