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Fluid dynamic-based Engineering design of a Full-Scale Device for the improvement of Extra Virgin Olive Oil Yield and Quality by means of Combined Acoustic Cavitation and Thermal Conditioning

机译:基于流体动态的工程设计,用于通过组合声空化和热调节提高特级初榨橄榄油产量和质量的全尺寸装置

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After some hesitations, the scientific community is jointly converging on the benefits due to the ultrasound treatment by means of mechanical effects generated by acoustic cavitation phenomena occurring into the olive oil paste proposed initially by Amirante and Clodoveo. In recent works, many authors have now confirmed that this promising emerging technology produces relevant beneficial effects if applied to the extraction process under well-controlled conditions. In the last years, the industrial applications of ultrasound (US) in the Extra-Virgin Olive Oil (EVOO) extraction process are changing the paradigm of the knowledge in this field of interest due to a great effort of the research activity. In the present work, the design of the device by means a Three-Dimensional (3D) Multiphase Computational Fluid Dynamic (CFD) analysis was performed, which describes the ultrasound effects in the olive paste, necessary to control the US waves propagation. Thus, fluid dynamic analysis allowed to predict the flow path in the ultrasound devices, to evaluate the flow parameters of the olive paste inside the SHE and the cavitation phenomenon, with the aim to find an optimal design, capable to ensure the best ultrasounds and mixing effects. Moreover, experimental results demonstrated that the machine can guarantee an actual simultaneous improvement of the olive oil extraction yield, as well as of the product quality. Finally, the results from sensory evaluations are summarized confirming the goodness of EVOO obtained by means of US.
机译:在一些犹豫之后,科学界共同融合了由于通过由Amirante和Clodopeo提出的橄榄油糊而产生的声学空化现象产生的机械效果来联合收敛。在最近的作品中,许多作者现在已经证实,如果在良好控制的条件下施加到提取过程,这项有前景的新兴技术会产生相关的有益效果。在过去的几年里,由于研究活动的巨大努力,超声橄榄油(EVOO)提取过程的超声(美国)在特级初级橄榄油(EVOO)提取过程中的工业应用正在改变这一感兴趣领域的知识范式。在本作工作中,通过提法的装置设计通过三维(3D)多相计算流体动态(CFD)分析,其描述了控制USIve浆料中的超声效应,以控制US波传播。因此,流体动力学分析允许预测超声装置中的流动路径,以评估她和空化现象内的橄榄膏的流量参数,目的是找到最佳设计,能够确保最佳的超声波和混合效果。此外,实验结果表明,机器可以保证实际同时改善橄榄油提取产量,以及产品质量。最后,概述了感官评估的结果证实了通过我们获得的EVOO的善良。

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