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Comparative performance of coriander dryer coupled to solar air heater and solar air-heater-cum-rockbed storage

机译:香菜烘干机与太阳能空气加热器和太阳能空气加热器兼岩床的比较性能

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In the present communication, efforts have been made to study the drying characteristics of coriander in a stationary 0.5 tonne/batch capacity deep-bed dryer coupled to a solar air heater and a rockbed storage unit to receive hot air during sunshine and off-sunshine hours, respectively. The drying bed was assumed to consist of a number of thin layers of grains stacked upon each other. The theoretical investigation was made by writing the energy and mass balance equations for different components of the dryer-cum-air-heater-cum-storage and by adopting a finite difference approach for simulation. The results revealed that for reducing the moisture content from 28.2% (db) to 11.4% (db) the solar air heater takes 27 cumulative sunshine hours, i.e. about 3 sunshine days, whereas the solar air heater and the rockbed storage combined take 31 cumulative hours, i.e. about 2 days and 2 nights at an air flow velocity of 250 kg/hm2.
机译:在本通讯中,已努力研究在固定的0.5吨/批容量深床干燥机中香菜的干燥特性,该干燥机与太阳能空气加热器和岩床存储单元相连,以便在日照时间和非日照时间接收热空气, 分别。假定干燥床由许多彼此堆叠的薄颗粒层组成。通过编写干燥机兼空气加热器兼存储的不同组件的能量和质量平衡方程,并采用有限差分法进行仿真,从而进行了理论研究。结果表明,将水分含量从28.2%(db)降低到11.4%(db),太阳能空气加热器需要27个累积日照小时,即大约3个日照天,而太阳能空气加热器和石床存储合计需要31个累积日照时间。小时,即空气流速为250 kg / hm2时约2天2夜。

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