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Perforation-mediated modified atmosphere packaging Part I. Development of a mathematical model

机译:穿孔介导的气调包装第一部分:数学模型的开发

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摘要

A space-and-time dependent mathematical model describing perforation-mediated modified atmosphere packages was developed for respiring commodities. The model is based primarily on fundamental laws, with empirical relations used only when no other approach can be devised or when there is a significant advantage from using an empirical approach. The computational domain is divided into four subdomains: a part of the ambient storage environment; the perforation, allowing gas exchange between the package and the ambient; the commodity layer, inside the package; and the headspace above the commodity, but also contained in the package. The package walls are rigid and impermeable to gases but heat conducting. The commodity is treated as a homogenous porous medium with distributed sinks for oxygen consumption and distributed sources for carbon dioxide production due to commodity respiration. The commodity model also accounts for water vapour production due to transpiration and removal caused by possible condensation. The effects of commodity temperature and headspace gas composition on oxygen consumption and carbon dioxide production are accounted through a respiration model. The model permits the determination of the gas mixture velocity as the solution of Darcy's law in the commodity layer and the Navier-Stokes equations in the headspace, perforation, and surrounding ambient storage area. Transport of oxygen, carbon dioxide, water vapour and nitrogen is modelled based on Maxwell-Stefan equations coupled with the Navier-Stokes equations and Darcy's law. Solubility of carbon dioxide within the commodity has been included in the model. Commodity temperature and gas mixture temperature are modelled as solutions of the energy equation in the appropriate subdomains, coupled through transpiration, condensation, and convective heat transfer at the commodity surface.
机译:建立了一个时空相关的数学模型,该模型描述了穿孔介导的气调包装,用于呼吸商品。该模型主要基于基本定律,只有在无法设计其他方法或使用经验方法具有明显优势时才使用经验关系。计算域分为四个子域:环境存储环境的一部分;穿孔,允许包装与周围环境之间进行气体交换;包装内的商品层;和商品上方的顶部空间,但也包含在包装中。包装壁是刚性的,并且对于气体是不可渗透的,但是是导热的。该商品被视为均质的多孔介质,由于商品的呼吸作用,其分布着用于氧气消耗的水槽和分布着二氧化碳的生产源。该商品模型还考虑了由于蒸腾作用而产生的水蒸气,以及由于可能的冷凝而导致的蒸发。通过呼吸模型计算了商品温度和顶空气体成分对氧气消耗和二氧化碳产生的影响。该模型允许确定气体混合物的速度,作为商品层中达西定律的解以及顶部空间,射孔和周围环境存储区中的Navier-Stokes方程。氧气,二氧化碳,水蒸气和氮气的传输是基于Maxwell-Stefan方程以及Navier-Stokes方程和达西定律建模的。该模型中已包含商品中二氧化碳的溶解度。商品温度和混合气体温度被建模为相应子域中能量方程的解,并通过商品表面的蒸腾作用,冷凝作用和对流传热来耦合。

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