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A COMPUTATIONAL HEAT TRANSFER AND OPTIMIZATION STUDY OF DRYING OF PEAS AND RICE IN A ROTARY DRYER

机译:旋转干燥机中豌豆和大米干燥的计算传热和优化研究

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The paper reports a numerical simulation study of drying of peas and rice grains in a rotary dryer with superheated steam, dry air, and humid air (20%, 40%, 60% and 80% moisture content by volume) at 1 bar as the drying media. The initial water contents in peas and rice grains are 75% and 13% (by weight), respectively. The thermal model includes turbulent convection heat transfer from the gas to the refractory wall and solids, radiation exchange among the gas, refractory wall and the solid surface, conduction in the refractory wall, and mass and energy balances of the gas and the solids. In the absence of experimental data of food drying, the present model has been satisfactorily validated with the experimental and numerical results reported in Sass (1967, Sass, A., "Simulation of Heat-Transfer Phenomena in a Rotary Kiln", Industrial & Engineering Chemistry Process Design and Development, 6(4), pp. 532-535) for iron ore and cement. It is found that for superheated steam there is an optimum kiln inner diameter at which the predicted kiln length is the highest. For dry air, the predicted kiln length monotonically decreases with a decrease in kiln inner diameter. A detailed parametric study lent a good physical insight into the drying process. An optimization study has been conducted for superheated steam as the drying medium using the Univariate Search method to minimize the length of the kiln with an upper limit on the inlet gas temperature as the constraint.
机译:本文报道了在旋转式干燥机中以1 bar的过热蒸汽,干燥空气和潮湿空气(水分含量分别为20%,40%,60%和80%的水分含量)干燥豌豆和米粒的数值模拟研究。干燥介质。豌豆和米粒中的初始水分分别为75%和13%(按重量计)。热模型包括从气体到耐火壁和固体的湍流对流传热,气体,耐火壁和固体表面之间的辐射交换,耐火壁中的传导以及气体和固体的质量和能量平衡。在没有食品干燥的实验数据的情况下,本模型已通过Sass(1967,Sass,A.,“旋转窑中传热现象的模拟”)中报道的实验和数值结果令人满意地进行了验证。化学过程设计与开发,第6(4)页,第532-535页),适用于铁矿石和水泥。已经发现,对于过热蒸汽,有一个最佳的窑内径,在该直径处预测的窑长是最高的。对于干燥空气,随着窑炉内径的减小,窑炉的预计长度单调减小。详细的参数研究为干燥过程提供了良好的物理见解。使用单变量搜索方法对作为干燥介质的过热蒸汽进行了优化研究,以最小化窑炉的长度,并以进口气体温度的上限作为约束条件。

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