DocumentCode
1039106
Title
Comparison of water and saltwater movement in mortar based on a semiempirical electromagnetic model
Author
Peer, Shanup ; Zoughi, Reza
Author_Institution
Electr. & Comput. Eng. Dept., Univ. of Missouri-Rolla, Rolla, MO, USA
Volume
53
Issue
4
fYear
2004
Firstpage
1218
Lastpage
1223
Abstract
The presence of chloride ions in steel-reinforced structures leads to the corrosion of the reinforcement thus compromising the integrity and strength of the structure. Thus, it is of great interest to nondestructively detect and evaluate free chloride content in concrete. To this end, an investigation was initiated where two mortar cubes were soaked in distilled water and saltwater solutions, respectively. Their temporal microwave reflection properties were measured using open-ended rectangular waveguides on a daily basis for three cycles, each lasting 35 days. Subsequently, a semiempirical electromagnetic model was developed to simulate the reflection properties of the cubes. The outcome of the model describes the water and saltwater distribution within the cubes. In addition, these distributions depict the manner by which the water and saltwater content temporally vary within the cubes. The presence of salt causes the saltwater distribution to be different than the water distribution in the respective cubes. This paper presents a comparison between the water and saltwater distributions obtained from this model. The results of such a comparison would then indicate the influence of salt on the mechanism of mass transport within the saltwater cube.
Keywords
chlorine; concrete; corrosion testing; ions; nondestructive testing; seawater; water; chloride ions; free chloride content; microwave reflection property; nondestructively detection; open-ended rectangular waveguides; saltwater distribution; saltwater movement; semiempirical electromagnetic model; steel-reinforced structures; water distribution; water movement; Concrete; Corrosion; Electromagnetic measurements; Electromagnetic modeling; Electromagnetic reflection; Electromagnetic waveguides; Lead compounds; Microwave measurements; Mortar; Rectangular waveguides; Chloride; microwaves; moist substances; mortar; nondestructive testing;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2004.830741
Filename
1316008
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