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자료유형
학술저널
저자정보
저널정보
한국농공학회 한국농공학회논문집 한국농공학회논문집 제57권 제6호
발행연도
2015.1
수록면
1 - 7 (7page)

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Most of chloride diffusion models based on finite difference method (FDM) could not express the diffusion in horizontal direction at each elevation. Toovercome these weakness, two dimensional chloride ion penetration model based on finite element method (FEM) to be able to combine variousmulti-physics simultaneously was suggested by introducing moving mesh technique. To avoid the generation of mesh being able to be distorted dependingon the relative movement of water level to static concrete, a rectangular type of mesh was intentionally adopted and the total number of meshes wasempirically selected. The simulated results showed that the contents of surface chloride decreased following to the increase of elevation in the top part oflow sea level, whereas there were no changes in the bottom part of low level. In the DuraCrete model, the diffusion coefficient of splashed zone is generallysmaller than submerged zone, whereas the trend of Life365 model is reverse. Therefore, it could be understood that the developed model using movingmesh technique effectively reflects DuraCreteTMmodel rather than Life365TMmodel. In the future, the model will be easily expanded to be combined withvarious multi-physics models considering water evaporation, heat of hydration, irradiation effect of sun and so on because it is based on FEM.

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