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Numerical simulation of temperature and relative humidity in zero energy cool chamber

机译:零能冷却室内温度和相对湿度的数值模拟

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Abstract: Temperature and relative humidity are important parameters that can affect the storage of food in a zero energy cool chamber (ZECC). The distributions of average temperature and relative humidity are influenced by factors such as chamber size, water temperature, load weight and filler thickness. In this research, thermal environment analysis using numerical simulation of biological respiration was conducted for tomatoes stored in a ZECC. The ZECC was composed of inner and outer brick walls, filler (a mixture of sand and zeolite), water between the walls and a shading curtain. The results obtained from the numerical model were compared by setting different values for each factor. The following conclusions are drawn after comparison and analysis of results: (1) the distributions of average temperature and relative humidity are strongly related to the thickness of the filler – a thicker filler causes a lower temperature; (2) the water temperature in the filler exerts little influence on the average temperature and relative humidity; and (3) the lowest temperature and the highest relative humidity can be achieved with a chamber size of 0.6 m and a load weight of 30 kg. In addition, to validate the results of the numerical model, the simulation results are compared with experimental data, which show good agreement. It is confirmed that numerical simulation can be satisfactorily applied to predict the distribution of environmental parameters such as temperature and relative humidity in a cool chamber. Keywords: zero energy cool chamber, numerical model, temperature, relative humidity DOI: 10.3965/j.ijabe.20171003.3050 Citation: Liu Y H, Lyu E L, Rahman M M, Wang Y, Guo J M, Zhang J. Numerical simulation of temperature and relative humidity in zero energy cool chamber. Int J Agric & Biol Eng, 2017; 10(3): 185–193.
机译:摘要:温度和相对湿度是重要的参数,会影响零能耗冷藏室(ZECC)中食物的存储。平均温度和相对湿度的分布受腔室尺寸,水温,负载重量和填料厚度等因素影响。在这项研究中,对存储在ZECC中的番茄进行了热环境分析,使用了生物呼吸的数值模拟。 ZECC由内部和外部砖墙,填料(沙子和沸石的混合物),墙壁之间的水和遮阳帘组成。通过为每个因子设置不同的值来比较从数值模型获得的结果。在对结果进行比较和分析后得出以下结论:(1)平均温度和相对湿度的分布与填料的厚度密切相关–填料越厚,温度就越低; (2)填料中的水温对平均温度和相对湿度影响很小; (3)在0.6 m的腔室尺寸和30 kg的负载重量下可以实现最低的温度和最高的相对湿度。另外,为验证数值模型的结果,将仿真结果与实验数据进行了比较,表明吻合良好。可以确认,数值模拟可以令人满意地应用于预测环境参数(例如温度和相对湿度)在冷室中的分布。关键词:零能耗冷却室数值模型温度相对湿度DOI:10.3965 / j.ijabe.20171003.3050引文:刘永辉,吕柳,拉曼MM,王Wang,郭建明,张健。温度和相对湿度的数值模拟在零能耗的冷却室内。国际农业与生物工程杂志,2017; 10(3):185–193。

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