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2012 | 26 | 2 |

Tytuł artykułu

Airflow resistance in soybean

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Resistance of material to airflow is an important factor to consider in the design of a dryer or an aeration system. The airflow resistance of soybean was determined with the modified airflow resistance apparatus. It was found that pressure drop increased with increase in airflow rate, bulk density, bed depth and decreased with moisture content. Modified Shedd equation, Hukill and Ives equation and modified Ergun equation were examined for pressure drop prediction. Airflow resistance was accurately described by modified Shedd equation followed by Hukill and Ives equation and modified Ergun equation. The developed statistical model comprised of airflow rate, moisture content and bulk density could fit pressure drop data reasonably well.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

26

Numer

2

Opis fizyczny

p.137-143,ref.

Twórcy

autor
  • Department of Agricultural Process Engineering, Mahatama Phule Krishi Vidyapeeth, Rahuri Dist., Ahmednagar 413-722, India
autor
  • Department of Agricultural Process Engineering, Dr. Panjabrao Deshmukh Krishi Vidyapeeth, Akola 444-104, India
  • Department of Agricultural Process Engineering, Dr. Panjabrao Deshmukh Krishi Vidyapeeth, Akola 444-104, India
autor
  • Department of Agricultural Process Engineering, Dr. Panjabrao Deshmukh Krishi Vidyapeeth, Akola 444-104, India

Bibliografia

  • ASABE, 2007. Standards for resistance to airflow of grains, seeds, and other agricultural products, and perforated metal sheets. ASABE Press, St. Josepth, MI, USA.
  • Ergun S., 1952. Fluid flow through packed columns. Chem. Eng. Progress., 48, 89-94.
  • Hukill W.V. and Ives N.C., 1955. Radial airflow resistance of grain. J. Agric. Eng., 36(5), 332-335.
  • IOS, 2007. Area and production of crops in India. Indian Official Statistics, Directorate of Economics and Statistics, New Delhi, India.
  • Kashaninejad M. and Tabil L.G., 2009. Resistance of bulk pistachio nuts (cv. ohadi) to airflow. J. Food Eng., 90(1), 104 -109.
  • Khatchatourian O.A. and Oliveira F.A., 2006. Mathematical modeling of airflow and thermal state in large aerated grain storage. Biosys. Eng., 95(2), 159-169.
  • Kibar H. and Ozturk T., 2008. Physical and mechanical proper- ties of soybean. Int. Agrophysics, 22, 239-244.
  • Lope G., Tabil J., Kienholz H., Marshall Q., and Eliason V.,
  • 2003. Airflow resistance of sugar beet. J. Sugar Beet Res., 40(3), 110-113.
  • £ukaszuk J., Molenda M., Horabik J., Szot B., and Montross M.D., 2008. Airflow resistance of wheat bedding as influenced by the filling method. J. Agric. Eng. Res., 54(2), 50-57.
  • Mohsenin N.N., 1986. Physical Properties of Plant and Animal Materials. Gordon Breach Press, New York, USA.
  • Nimkar P.M. and Chattopadhyay P.K., 2003. Airflow resistance of pulse grains. J. Food Sci. Technol., 40(1), 28-34.
  • Nimkar P.M. and Khobragade B.V., 2006. Resistance of moth gram to airflow. Int. J. Food Sci. Technol., 41, 488-497.
  • RajabipourA., ShahbaziF.,Mohtasebi S., andTabatabaeefar A., 2001. Airflow resistance in walnuts. J. Agric. Sci. Technol., 3, 257-264.
  • Ray S.J.,PordesimoL.O., andWilhelmL.R., 2002.Airflowresis- tance of some pelleted feed. Trans. ASAE., 47(2), 513-519.
  • ReedS.D.,ArmstrongP.R.,BrusewitzG.H., andStoneM.L., 2001. Resistance of marigold flower to airflow. Trans. ASAE, 44(3), 639-462.
  • Sacilik K., 2004. Resistance of bulk poppy seeds to airflow. Biosys. Eng., 89(4), 435-443.
  • Shahbazi F. and Rajabipour A., 2008. Resistance of potatoes to airflow. J. Agric. Sci. Technol., 10, 1-9.
  • SheddC.K., 1953.Resistance of grains and seeds to airflow. J. Agric. Eng., 34(9), 616 -619.
  • Spiegel M.R., 1982. Outline of Theory and Problems of Statistics. McGraw-Hill Press, New York, USA.
  • Tabak S., Askarov B., Rashidov U., Tabak I., Manor G., and Shmulevich I., 2004. Airflow through granular beds packed with cotton seeds. Biosys. Eng., 88(2), 163-173.
  • Verboven P., Hoang M.L., Baclmans M., and Nicolaii B.M., 2004. Airflow through beds of apples and chicory roots. Biosys. Eng., 88(1), 117-125.
  • Yurtlu Y.B., Yesilogl U.E., and Arslanoglu F., 2010. Physical properties of bay laurel seeds. Int. Agrophys., 24, 325- 328.

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