Laboratory assessment of corrosion rate of carbon steel ground heat exchangers
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Published:2022-11-11
Issue:
Volume:58
Page:41-46
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ISSN:1680-7359
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Container-title:Advances in Geosciences
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language:en
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Short-container-title:Adv. Geosci.
Author:
Cadelano GianlucaORCID, Bortolin Alessandro, Di Sipio Eloisa, Ferrarini Giovanni, Bison Paolo, Bernardi Adriana, Dalla Santa GiorgiaORCID, Galgaro Antonio
Abstract
Abstract. The materials used in the manufacture of geothermal heat exchangers for shallow geothermal applications play an important role in the overall system performance, especially if grout is not being used to seal the boreholes in which the heat exchanger is installed. The subject of this study is the durability evaluation of a vertical coaxial ground heat
exchanger made of steel that is coupled directly to the ground. This
solution minimizes the thermal resistance between the heat exchanger and the ground, but presents the important drawback of removing any protection
toward the surrounding environment Among the materials proposed for
manufacturing such vertical geothermal heat exchanger, carbon steel is
suitable and have potential, due to its low cost and high thermal
conductivity. The main disadvantage of this material is that it is strongly
subject to corrosive attack, according to the chemo-physical properties of
the underground. This study investigated the corrosion behaviour of carbon
steel used in an experimental underground heat exchanger and assessed its
durability over time. Corrosion rate of steel samples were measured in the
laboratory by weight loss method after exposure over a specified period in a
selected ground medium. Different ground conditions were tested, resulting
in different densities and moisture contents of ground samples collected on
the field. Based on the results, the corrosion rate of carbon steel is
evaluated as a function of water content and rate of ground compaction. This
information has allowed to advance more accurate quantitative forecast of
the expected operational life of installed geothermal exchangers and their
safety over time.
Publisher
Copernicus GmbH
Subject
General Chemical Engineering
Reference14 articles.
1. Arriba-Rodriguez, L., Villanueva-Balsera, J., Ortega-Fernandez, F., and Rodriguez-Perez, F.: Methods to Evaluate Corrosion in Buried Steel
Structures: A Review, Metals, 8, 334, https://doi.org/10.3390/met8050334, 2018. 2. Ashby, M.: Materials selection in mechanical design, 4th edn., Elsevier, 646 pp., https://doi.org/10.1016/C2009-0-25539-5, 2010. 3. ASTM International: ASTM G162-18 Standard Practice for Conducting and Evaluating Laboratory Corrosion Tests in Soils, ASTM Committee, ISBN 978-1-6822-1804-0, 2021. 4. Baboian, R., Munger, C. G., and Treseder, R. S.: Nace Corrosion Engineer's Reference Book, NACE, Houston, TX, ISBN 1-57590-139-0, 1991. 5. Boban, L., Miše, D., Herceg, S., and Soldo, V.: Application and Design
Aspects of Ground Heat Exchangers, Energies, 14, 2134, https://doi.org/10.3390/en14082134, 2021.
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