Drying kinetic simulation of clay tiles made from the raw material having less clay fraction
Samo za registrovane korisnike
2014
Konferencijski prilog (Objavljena verzija)

Metapodaci
Prikaz svih podataka o dokumentuApstrakt
In order to describe the internal moisture rate and to take all different mechanisms of moisture movement into account, it is suitable to use effective diffusivity as a measure of moisture rate, irrespectively of the mechanisms really involved. This means that all different mechanisms and driving forces for internal moisture transport are lumped together and introduced into effective moisture diffusivity. Hence, diffusion equations are retained and reused with the effective diffusivity coefficient as a measuring parameter of internal moisture ratio. In our previous studies we have presented the calculation method which assumed constant diffusivity. The next goal was to estimate effective diffusivity at various moisture contents, in a real case of non-linear drying curves, and to predict drying kinetic. In our last study we have developed a model for determination of the variable effective diffusivity and identification of the exact transition points between possible drying mechanisms. ...In this paper we have tried to develop more accurate tool for determination of time dependent effective moisture diffusivity. An analytical model and computing procedure were developed to evaluate mass transfer properties and describe drying kinetic of clay tiles having less clay fraction. The proposed procedure was validated with experimental drying data. Presented results have demonstrated that the proposed dying model can be applied for the accurate description of experimental drying kinetics and a reliable estimation of effective diffusivity.
Ključne reči:
Variable diffusivity / Drying process / Diffusion / Convective drying / Clay tilesIzvor:
Advanced Materials Research, 2014, 1036, 3-8Izdavač:
- Trans Tech Publications Ltd
DOI: 10.4028/www.scientific.net/AMR.1036.3
ISBN: 978-3038352402
ISSN: 1022-6680
Scopus: 2-s2.0-84922373477
Institucija/grupa
Institut za ispitivanje materijalaTY - CONF AU - Vasić, Miloš AU - Radojević, Zagorka PY - 2014 UR - http://rims.institutims.rs/handle/123456789/251 AB - In order to describe the internal moisture rate and to take all different mechanisms of moisture movement into account, it is suitable to use effective diffusivity as a measure of moisture rate, irrespectively of the mechanisms really involved. This means that all different mechanisms and driving forces for internal moisture transport are lumped together and introduced into effective moisture diffusivity. Hence, diffusion equations are retained and reused with the effective diffusivity coefficient as a measuring parameter of internal moisture ratio. In our previous studies we have presented the calculation method which assumed constant diffusivity. The next goal was to estimate effective diffusivity at various moisture contents, in a real case of non-linear drying curves, and to predict drying kinetic. In our last study we have developed a model for determination of the variable effective diffusivity and identification of the exact transition points between possible drying mechanisms. In this paper we have tried to develop more accurate tool for determination of time dependent effective moisture diffusivity. An analytical model and computing procedure were developed to evaluate mass transfer properties and describe drying kinetic of clay tiles having less clay fraction. The proposed procedure was validated with experimental drying data. Presented results have demonstrated that the proposed dying model can be applied for the accurate description of experimental drying kinetics and a reliable estimation of effective diffusivity. PB - Trans Tech Publications Ltd C3 - Advanced Materials Research T1 - Drying kinetic simulation of clay tiles made from the raw material having less clay fraction EP - 8 SP - 3 VL - 1036 DO - 10.4028/www.scientific.net/AMR.1036.3 ER -
@conference{ author = "Vasić, Miloš and Radojević, Zagorka", year = "2014", abstract = "In order to describe the internal moisture rate and to take all different mechanisms of moisture movement into account, it is suitable to use effective diffusivity as a measure of moisture rate, irrespectively of the mechanisms really involved. This means that all different mechanisms and driving forces for internal moisture transport are lumped together and introduced into effective moisture diffusivity. Hence, diffusion equations are retained and reused with the effective diffusivity coefficient as a measuring parameter of internal moisture ratio. In our previous studies we have presented the calculation method which assumed constant diffusivity. The next goal was to estimate effective diffusivity at various moisture contents, in a real case of non-linear drying curves, and to predict drying kinetic. In our last study we have developed a model for determination of the variable effective diffusivity and identification of the exact transition points between possible drying mechanisms. In this paper we have tried to develop more accurate tool for determination of time dependent effective moisture diffusivity. An analytical model and computing procedure were developed to evaluate mass transfer properties and describe drying kinetic of clay tiles having less clay fraction. The proposed procedure was validated with experimental drying data. Presented results have demonstrated that the proposed dying model can be applied for the accurate description of experimental drying kinetics and a reliable estimation of effective diffusivity.", publisher = "Trans Tech Publications Ltd", journal = "Advanced Materials Research", title = "Drying kinetic simulation of clay tiles made from the raw material having less clay fraction", pages = "8-3", volume = "1036", doi = "10.4028/www.scientific.net/AMR.1036.3" }
Vasić, M.,& Radojević, Z.. (2014). Drying kinetic simulation of clay tiles made from the raw material having less clay fraction. in Advanced Materials Research Trans Tech Publications Ltd., 1036, 3-8. https://doi.org/10.4028/www.scientific.net/AMR.1036.3
Vasić M, Radojević Z. Drying kinetic simulation of clay tiles made from the raw material having less clay fraction. in Advanced Materials Research. 2014;1036:3-8. doi:10.4028/www.scientific.net/AMR.1036.3 .
Vasić, Miloš, Radojević, Zagorka, "Drying kinetic simulation of clay tiles made from the raw material having less clay fraction" in Advanced Materials Research, 1036 (2014):3-8, https://doi.org/10.4028/www.scientific.net/AMR.1036.3 . .