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基于Fluent的顶风式热泵干燥箱气流场分析及优化

陈子民 莫江婷 陈广生 郭小璇 朱贤文

中国农业科技导报2024,Vol.26Issue(10):135-144,10.
中国农业科技导报2024,Vol.26Issue(10):135-144,10.DOI:10.13304/j.nykjdb.2023.0203

基于Fluent的顶风式热泵干燥箱气流场分析及优化

Analysis and Optimization of the Airflow Field in a Head-air Heat Pump Dryer Based on Fluent

陈子民 1莫江婷 1陈广生 1郭小璇 2朱贤文3

作者信息

  • 1. 广西电网有限责任公司南宁供电局,南宁 530029
  • 2. 广西电网有限责任公司电力科学研究院,南宁 530023
  • 3. 南方电网数字电网科技(广东)有限公司,广州 510663
  • 折叠

摘要

Abstract

As the main energy-saving drying equipment for fruit and vegetable products at present,the uniformity of the internal flow field is very important to the efficiency and quality of drying.In this paper,the internal flow field of top-wind heat pump drying oven was optimized using the research method of Fluent dynamic grid numerical simulation optimization and experimental verification,which improved the inter-layer uniformity and drying efficiency of the flow field.Based on the structural characteristics of the headwind drying box,a controllable moving air deflector mechanism was innovatively designed,and 3 schemes including uniform motion,segmented uniform motion and uniform+stagnation compound motion were compared.The simulation results showed that the uniform+stagnation compound motion scheme had the best interlayer uniformity of flow field.After optimization,the uneven coefficient of air volume distribution between layers was as low as 7.02%,and the effectiveness of the optimization scheme was verified by the experiment of green plum drying.The standard deviation of water content of each layer after optimization was 0.01.The system provided reference for the flow field design and structure optimization of the top-wind heat pump drying oven.

关键词

顶风式干燥箱/Fluent/动网格/结构优化/流场均匀性

Key words

top-air drying ovens/fluent/dynamic grid/structural optimization/flow field uniformity

分类

农业科技

引用本文复制引用

陈子民,莫江婷,陈广生,郭小璇,朱贤文..基于Fluent的顶风式热泵干燥箱气流场分析及优化[J].中国农业科技导报,2024,26(10):135-144,10.

基金项目

广西重点研发计划项目(2021AB38037) (2021AB38037)

广西电网公司科技项目(GXKJXM20200427,GXKJXM20200428). (GXKJXM20200427,GXKJXM20200428)

中国农业科技导报

OA北大核心CSTPCD

1008-0864

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