Investigation on mass transfer model of drying of porous materials based on exponential diffusion coefficient

Establishing mass transfer models of mineral porous materials in wet state is of great significance for understanding the internal moisture distribution and optimizing parameters during drying processes.Based on Lewis-Scherwood drying model, a one-dimensional heat and mass transfer diffusive model b...

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Main Author: Zhang Tongqian
Format: Article
Language:English
Published: Emergency Management Press 2020-12-01
Series:矿业科学学报
Subjects:
Online Access:http://kykxxb.cumtb.edu.cn/cn/article/doi/10.19606/j.cnki.jmst.2020.06.007
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author Zhang Tongqian
author_facet Zhang Tongqian
author_sort Zhang Tongqian
collection DOAJ
description Establishing mass transfer models of mineral porous materials in wet state is of great significance for understanding the internal moisture distribution and optimizing parameters during drying processes.Based on Lewis-Scherwood drying model, a one-dimensional heat and mass transfer diffusive model by convective drying of porous materials was established by using the dynamic vaporization latent heat and exponential capillary diffusion coefficient.The average relative error of the improved model was determined to be 4.6% by comparing the experimental and the calculated value of water content decrease under the condition of convective drying on three porous material samples.By comparing the improved model, the traditional model using constant latent heat and constant diffusion coefficient, and the results from drying experiment of porous material samples, it is verified that the improved model has higher accuracy than the traditional model.The improved model is suitable for predicting the water distribution in porous mineral materials, which provides a reference for study of the prediction method of the water content in porous mineral materials in different drying conditions.
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spelling doaj.art-f3fa202242444398844ed509ede91ed72022-12-22T04:11:12ZengEmergency Management Press矿业科学学报2096-21932020-12-015664865410.19606/j.cnki.jmst.2020.06.00720200607Investigation on mass transfer model of drying of porous materials based on exponential diffusion coefficientZhang Tongqian0School of Mechanical Electronic & Information Engineering, China University of Mining & Technology-Beijing, Beijing 100083, ChinaEstablishing mass transfer models of mineral porous materials in wet state is of great significance for understanding the internal moisture distribution and optimizing parameters during drying processes.Based on Lewis-Scherwood drying model, a one-dimensional heat and mass transfer diffusive model by convective drying of porous materials was established by using the dynamic vaporization latent heat and exponential capillary diffusion coefficient.The average relative error of the improved model was determined to be 4.6% by comparing the experimental and the calculated value of water content decrease under the condition of convective drying on three porous material samples.By comparing the improved model, the traditional model using constant latent heat and constant diffusion coefficient, and the results from drying experiment of porous material samples, it is verified that the improved model has higher accuracy than the traditional model.The improved model is suitable for predicting the water distribution in porous mineral materials, which provides a reference for study of the prediction method of the water content in porous mineral materials in different drying conditions.http://kykxxb.cumtb.edu.cn/cn/article/doi/10.19606/j.cnki.jmst.2020.06.007porous mineral materialsheat and mass transfermaterial drying
spellingShingle Zhang Tongqian
Investigation on mass transfer model of drying of porous materials based on exponential diffusion coefficient
矿业科学学报
porous mineral materials
heat and mass transfer
material drying
title Investigation on mass transfer model of drying of porous materials based on exponential diffusion coefficient
title_full Investigation on mass transfer model of drying of porous materials based on exponential diffusion coefficient
title_fullStr Investigation on mass transfer model of drying of porous materials based on exponential diffusion coefficient
title_full_unstemmed Investigation on mass transfer model of drying of porous materials based on exponential diffusion coefficient
title_short Investigation on mass transfer model of drying of porous materials based on exponential diffusion coefficient
title_sort investigation on mass transfer model of drying of porous materials based on exponential diffusion coefficient
topic porous mineral materials
heat and mass transfer
material drying
url http://kykxxb.cumtb.edu.cn/cn/article/doi/10.19606/j.cnki.jmst.2020.06.007
work_keys_str_mv AT zhangtongqian investigationonmasstransfermodelofdryingofporousmaterialsbasedonexponentialdiffusioncoefficient