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Moisture transfer models for slabs drying

机译:板坯干燥的水分传递模型

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This paper deals with an experimental and theoretical investigation of drying of moist slabs. Experimental part includes the measurement of the moisture content distributions of eggplant slices with 5 mm thickness and 35 mm diameter during drying at the temperatures of 55℃, 65℃, and 75℃ and the velocities of 1.0 and 1.5 m/s, respectively. Four drying models are used to determine drying process parameters (e.g., drying coefficient, lag factor, and half-drying time) and moisture transfer parameters (e.g., moisture diffusivity and moisture transfer coefficient), and to calculate moisture content distributions. The calculated values are then compared with the experimental moisture data during the drying of eggplant slices at different drying air temperatures and flow velocities. An excellent agreement is obtained between the calculations and experimental measurements for the cases considered. Also, the experimental drying times are determined and compared with the ones obtained through four different drying models. The results show that all four models are capable of estimating the drying parameters and moisture content distributions. The experimental drying data and model findings are expected to be useful to drying industry.
机译:本文涉及湿板干燥的实验和理论研究。实验部分包括在55℃,65℃和75℃的温度下干燥速度分别为1.0和1.5 m / s的5mm厚和35mm直径的茄子切片的水分含量分布的测量。使用四个干燥模型来确定干燥过程参数(例如干燥系数,滞后因子和半干燥时间)和水分传递参数(例如水分扩散系数和水分传递系数),并计算水分含量分布。然后将计算得出的值与在不同干燥空气温度和流速下茄子切片干燥期间的实验湿度数据进行比较。对于所考虑的情况,在计算和实验测量之间获得了极好的协议。此外,确定实验干燥时间,并将其与通过四种不同干燥模型获得的干燥时间进行比较。结果表明,所有四个模型都能够估计干燥参数和水分含量分布。实验干燥数据和模型发现有望对干燥工业有用。

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