4.5 Article

Coupled Heat and Mass Transfer in a Solar Grain Dryer

期刊

DRYING TECHNOLOGY
卷 31, 期 1, 页码 82-90

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/07373937.2012.719561

关键词

Coupled partial differential equations; Finite difference method; Heat and mass transfer; Solar grain dryer

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This paper presents the analysis of a coupled heat and mass transfer process in a fixed-bed solar grain dryer. Measurements of moisture concentration and air humidity along with temperature measurements were carried out in a solar grain dryer located in Port Harcourt, Nigeria, at the latitude of 4.858 degrees N and longitude of 8.372 degrees E. The process was also modelled, mathematically, by a set of partial differential equations that were coupled within the grain and through the grain boundary with the hot drying air. A finite difference scheme was used to obtain the moisture concentration and air humidity, and temperature fields within the grain and drying air. There was good agreement between the theoretical and experimental results at specified Biot and Posnov numbers, and varying Fourier number. The effects of time, space, and key model parameters such as the Biot and Posnov numbers and the initial conditions of the grains and drying air were simulated and discussed. The results from this study can be used to specify the design parameters for solar grain dryers.

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