首页> 外文会议>ASME biennial conference on engineering systems design and analysis >CFD PARAMETRIC STUDY OF THE INFLUENCE OF NUMBER AND ARRANGEMENT OF MEAT CARCASSES IN THE THERMAL PERFORMANCE OF REFRIGERATION ROOMS - CASE STUDY
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CFD PARAMETRIC STUDY OF THE INFLUENCE OF NUMBER AND ARRANGEMENT OF MEAT CARCASSES IN THE THERMAL PERFORMANCE OF REFRIGERATION ROOMS - CASE STUDY

机译:CFD参数研究肉屠宰数量和排列对冷藏室热性能的影响-案例研究

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This paper describes the numerical results of a CFD parametric studies of the influence on the thermal performance of a cold room by (1) the number and arrangement (n = 6, 9, 18, 30 and 40) of meat carcasses hanging in an airway; (2) the air temperature in the antechamber (T= 5°C; 14°C and 22°C); and of (3) opening the door of the cold room. The case studies were tested in a real facility. A steady state 3D CFD model of the cold room is developed, allowing the detailed evaluation of the airflow and heat transfer for each case study. The thermal conduction within the meat carcasses is also predicted. The numerical predictions show that the average air temperature inside the cold room as well as the average carcass temperatures increase with the number of products and depend on the arrangement of the carcasses in the airway. A minimum space between carcasses is required to improve the refrigeration process. Similarly, the heat load of the cold room increases with the air temperature of the antechamber and when the door of the cold room is opened. The carcasses temperature profile becomes less uniform when the door is opened, being the temperature of carcasses located near the door strongly affected. These parametric studies allow to evaluate details of the air flow and heat transfer by convection and conduction inside goods that can contribute to the design of cold rooms in order to focus on the improvement of thermal performance and consequently of food safety and energy efficiency.
机译:本文描述了CFD参数研究的数值结果,该研究通过以下方式对冷室的热性能产生影响:(1)悬挂在气道中的肉尸体的数量和排列方式(n = 6、9、18、30和40) ; (2)前室的气温(T = 5°C; 14°C和22°C); (3)打开冷藏室的门。案例研究在真实的设备中进行了测试。开发了冷藏室的稳态3D CFD模型,可以针对每个案例研究对气流和传热进行详细评估。还可以预测肉car体内部的热传导。数值预测表明,冷藏室内的平均空气温度以及平均temperatures体温度随产品数量的增加而增加,并取决于气管中car体的排列方式。屠体之间需要最小的空间以改善制冷过程。类似地,冷藏室的热负荷随着前室的空气温度以及冷藏室的门打开而增加。当门打开时,屠体的温度分布变得不太均匀,这是因为位于门附近的屠体的温度受到严重影响。这些参数研究可以评估货物内部的对流和传导对空气流动和传热的影响,从而有助于冷藏室的设计,从而专注于改善热性能,进而改善食品安全性和能源效率。

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