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Influence of material structure on air-borne ultrasonic application in drying

机译:材料结构对机载超声在干燥中应用的影响

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This work aims to contribute to the understanding of how the properties of the material being dried affect air-borne ultrasonic application. To this end, the experimental drying kinetics (40℃C and 1 m/s) of cassava (Manihot esculenta) and apple (Malus domestica var. Granny Smith) were carried out applying different ultrasonic powers (0, 6, 12, 19, 25 and 31 kW/m~3). Furthermore, the power ultrasound-assisted drying kinetics of different fruits and vegetables (potato, eggplant, carrot, orange and lemon peel) already reported in previous studies were also analyzed. The structural, textural and acoustic properties of all these products were assessed, and the drying kinetics modeled by means of the diffusion theory. A significant linear correlation (r > 0.95) was established between the identified effective diffusivity (D_W) and the applied ultrasonic power for the different products. The slope of this relationship (SDUP) was used as an index of the effectiveness of the ultrasonic application; thus the higher the SDUP, the more effective the ultrasound application. SDUP was well correlated (r≥0.95) with the porosity and hardness. In addition, SDUP was largely affected by the acoustic impedance of the material being dried, showing a similar pattern with the impedance than the transmission coefficient of the acoustic energy on the interface. Thus, soft and open-porous product structures exhibited a better transmission of acoustic energy and were more prone to the mechanical effects of ultrasound. However, materials with a hard and closed-compact structure were less affected by acoustic energy due to the fact that the significant impedance differences between the product and the air cause high energy losses on the interface.
机译:这项工作旨在帮助人们了解被干燥材料的性能如何影响航空超声应用。为此,在不同的超声功率下(0、6、12、19, 25和31 kW / m〜3)。此外,还分析了先前研究中已经报道的不同水果和蔬菜(马铃薯,茄子,胡萝卜,橙子和柠檬皮)的功率超声辅助干燥动力学。评估了所有这些产品的结构,质地和声学特性,并通过扩散理论对干燥动力学进行了建模。在确定的有效扩散率(D_W)与不同产品的施加超声功率之间建立了显着的线性相关性(r> 0.95)。这种关系的斜率(SDUP)被用作超声应用有效性的指标;因此,SDUP越高,超声应用越有效。 SDUP与孔隙率和硬度密切相关(r≥0.95)。另外,SDUP受干燥材料的声阻抗的影响很大,与界面上声能的传输系数相比,SDUP的阻抗模式相似。因此,柔软且开孔的产品结构表现出更好的声能传输,并且更容易受到超声波的机械作用。但是,由于产品与空气之间的明显阻抗差异会在界面上造成高能量损失,因此具有坚硬且紧凑结构的材料受声能的影响较小。

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