Finite element based model of parchment coffee drying
รหัสดีโอไอ
Creator Preeda Prakotmak
Title Finite element based model of parchment coffee drying
Publisher Faculty of Engineering, Khon Kaen University
Publication Year 2558
Journal Title KKU Engineering Journal
Journal Vol. 42
Journal No. 1
Page no. 39-49
Keyword Drying,Coffee,Finite element,Parchment coffee,Water diffusivity
ISSN 0125-8273
Abstract Heat and mass transfer in the parchment coffee during convective drying represents a complicated phenomena since it is important to consider not only the transport phenomena during drying but also the various changes of the drying materials. In order to describe drying of biomaterials adequately, a suitable mathematical model is needed. The aim of the present study was to develop a 3-D finite element model to simulate the transport of heat and mass within parchment coffee during the thin layer drying. Thin layer drying experiments of coffee bean and parchment coffee were conducted in the temperature range of 40-60oC, the relative humidity ranged from 14 to 28% and drying air velocity of 1.4 m/s. The moisture diffusivities in different coffee's components (parchment and coffee bean) were determined by minimizing the RMSE between the predicted and the experimental data of moisture contents. The simulated results showed that the moisture diffusivities of coffee bean were three orders of magnitude higher than those of the parchment. Moisture diffusivities of coffee components were found to significantly increase (P<0.05) with the increase in drying air temperature and were expressed by Arrhenius-type equations. Moreover, the model was also used to predict the moisture gradient in coffee bean during drying. The model simulates the moisture contents in different components of parchmentcoffee well and it provides a better understanding of the transport processes in the different components of theparchment coffee.
KKU Engineering Journal

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