TR
EN
The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used as Building Stones
Abstract
One of the main deterioration factors of natural building stones is the presence of liquids entering the material. The most common mechanism of liquid ingress into building stones is capillary water absorption. It is necessary to know the capillary water absorption capacity, an important hygrothermal material feature for the deterioration of building stones. For this purpose, the effects of 5 different water temperatures (22, 30, 40, 50, and 60 oC) in both water and salty (NaCl) water in Ayazini tuff and İscehisar andesite were investigated. At the end of 2880 min, at 22 oC, Ayazini tuff absorbed 10.47% more capillary water in salty water than in water and 6.46% more capillary water at 30 oC. It was calculated that when the water temperature rises to 40 oC, it absorbs capillary water at 7.18%, 3.22% at 50 oC, and 3.86% at 60 oC. In the İscehisar andesite at the end of 2880 min, salty water absorbed 36.70% more capillary water at 22 oC and 57.21% more at 30 oC than water. It absorbed capillary water 27.42% at 40 oC, 20.84% at 50 oC, and 10.85% at 60 oC. In terms of salty water absorption rate, it has been determined that the water absorption amount decreases if the water temperature rises to 50 and 60 oC.
Keywords
References
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Details
Primary Language
English
Subjects
Building Technology, Civil Construction Engineering, Construction Materials
Journal Section
Research Article
Early Pub Date
June 27, 2023
Publication Date
June 30, 2023
Submission Date
January 11, 2023
Acceptance Date
June 19, 2023
Published in Issue
Year 2023 Volume: 5 Number: 1
APA
Çelik, M. Y., & Köken, İ. (2023). The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used as Building Stones. Journal of Innovations in Civil Engineering and Technology, 5(1), 17-47. https://izlik.org/JA87SP72BB
AMA
1.Çelik MY, Köken İ. The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used as Building Stones. JICivilTech. 2023;5(1):17-47. https://izlik.org/JA87SP72BB
Chicago
Çelik, Mustafa Yavuz, and İzzet Köken. 2023. “The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used As Building Stones”. Journal of Innovations in Civil Engineering and Technology 5 (1): 17-47. https://izlik.org/JA87SP72BB.
EndNote
Çelik MY, Köken İ (June 1, 2023) The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used as Building Stones. Journal of Innovations in Civil Engineering and Technology 5 1 17–47.
IEEE
[1]M. Y. Çelik and İ. Köken, “The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used as Building Stones”, JICivilTech, vol. 5, no. 1, pp. 17–47, June 2023, [Online]. Available: https://izlik.org/JA87SP72BB
ISNAD
Çelik, Mustafa Yavuz - Köken, İzzet. “The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used As Building Stones”. Journal of Innovations in Civil Engineering and Technology 5/1 (June 1, 2023): 17-47. https://izlik.org/JA87SP72BB.
JAMA
1.Çelik MY, Köken İ. The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used as Building Stones. JICivilTech. 2023;5:17–47.
MLA
Çelik, Mustafa Yavuz, and İzzet Köken. “The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used As Building Stones”. Journal of Innovations in Civil Engineering and Technology, vol. 5, no. 1, June 2023, pp. 17-47, https://izlik.org/JA87SP72BB.
Vancouver
1.Mustafa Yavuz Çelik, İzzet Köken. The Effect of Temperature and Salty Water on the Capillary Water Absorption Capacity of Volcanic Rocks Used as Building Stones. JICivilTech [Internet]. 2023 Jun. 1;5(1):17-4. Available from: https://izlik.org/JA87SP72BB