DocumentCode
3763245
Title
The feasibility of electromagnetic waves in determining the moisture content of concrete blocks
Author
P. Kot;A. Shaw;K. O. Jones;J. D. Cullen;A. Mason;A. I. Al-Shamma´a
Author_Institution
Built Environment and Sustainable Technologies (BEST) Research Institute, School of Built Environment, Liverpool John Moores University, UK
fYear
2015
Firstpage
251
Lastpage
256
Abstract
In some of the tropical countries such as Malaysia, various conditions of temperature and rainfall throughout the year are severe when compared to European countries. Humidity and rainfall throughout the year are likely to affect the durability of material used in buildings. Very high level of rainfall causes significant issues in concrete flat roofs due membrane failure. This would potentially contribute to the occurrence of severe roof leaks, especially for buildings that use flat roof design solutions. Membrane failure is hard to recognise due to the slow process of water leakage into the surface which most of the time causes dampness and reduces buildings´ structural performance. To monitor this condition effectively, non-destructive test methods are required to recognise problems at an early stage to avoid further damages to concrete structure. This paper presents the use of electromagnetic waves for the purpose of monitoring concrete blocks´ moisture level which will be highlighted. This study experimentally investigated the propagation of EM waves through the concrete blocks and their interaction with water. Novel microwave sensor described in the paper operates in the 2 GHz to 6 GHz frequency range using a Vector Network Analyser. Results of experimental tests confirmed that microwaves could be used as an alternative non-destructive method for identifying water ingress into the concrete blocks.
Keywords
"Moisture","Temperature measurement","Microwave antennas","Concrete","Temperature sensors","Microwave theory and techniques"
Publisher
ieee
Conference_Titel
Sensing Technology (ICST), 2015 9th International Conference on
Electronic_ISBN
2156-8073
Type
conf
DOI
10.1109/ICSensT.2015.7438402
Filename
7438402
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