Determination of designing and operating parameters of circulating concurrent-flow rapeseed dryer

Le Anh Duc

Abstract


This study aimed to investigate the designing and operating parameters of the circulating concurrent-flow dryer for rapeseed drying, such as drying section height, airflow rate, grain flow velocity, and drying air temperature, to meet the dryer performance in the best performance conditions, minimum cost, and the quality of seed. The simulation program which exhibited good fitness with experimental data performing on a pilot scale concurrent-flow dryer 200 kg a batch was used in this study. The results showed that the optimal parameters of drying section height, air flow rate, grain flow velocity and drying air temperature were found at 0.52 m, 30 cmm m–2, 5.5 m h–1, and 115oC, respectively. At these conditions, corresponding drying rate reached 3.01 %,w.b., fuel energy consumption was 4977 kJ kg–1 water, and germination rate was 94.5%.

 

Keywordsrapeseed, drying section height, airflow rate, grain flow velocity, drying air temperature.

 


References


. AOSA, 2011. Rules for testing seeds. Association of Official Seed Analysis. Lincoln, NE.

Divsalar, M., Oskouei B. and Sheidaei S., 2013. Evaluation of seed vigor and field emergence of sweet corn seeds. Technical Journal of Engineering and Applied Science, Vol 3: 83–87.

. Duc, L.A., Han J.W., Hong S.J., Choi H.S., Kim Y.H. and Keum D.H., 2008. Physical properties of rapeseed (I). Journal of Biosystems Engineering 33(2):101–105.

. Han, J.W., Keum D.H., Kim H. and Hong S.J., 2007. Development of a rice circulating concurrent-flow dryer (II) - Validation of drying simulation model. Journal of Biosystems Engineering 32(5):309–315.

. Islam M.T., Marks B.P. and Bakker-Arkema F.W., 2004. Optimization of commercial ear-corn dryers. Agricultural Engineering International: the CIGR Journal of Scientific Research and Development. Manuscript FP 04 007. Vol. VI. December 2004.

. Keum, D.H., Han J.G., Kang S.R., Kim O.W., Kim H., Han J.W. and Hong S.J., 2005. Development of rice circulating concurrent-flow dryer (I) - Performance test of pilot scale dryer. Journal of Biosystems Engineering 10(2):97–106.

. Le Anh Duc, Keum Dong Hyuk., 2009. Simulation of drying rapeseed in circulating concurrent-flow dryer. Proceeding of the 2009 International forum on Strategic technologies: Renewable energy and energy conservation, 21-23 Oct. 2009, 66–73.

Le Anh Duc, 2015. Study on circulating concurrent flow dryer for drying rapeseed. International Journal on Advanced Science Engineering Information Technology, Vol. 5 No.4, 367–371.

. Schoenau, G.J., Arinze E. A. and Sokhansanj S., 1995. Simulation and optimization of energy systems for in-bin drying of canola grain (Rapeseed). Energy Conversion and Management 36(I):41–59.

.Vertec Industries Limited, Alberta, Canada, 1982. Evaluation report 289. Humboldt, ISSN 0383-3445.


Full Text: PDF

Refbacks

  • There are currently no refbacks.


Publisher by Asia Pacific Network for Sustainable Agriculture, Food and Energy Network (SAFE Network).