Check of the methodology for determination of profile of reflector of beam stream
DOI:
https://doi.org/10.15587/1729-4061.2013.18735Keywords:
uniform irradiation, reflector profile, semi-elliptical cross-section, experimental apparatus, computer simulationAbstract
The study of the shape of radiant flux reflector, designed for uniform total irradiation of receiver with semi-elliptical cross-section by a single radiator, was continued. Physical and computer experiments were conducted in the paper to verify previously developed analytical methodology for determining the reflector profile based on the solution of inverse problem. Using the experimental apparatus with reflector allows conducting a series of physical experiments to determine the temperature in the working chamber followed by construction of the field of irradiation density using the computer algebra system MathCad. The computer experiment, conducted for the same heat system using the optical analysis software TracePro, allows determining the same parameter. The comparison of heat flux density, produced in accordance with the developed theoretical methodology, by computer simulation and physical experimentation proves the accuracy of the developed methodology for determining the reflector profile ensuring uniform irradiation of receiver with semi-elliptical cross-section. The use of reflectors, profiled in accordance with the proved methodology, will reduce the power capacity of infrared equipment for frying food products, as well as enhance the organoleptic properties of products.
References
- Пат. 4317441 США, МКИ А 47 J 37/00. Broiler apparatus. Устройство для жарения мяса [Текст] / Roger M. Berg (США). – № 67368; заявл. 17.08.79; опубл. 02.03.82, НКИ 126/41. – 12 с.
- Пат. 4664923 США, МКИ А 23 L 1/01. Method of infrared tunnel oven cooking of food products. ИК-аппарат для приготовления пищи [Текст] / Wagner Dennis, Wells Harold D. (США). – № 778350; заявл. 24.10.85; опубл. 12.05.87, НКИ 426/233. – 14 с.
- Lawson, D. A. An accurate program for radiation modelling in the desigh of high-tempersature furnaces [Text] / D. A. Lawson, C. D. Ziesler // IMA J Management Math. – 1996. – № 7(2). – C. 109–116.
- Sheridan, P. Application of far infra-red radiation to cooking of meat products [Text] / P. Sheridan, N. Shilton // Journal of Food Engineering. – 1999. – Vol.41(3). – C. 203–208.
- Плевако, В. П. Фрагментований рефлектор для рівномірного опромінювання приймача з напівеліптичною формою перерізу [Текст] / В. П. Плевако, С. М. Костенко, І. П. Педорич // Прогресивна техніка та технології харчових виробництв, ресторанного господарства і торгівлі : зб. наук. пр. / Харківський держ. ун-т харчування і торгівлі. – Харків : ХДУХТ, 2008. – Вип. 2(8). – С. 266–275.
- Плевако, В. П. Геометричне моделювання поверхні рефлектора з урахуванням втрат теплоти [Текст] / В. П. Плевако, С. М. Костенко, І. П. Педорич // Прикладна геометрія та інженерна графіка. Праці Таврійського державного агротехнічного університету. – Вип. 4, т. 47. – Мелітополь : ТДАТУ, 2010. – С. 51–60.
- Плевако, В. П. Комп’ютерне моделювання процесу опромінювання приймача напівеліптичного перерізу [Текст] / В. П. Плевако, С. М. Костенко; голов. ред. О. О. Шубін; Донец. нац. ун-т економіки і торгівлі ім. М. Туган-Барановського // Обладнання та технології харчових виробництв : темат. зб. наук. пр. – 2009. – Вип. 22. – С. 269–273.
- Dowdy, S. M. Statistics for research [Text] / S. M. Dowdy, Stanley Wearden. – New York : Wiley, 1991. – 629 с.
- Student. The probable error of a mean [Text] / Student // Biometrika. – 1908. – № 6(1). – C. 1–25.
- Driggers, R. G. Encyclopedia of Optical Engineering [Text] / Ronald G. Driggers. – New York: Marcel Dekker, 2003. – 3 тома.
- Berg Roger, M. (1982). Broiler apparatus. U.S. patent 4, 317, 441.
- Wagner, D., Wells Harold, D. (1987). Method of infrared tunnel oven cooking of food products. U.S. patent 4, 664, 923.
- Lawson, D. A., Ziesler, C. D. (1996). An accurate program for radiation modelling in the desigh of high-tempersature furnaces. IMA J Management Math, 7 (2), 109-116.
- Sheridan, P., Shilton, N. (1999). Application of far infra-red radiation to cooking of meat products. Journal of Food Engineering, 41(3), 203-208.
- Plevako, V., Kostenko, S., Pedorich, I. (2008). Fragmental reflector for uniform irradiation receiver of semi-elliptic cut. Progressive Technique and Technologies of Food Productions, Restaurant Economy and Trade, 2(8), 266–275.
- Plevako, V., Kostenko, S., Pedorich, I. (2010). Geometrical design of surface of reflector taking into account losses of warmth. Applied Geometry and Engineering Graphic, 4, 47, 51–60.
- Plevako, V., Kostenko, S. (2009). Computer design of process of irradiation of the receiver of semi-elliptical cut. Equipment and Technologies of Food Productions, 22, 269–273.
- Dowdy, S. M., Wearden, S. (1991). Statistics for research. New York: Wiley, 629.
- Student. (1908). The probable error of a mean. Biometrika, 6(1), 1–25.
- In: Driggers, R. G. (2003). Encyclopedia of Optical Engineering. New York: Marcel Dekker. 3 vols.
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Copyright (c) 2014 Володимир Павлович Плевако, Станіслав Миколайович Костенко, Ірина Петрівна Педорич
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