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气调保鲜运输车变频通风系统调控与能耗分析
引用本文:吕恩利,陆华忠,韩小腾,郭嘉明,王广海.气调保鲜运输车变频通风系统调控与能耗分析[J].农业工程学报,2012,28(16):248-253.
作者姓名:吕恩利  陆华忠  韩小腾  郭嘉明  王广海
作者单位:1. 华南农业大学南方农业机械与装备关键技术教育部重点实验室,广州510642
2. 华南农业大学工程学院,广州510642
3. 广东机电职业技术学院,广州510515
基金项目:现代农业产业技术体系建设专项资金(CARS-33-13);国家自然科学基金项目(31101363);广东省自然科学基金资助项目(10151064201000038);广州市农业科技项目(2011);广东省科技计划项目(2011B020312 003);广东省扶持农业机械化发展专项项目(粤农计﹝2011﹞150号)。
摘    要:为解决果蔬气调保鲜运输过程中通风系统能耗高、果蔬干耗损失大等问题,该文建立了保鲜运输变频通风试验平台。通过改变风机频率,研究厢体内不同通风量对液氮充注气调、制冷、超声波加湿和换气等装置的工作性能调节特性,基于满足果蔬保鲜要求和能量消耗低的原则,优化了液氮充注气调、制冷、超声波加湿和换气等装置工作的风机频率。设计了气调保鲜运输变频通风系统,并通过试验与定频通风系统进行了能耗对比,试验结果表明:变频通风系统能够满足果蔬保鲜要求,且总能耗比定频通风系统节约15.2%,风机能耗比定频通风系统的风机能耗低81.8%。气调保鲜运输变频通风系统的设计,对提升果蔬气调保鲜运输技术水平具有一定的参考价值。

关 键 词:液氮  制冷  超声波  通风  变频  能耗
收稿时间:2011/12/30 0:00:00
修稿时间:7/5/2012 12:00:00 AM

Regulation and energy consumption analysis on frequency ventilation system of fresh-keeping truck with controlled atmosphere
Lü Enli,Lu Huazhong,Han Xiaoteng,Guo Jiaming,Wang Guanghai.Regulation and energy consumption analysis on frequency ventilation system of fresh-keeping truck with controlled atmosphere[J].Transactions of the Chinese Society of Agricultural Engineering,2012,28(16):248-253.
Authors:Lü Enli  Lu Huazhong  Han Xiaoteng  Guo Jiaming  Wang Guanghai
Institution:1.Key Laboratory of Key Technology on Agricultural Machine and Equipment,Ministry of Education,South China Agricultural University,Guangzhou 510642,China;2.College of Engineering,South China Agricultural University,Guangzhou 510642,China;3.College of Automotive,Guangdong Jidian Polytechnic,Guangzhou 510515,China)
Abstract:To resolve the high energy consumption present in ventilation system and vast weight loss in fruits and vegetable during fresh-keeping transportation, an experimental platform with frequency conversion ventilation system and controlled atmosphere system was established. The frequency of ventilator was altered to research the regulating characteristics of variable air volume on working performance of devices including liquid nitrogen injecting equipments, refrigerator, ultrasonic humidifier and air interchanger. To meet the fruit and vegetable fresh-keeping requirements and minimize energy consumption, the ventilator frequency was optimized for improving the work performance of the devices. Frequency conversion ventilation system was designed, and the energy consumption of fixed frequency ventilation system and measurement were compared. The results indicated that frequency conversion ventilation system could meet fruit and vegetable fresh-keeping requirements, and the energy consumption of which was less than fixed frequency ventilation system at 15.2%. The energy consumption of frequency conversion ventilator was less than fixed frequency ventilator at 81.8%. The design on frequency conversion ventilation system could provide a reference for the improvement of fresh-keeping transportation technology with controlled atmosphere.
Keywords:liquid nitrogen  refrigeration  ultrasonic waves  ventilation  frequency conversion  energy consumption
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