Influence of flow velocity on biofilm growth in a tubular heat exchanger-condenser cooled by seawater.

Biofouling

a Department of Sciences & Techniques of Navigation and Ship Construction , University of Cantabria, Santander , Spain.

Published: February 2016

The influence of flow velocity (FV) on the heat transfer process in tubes made from AISI 316L stainless steel in a heat exchanger-condenser cooled by seawater was evaluated based on the characteristics of the resulting biofilm that adhered to the internal surface of the tubes at velocities of 1, 1.2, 1.6, and 3 m s(-1). The results demonstrated that at a higher FV, despite being more compact and consistent, the biofilm was thinner with a lower concentration of solids, and smoother, which favoured the heat transfer process within the equipment. However, higher velocities increase the initial cost of the refrigerating water-pumping equipment and its energy consumption cost to compensate for the greater pressure drops produced in the tube. The velocity of 1.6 m s(-1) represented the equilibrium between the advantages and disadvantages of the variables analysed for the test conditions in this study.

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http://dx.doi.org/10.1080/08927014.2015.1070404DOI Listing

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