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Simulation of Gas and Water Vapor Exchange in Perforated-film Modified Atmosphere Packaging under Dynamic Storage Conditions

机译:动态储存条件下多孔膜气调包装中气体和水蒸气交换的模拟

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摘要

A mathematical model and computational algorithm were developed for simulation of CO_2, N_2, and water vapor exchange in perforated - film modified atmosphere packaging as a means of determining optimal packaging conditions for dynamic distribution environments that involve changes in temperature and humidity. The computational results obtained using the algorithm were validated experimentally. The mathematical model includes the phenomena of convection and diffusion through the film perforations. Inthe computational algorithm, the temperature and humidity of the atmosphere outside the package are read at intervals of At and the volume and concentration of O_2, CO_2, N_2, and water vapor inside the package, together with cumulative transpiration, C02 evolution, and water vapor condensation, are computed. Some differences were observed between the computed and experimentally measured values of 02 and C02 concentrations and the changes in sample weight. Nonetheless, the results of the computation, based on the algorithm, were generally in good agreement with the experimental results, which were thereby validated. The above-mentioned differences were attributable to increase in the effective permeability of a perforation due to airflow outside the package, which was not included in the computational assumption related to intraperforation diffusion. Further improvement can be achieved by adjusting the effective permeability of the perforation for the external atmospheric flow.
机译:开发了数学模型和计算算法,用于模拟多孔膜改性气氛包装中的CO_2,N_2和水蒸气交换,以此为确定涉及温度和湿度变化的动态分配环境的最佳包装条件。实验验证了使用该算法获得的计算结果。数学模型包括通过薄膜穿孔的对流和扩散现象。在计算算法中,以At的间隔读取包装外部大气的温度和湿度,并且包装内部O_2,CO_2,N_2和水蒸气的体积和浓度,以及累积蒸腾作用,CO2释放和水蒸气冷凝,计算。在计算和实验测量的O 2和CO 2浓度值与样品重量变化之间观察到一些差异。尽管如此,基于该算法的计算结果通常与实验结果非常吻合,从而得到了验证。上述差异归因于由于包装外部的气流导致的穿孔的有效渗透率增加,这未包括在与穿孔内扩散相关的计算假设中。通过调节穿孔对外部大气流的有效渗透率,可以实现进一步的改进。

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