•  
  •  
 

Abstract

This paper discusses the influence on the energy saving effect of cold storage plate refrigerator from the aspects of phase change cold storage material, cold plate placement and thermal insulation material, and prospects the future research direction of cold storage plate refrigerator.

Publication Date

3-28-2020

First Page

232

Last Page

236

DOI

10.13652/j.issn.1003-5788.2020.03.044

References

[1] NDRAHA N,HSIAO H-I,VLAJIC J,et al.Time-temperature abuse in the food cold chain:Review of issues,challenges,and recommendations[J].Food Control,2018,89(1):12-21.
[2] 李月明.冷藏运输设备用相变蓄冷介质及应用基础研究[D].哈尔滨:哈尔滨商业大学,2015:18.
[3] JAMES S J,JAMES C,EVANS J A.Modelling of food transportation systems:A review[J].International Journal of Refrigeration,2006,29(6):947-957.
[4] 吴学红,王春煦,高茂条,等.相变蓄冷技术在食品冷链中的应用进展[J].冷藏技术,2016(3):5-11.
[5] LIU Ming,WASIM Saman,FRANK Bruno.Development of a novel refrigeration system for refrigerated trucks incorporating phase change material[J].Applied Energy,2012,92(1):336-342.
[6] 刘广海,吴俊章,FOSTER,等.多温蓄冷车设计与车内温度场分析[J].农业机械学报,2019,28(4):309-316.
[7] SHARMA A,SHUKLA A,CHEN C R,et al.Development of phase change materials(PCMs)for low temperature energy storage applications[J].Sustainable Energy Technologies and Assessments,2014,7(2):17-21.
[8] 苑坤杰,张正国,方晓明,等.水合无机盐及其复合相变储热材料的研究进展[J].化工进展,2016,24(6):1 820-1 826.
[9] 陶文博,谢如鹤.有机相变蓄冷材料的研究进展[J].制冷学报,2016,37(1):52-59.
[10] 李金田,茅靳丰.无机水合盐三水乙酸钠作相变储热材料的研究进展[J].储能科学与技术,2018,16(5):881-887.
[11] 吕岩.常规工况空调有机相变蓄冷材料研究[D].天津:天津大学,2017:15.
[12] 陈文朴,章学来,黄艳,等.甲酸钠低温相变材料的研制及其在蓄冷箱中的应用[J].制冷学报,2017,7(1):68-72.
[13] 李靖,谢如鹤,刘广海,等.冷藏运输用新型低温相变材料及装备的研制[J].制冷学报,2018,19(4):32-37.
[14] YANG Ying,YAN Hong-yuan,SHEN Hai-ying.Development of a low temperature phase transforming composed material for cool storage[J].Journal of Superconductivity & Novel Magnetism,2010,23(6):1 115-1 117.
[15] 班超方,卢立新,潘嘹.冷冻型复合相变蓄冷材料的制备与性能评价[J].化工新型材料,2019,17(5):218-221.
[16] ORO E,BARRENECHE C,FARID M M,et al.Experimental study on the selection of phase change materials for low temperature applications[J].Renewable Energy,2013,57(2):130-136.
[17] 贾蒲悦,武卫东,王益聪,等.新型复合低温相变蓄冷材料的研制及热物性优化[J].化工学报,2019,23(7):2 758-2 765.
[18] 刘方方,刘欣伟,张紫恒,等.果蔬保鲜用相变蓄冷剂的研制及性能研究[J].河北科技大学学报,2018,7(6):540-545.
[19] 张紫恒.半纤维素树脂复合相变蓄冷剂的研制及性能研究[D].石家庄:河北科技大学,2017:38.
[20] 黄金,王婷玉.无机芯微胶囊相变储能材料制备、表征及其热物性研究[J].功能材料,2013,12(3):1 758-1 762.
[21] REDDY K D,VENKATARAMAIAH P,LOKESH T R.Parametric study on phase change material based thermal energy storage system[J].Energy and Power Engineering,2014,6(14):537-542.
[22] 王雪松,谢晶.蓄冷保温箱的研究进展[J].食品与机械,2019,35(8):232-236.
[23] BOLIMOWSKI P A,KOZERA R,BOCZKOWSKA A.Poly(urea-formaldehyde)microcapsules-synthesis and influence of stirring speed on capsules size[J].Polimery,2018,63(5):339-346.
[24] 张晓辰,刘猛,范金福,等.氯化钾对相变石蜡微胶囊制备的影响研究[J].化工新型材料,2019(11):145-148.
[25] MAHBUBUL I M,SAIDUR R,AMALINA M A.Latest developments on the viscosity of nanofluids[J].International Journal of Heat and Mass Transfer,2012,55(4):874-885.
[26] GUNTHER E,SCHMID T,MEHLING H,et al.Subcooling in hexadecane emulsions[J].International Journal of Refrigeration,2010,33(8):1 605-1 611.
[27] ZHANG Xi-yao,NIU Jian-lei,WU Jian-yong,et al.Suppression of supercooling of PCM-water emulsions using nano-additives[J].储能科学与技术,2014,3(2):133-136.
[28] MO Song-ping,ZHU Kang-da,TAO Yin,et al.Phase change characteristics of ethylene glycol solution-based nanofluids for subzero thermal energy storage[J].International Journal of Energy Research,2017,41(1):81-91.
[29] HARIKRISHNAN S,KALAISELVAM S.Preparation and thermal characteristics of CuO-oleic acid nanofluids as a phase change material[J].Thermochimica Acta,2012,533(4):46-55.
[30] 熊绍森.纳米流体热物性及相变蓄冷特性研究[D].武汉:武汉工程大学,2018:32.
[31] 李新芳,朱冬生,付文亭,等.纳米复合相变蓄冷材料黏度特性的影响因素分析[J].化学世界,2017,11(2):119-123.
[32] 赵宁波,郑洪涛,李淑英,等.Al2O3-H2O纳米流体的热导率与粘度实验研究[J].哈尔滨工程大学学报,2018,7(1):60-66.
[33] BHATTAD A,SARKAR J,GHOSH P.Improving the performance of refrigeration systems by using nanofluids:A comprehensive review[J].Renewable and Sustainable Energy Reviews,2018,82(17):3 656-3 669.
[34] DEFRAEYE T,VERBOVEN P,OPARA U L,et al.Feasibility of ambient loading of citrus fruit into refrigerated containers for cooling during marine transport[J].Biosystems Engineering,2015,134(7):20-30.
[35] 张哲,郭永刚,田津津,等.冷板冷藏汽车箱体内温度场的数值模拟及试验[J].农业工程学报,2013,29(1):18-24.
[36] FIORETTI R,PRINCIPI P,COPERTARO B.A refrigerated container envelope with a PCM(Phase Change Material)layer:Experimental and theoretical investigation in a representative town in Central Italy[J].Energy Conversion and Management,2016,122(4):131-141.
[37] COPERTARO B,PRINCIPI P,FIORETTI R.Thermal performance analysis of PCM in refrigerated container envelopes in the Italian context-Numerical modeling and validation[J].Applied Thermal Engineering,2016,102(4):873-881.
[38] 李细霞,肖颖,汤云峰,等.分体式冷板冷藏车设计及温度场分析[J].包装工程,2018(23):56-61.
[39] 谢如鹤,唐海洋,陶文博,等.基于空载温度场模拟与试验的冷藏车冷板布置方式优选[J].农业工程学报,2017(24):290-298.
[40] 谢如鹤,唐海洋,陶文博,等.基于冷冻肉的冷板冷藏车的数值模拟研究[J].冷藏技术,2017(2):32-40
[41] 陈海洋,张建一.蓄冷型运输保温箱在冷链中的应用[J].冷藏技术,2010,21(3):12-16.
[42] 刘娟.改性酚醛树脂基泡沫材料的制备与性能研究[D].北京:中国林业科学研究院,2017:15.
[43] BOJAN A,ACIU C.Optimal technologies for External thermal insulation with polystyrene panels for different support materials[J].Procedia Technology,2015,19:512-517.
[44] 潘欣艺,王冬梅,朱宏.保温材料对保温箱内温度场的影响[J].食品与机械,2018,34(8):115-118.
[45] CHOI Bongsu,SONG Tae-ho.Investigation of edge taping method applied to vacuum insulation panels[J].Energy and Buildings,2017,134(4):52-60.
[46] KWON J S,JANG C H,JUNG H,et al.Effective thermal conductivity of various filling materials for vacuum insulation panels[J].International Journal of Heat and Mass Transfer,2009,52(23):5 525-5 532.
[47] 赵炜.真空绝热板芯材/整体传热性能及新型应用研究[D].南京:南京航空航天大学,2019:29.
[48] BRUNNER S,GHAZI WAKILI K.Hints for an additional aging factor regarding the thermal performance of vacuum insulation panels with pyrogenic silica core[J].Vacuum,2014,100(2/3):4-6.
[49] 王保文.干法制备木纤维基真空绝热板及其性能优化[D].福州:福建农林大学,2019:13.
[50] 邸小波,陈照峰.真空绝热板用复合吸气剂研究[J].南京航空航天大学学报,2017,49(1):24-28.
[51] DI Xiao-bo,GAO Yi-min,BAO Chong-gao.Thermal insulation property and service life of vacuum insulation panels with glass fiber chopped strand as core materials[J].Energy & Buildings,2014,73:176-183.
[52] 李君,栗栋,王海林,等.真空绝热板覆盖率对冷藏厢体内部温度场特性的影响[J].食品与机械,2016,32(7):99-102.

Share

COinS
 
 

To view the content in your browser, please download Adobe Reader or, alternately,
you may Download the file to your hard drive.

NOTE: The latest versions of Adobe Reader do not support viewing PDF files within Firefox on Mac OS and if you are using a modern (Intel) Mac, there is no official plugin for viewing PDF files within the browser window.