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Computational and experimental studies on the development of an energy-efficient drier using ribbed triangular duct solar air heater

机译:使用罗纹三角管太阳能空气加热器开发节能干燥机的计算与实验研究

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Triangular duct cross-section is introduced for solar air heater (SAH) of an indirect type of solar dryer (ITSD). Using computational study, the thermo-hydraulic performance of triangular duct SAH with inclined ribs for varying rib inclination (30 degrees alpha 75 degrees) in the turbulent flow regime (5000 Re 17500) is studied. With the rib configuration providing maximum thermos-hydraulic performance, a ribbed rectangular duct SAH is designed, and the performance of the same is compared to the former for similar heat input. Results show that the ribbed (alpha = 45 degrees) triangular duct has 17% higher effectiveness compared to the latter and 79% when compared to smooth SAH. Ribs in triangular duct solar air heater facilitate the increase in temperature even in the core of the duct, delivering the air at 6 K additional temperature relative to a rectangular ribbed duct for same heat input and flow Re. The superiority of the ribbed triangular SAH is further confirmed by studying the drying characteristics of Okra and two variants of banana, namely Nendran and Robusta for the maximum temperature obtained at the outlet of the respective SAH. Various thin layer drying models available in the literature were analyzed, and Modified page model represented the drying behaviour with R-2 = 0.99. For ITSD, ribbed triangular duct SAH exhibits a maximum of 60.3% reduction in moisture ratio with a maximum increase of 97.9% increase in average values of diffusivity coefficient confirming that it is an energy-efficient design for an ITSD.
机译:引入三角管横截面,用于间接型太阳能干燥器(ITSD)的太阳能空气加热器(SAH)。使用计算研究,研究了具有倾斜肋的三角形管道SAH的热水液压性能,用于在湍流状态(5000

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