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首页> 外文期刊>Innovative Food Science & Emerging Technologies >Using chaotic advection to enhance the continuous heat-hold-cool sterilisation process
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Using chaotic advection to enhance the continuous heat-hold-cool sterilisation process

机译:使用混沌对流来增强连续的冷热灭菌过程

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摘要

In a conventional continuous sterilisation process, the food product flows steadily through a heat-hold-cool system, but viscous flow poses a serious challenge as heat transfer is controlled by thermal conduction which leads to a wide radial temperature distribution and slow heating of the core region of the flow. We use a validated Computational Fluid Dynamics (CFD) model to show that the superimposition of transverse mechanical oscillations on the heat-hold-cool sterilisation process of a viscous single-phase Newtonian fluid, creates a strong oscillatory-perturbed or chaotic advection flow which leads to significant improvements in thermal processing uniformity and product quality compared with a conventional process with or without an inline static mixer fitted. Chaotic advection flow produces processing conditions which are more in line with the high temperature for short tithe (HTST) assumption. Results show that the vibrated process leads to faster nearly-uniform heating and cooling, thus, achieving much higher levels of sterility and product quality in a much shorter process.
机译:在常规的连续灭菌过程中,食品稳定地流过保温系统,但是粘性流构成了严峻的挑战,因为热量的传导是通过热传导控制的,从而导致径向温度分布较宽且芯体加热缓慢流的区域。我们使用经过验证的计算流体动力学(CFD)模型来表明,横向机械振荡在粘性单相牛顿流体的保温冷却杀菌过程中的叠加会产生强烈的振荡扰动或混沌对流,从而导致与装有或不装有在线静态混合器的常规工艺相比,可以显着提高热处理的均匀性和产品质量。混沌对流产生的工艺条件更符合短效价(HTST)假设的高温。结果表明,振动过程导致更快的近乎均匀的加热和冷却,从而在更短的过程中实现了更高水平的无菌性和产品质量。

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