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鲜茶叶通风篮筐热特性的数值分析

Numerical Analysis on Heat Characteristics of the Ventilation Basket for Fresh Tea Leaves.

作者信息

Zeng Zhixiong, Jiang Yihong, Ma Chengying, Chen Jin, Zhang Xiaodan, Lin Jicheng, Liu Yanhua, Guo Jiaming

机构信息

College of Engineering, South China Agricultural University, Guangzhou 510642, China.

Maoming Branch, Guangdong Laboratory for Lingnan Modern Agriculture, Guangzhou 525000, China.

出版信息

Foods. 2022 Jul 22;11(15):2178. doi: 10.3390/foods11152178.

Abstract

Plastic baskets are commonly used as containers for fresh tea leaves during storage and transport after harvest. Nevertheless, there are significant challenges in controlling the core temperature of the basket since fresh tea leaves still maintain a certain degree of respiration after being harvested, with extremely high temperatures being the major factor for the color change of fresh tea leaves. A numerical model was developed to improve the temperature control of the plastic basket, by which the influence of different structural parameters on the core temperature in the plastic baskets with fresh tea leaves was analyzed. The accuracy of the model in predicting airflow and temperature distributions was validated against experimental data. The maximum RMSE was 1.158 °C and the maximum MRE was 5.410% between the simulated and test temperature value. The maximum deviation between the simulated velocity and test velocity was 0.11 m/s, the maximum RE was 29.05% and the maximum SD was 0.024. The results show that a plastic basket with a ventilation duct efficiently decreased the temperature of the fresh tea leaves and significantly affected the heat transfer between the fresh tea leaves and the ambient air compared to the plastic basket without a ventilation duct. Furthermore, the effect on the heat transfer was further expanded by the use of a plastic basket with a ventilation duct when the plastic baskets were stacked. The maximum temperature differences were 0.52 and 0.40 according to the stacked and single-layer products, respectively. The ambient temperature and the bulk density of the fresh tea leaves have a significant influence on the core temperature.

摘要

塑料筐常用于鲜茶叶采摘后的储存和运输。然而,由于鲜茶叶采摘后仍保持一定程度的呼吸作用,控制筐内核心温度面临重大挑战,高温是鲜茶叶颜色变化的主要因素。开发了一个数值模型来改善塑料筐的温度控制,通过该模型分析了不同结构参数对装有鲜茶叶的塑料筐内核心温度的影响。针对实验数据验证了该模型预测气流和温度分布的准确性。模拟温度值与测试温度值之间的最大均方根误差为1.158℃,最大相对误差为5.410%。模拟速度与测试速度之间的最大偏差为0.11m/s,最大相对误差为29.05%,最大标准差为0.024。结果表明,与没有通风管道的塑料筐相比,带有通风管道的塑料筐能有效降低鲜茶叶的温度,并显著影响鲜茶叶与周围空气之间的热传递。此外,当塑料筐堆叠时,使用带有通风管道的塑料筐对热传递的影响会进一步扩大。根据堆叠产品和单层产品,最大温差分别为0.52和0.40。环境温度和鲜茶叶的堆积密度对核心温度有显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29be/9330920/34ac5b75b37a/foods-11-02178-g001.jpg

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