Optimization of process parameters and numerical modeling of heat and mass transfer during simulated solar drying of paddy

被引:32
作者
Jha, Aprajeeta [1 ]
Tripathy, P. P. [1 ]
机构
[1] Indian Inst Technol Kharagpur, Agr & Food Engn Dept, Kharagpur 721302, W Bengal, India
关键词
Finite element model; Hybrid solar dryer; Moisture profile; Optimization; Paddy; Temperature profile; MOISTURE DIFFUSIVITY; RICE; GRAIN; DRYER; TEMPERATURE; PERFORMANCE; CONVECTION; RADIATION; KINETICS;
D O I
10.1016/j.compag.2021.106215
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Present study aims to optimize the process parameters and to develop a 3-dimensional, multi-layered finite element model for predicting moisture and temperature profile during simulated solar drying of paddy. Drying of paddy was conducted in an in-house designed photovoltaic integrated hybrid solar dryer. Design expert software was employed for optimization of drying process parameters (power level, air velocity and moisture content). Analysis of variance (ANOVA) was performed at significance level (P < 0.05) for the linear and interaction effects of the variables on various quality parameters. The simulation studies were performed using COMSOL Multi-physics platform. Optimum parameters for drying paddy were found at 700 W, 3.5 m/s and 12% moisture with optimal temperature, milling yield and drying time of 46 degrees C, 71.48% and 90 min, respectively, having the desirability factor of 0.92. Milling yield was observed to vary linearly with moisture content. Furthermore, the three dimensional model was successfully developed for paddy loaded in bulk as well as, accounting husk, bran and endosperm layers. Diffusion coefficient of endosperm, bran and husk was found to be 2.95 x 10(-11), 8.66 x 10(-)(12) and 6.00 x 10(-)(12) m(2)/s, respectively. The optimized parameters can be successfully used to dry paddy to ensure maximum throughput and uniform quality of products in every drying batch. Additionally, the developed model was validated and can be employed for monitoring the drying parameters to standardize the hybrid solar drying process.
引用
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页数:12
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共 50 条
[21]  
Jha A, 2017, INT C CHEM ENG, V5, P492
[22]  
Jha A., 2017, TECHNOL CHALLEN, V1, P197, DOI [10.4324/9781315153209, DOI 10.4324/9781315153209]
[23]   Influence of solar drying and storage conditions on microstructure, crack propagation and nano-hardness of paddy and wheat [J].
Jha, Aprajeeta ;
Tripathy, Punyadarshini Punam .
JOURNAL OF CEREAL SCIENCE, 2020, 95
[24]   Recent Advancements in Design, Application, and Simulation Studies of Hybrid Solar Drying Technology [J].
Jha, Aprajeeta ;
Tripathy, P. P. .
FOOD ENGINEERING REVIEWS, 2021, 13 (02) :375-410
[25]   Influence of enzymatic tempering on milling characteristics, flour quality, crystallinity and microstructure of wheat [J].
Jha, Aprajeeta ;
Baruah, Kamal Narayan ;
Tripathy, Punyadarshini Punam .
JOURNAL OF FOOD MEASUREMENT AND CHARACTERIZATION, 2020, 14 (04) :1986-1997
[26]  
Kingshuk Dhali Kingshuk Dhali, 2018, Agricultural Engineering International: CIGR Journal, V20, P188
[27]  
LAGUE C, 1991, T ASAE, V34, P1812, DOI 10.13031/2013.31804
[28]  
LU R, 1992, T ASAE, V35, P1955, DOI 10.13031/2013.28822
[29]   High temperature spouted bed paddy drying with varied downcomer air flows and moisture contents: Effects on drying kinetics, critical moisture content, and milling quality [J].
Madhiyanon, T ;
Soponronnarit, S .
DRYING TECHNOLOGY, 2005, 23 (03) :473-495
[30]   Modeling and simulation of moisture transfer during solar drying of carrot slices [J].
Mahapatra, Archana ;
Tripathy, Punyadarshini Punam .
JOURNAL OF FOOD PROCESS ENGINEERING, 2018, 41 (08)