文章摘要
陈秀,卢立新,王军,蒋焕新.枕形袋式气调包装气体置换过程三维流场模拟[J].包装工程,2015,36(15):83-86,123.
CHEN Xiu,LU Li-xin,WANG Jun,JIANG Huan-xin.Three-dimensional Flow Field Simulation of the Gas Displacement Process during Modified Atmosphere Packaging with Pillow-bag[J].Packaging Engineering,2015,36(15):83-86,123.
枕形袋式气调包装气体置换过程三维流场模拟
Three-dimensional Flow Field Simulation of the Gas Displacement Process during Modified Atmosphere Packaging with Pillow-bag
投稿时间:2015-01-13  修订日期:2015-08-10
DOI:
中文关键词: 气调包装  气体置换  装置  流场模拟
英文关键词: modified atmosphere packaging  gas replacement  device  flow field simulation
基金项目:
作者单位
陈秀 江南大学无锡 214122 
卢立新 1. 江南大学无锡 2141222. 江苏省食品先进制造装备技术重点实验室无锡 214122 
王军 1. 江南大学无锡 2141222. 江苏省食品先进制造装备技术重点实验室无锡 214122 
蒋焕新 1. 江南大学无锡 2141222. 江苏省食品先进制造装备技术重点实验室无锡 214122 
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中文摘要:
      目的 研究枕形袋式气调包装气体置换过程的三维流场, 改进气体置换装置的结构。方法 以BBFG-120枕式包装机为物理模型, 设计一种枕形袋式气调包装机气体置换新结构; 建立传统结构与新结构气体置换装置的物理和数值模型; 使用Gambit建立分析模型并划分网格, 应用Fluent软件对气体置换过程进行模拟分析; 建立评价气体置换装置性能的指标, 分析气管置入位置与气管数量对气体置换性能的影响。结果 相较于传统结构, 新结构具有气体置换率较高、 气体耗气量较低、 气体流动平稳和压力分布均匀等特点。结论 新结构在各方面的性能均优于传统结构, 为袋式气调包装机的设计提供了参考。
英文摘要:
      This study aimed to investigate the three-dimensional flow field simulation of the gas displacement process during modified atmosphere packaging with Pillow-bag, so as to improve the structure of the gas displacement device. One kind of gas replacement new structure of pillow bag packaging machine was designed based on BBFG-120 pillow packing machine; The physical and numerical models of gas replacement device was established which include new structure and the traditional structure; The Gambit software was applied to establish an analysis model, and then the numerical simulation of the gas-flow field was conducted using the Fluent software; The evaluation indexes of the performance of gas displacement device were established and the effect of the pipe′ s position and amount on the properties of gas replacement was investigated. Compared to the traditional structures, the new structure has the following advantages:higher rate of gas replacement, lower consumption of gas, smooth gas flow, and uniform pressure distribution. The new structure′ s performance is better than traditional structures in all aspects.
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