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降膜液体干燥剂空气除湿

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降膜液体干燥剂除湿技术吸引了越来越多的关注由于降低能源消耗,减少污染,近年来更灵活的湿度控制。本文进行全面审查降膜液体干燥剂除湿系统。首先,液体干燥剂除湿的工作原理和特性介绍了描述除湿过程。现有的液体干燥剂包括有机和无机干燥剂进行了综述。然后,降膜除湿机的结构包括绝热除湿机和内冷除湿机。此外,降膜除湿机的仿真模型,如有限差分模型、有效性南大(ε南大)模型和简化仿真模型进行了总结。最后,退出降膜除湿机的性能增强方法收集,提供有价值的指导研究人员和工程师改善除湿性能。

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引用

  1. 阿里,一个。,Vafai, K., Khaled, A. R. A. 2004. Analysis of heat and mass transfer between air and falling film in a cross flow configuration.Int J Tran热质量47:743 - 755。

    谷歌学术搜索

  2. Brundrett, g . w . 1989。手除湿技术的书。干燥工艺7:143 - 147。

    谷歌学术搜索

  3. 陈,p . 2002。调查heat-mass转移在垂直管降膜的水蒸气吸收溴化锂溶液。大连理工大学,中国。(中文)

    谷歌学术搜索

  4. 陈,x Y。李,Z。,江,Y。,Qu, K. Y. 2006. Analytical solution of adiabatic heat and mass transfer process in packed-type liquid desiccant equipment and its application.索尔能源,80:1509 - 1516。

    谷歌学术搜索

  5. 程,w . L。,Chen, Z. S. 2002. Experimental study of steam absorption into aqueous lithium bromide with vapor of additive.流体机械30:40-43。(中文)

    谷歌学术搜索

  6. 程,w . L。赵,R。刘,C。,Jiang, S. L., Chen, Z. S. 2006. Experimental study of influence of additives on ammonia bubble absorption.我上班的27:35 - 40。(中文)

    谷歌学术搜索

  7. 曹,h . C。,康,y . T。,Kim, C. D. 2002. Effect of surface roughness of micro-scale hatched tubes Don the absorption performance. In: Proceedings of the International Sorption Heat Pump Conference: 300–304.

  8. 钟,t·W。,Luo, C. M. 1999. Vapor pressures of the aqueous desiccants.J化学Eng数据44:1024 - 1027。

    谷歌学术搜索

  9. 钟,t·W。,Wu, H. 2000. Comparison between spray towers with and without fin coils for air dehumidification using triethylene glycol solutions and development of the mass-transfer correlations.印第安纳州Eng化学物39:2076 - 2084。

    谷歌学术搜索

  10. Conde, m . r . 2004。锂和钙氯化物水溶液的性质:配方用于空调设备的设计。Int J千卡Sci43:367 - 382。

    谷歌学术搜索

  11. 崔,x Y。,Shi, J. Z., Tan, C., Xu, Z. P. 2009. Investigation of plate falling film absorber with film-inverting configuration.J热为我国,131:072001。

    谷歌学术搜索

  12. 戴,y . J。,Zhang, H. F. 2004. Numerical simulation and theoretical analysis of heat and mass transfer in a cross flow liquid desiccant air dehumidifier packed with honeycomb paper.Energ Convers管理45:1343 - 1356。

    谷歌学术搜索

  13. 盾,c . S。陆,L。,气,r . H。2017a. Model development of heat/mass transfer for internally cooled dehumidifier concerning liquid film shrinkage shape and contact angles.构建环境时间为114年:月11日至22日。

    谷歌学术搜索

  14. 盾,c . S。陆,L。,温,T。2017b. Experimental study on dehumidification performance enhancement by TiO2superhydrophilic涂料液体干燥剂除湿机板。构建环境,124:219 - 231。

    谷歌学术搜索

  15. 盾,c . S。陆,L。,温,T。2018. Investigating dehumidification performance of solar-assisted liquid desiccant dehumidifiers considering different surface properties.能源,164:978 - 994。

    谷歌学术搜索

  16. 机电服务部(本)。2017年。2017年香港能源最终用途数据。可以在https://www.emsd.gov.hk/filemanager/en/content_762/HKEEUD2017.pdf

  17. Elsarrag, e . 2006。由化学液体干燥剂除湿的空气填充柱及其传热传质效率。空调Res12:3-16。

    谷歌学术搜索

  18. Ertas,。,Anderson, E. E., Kiris, I. 1992. Properties of a new liquid desiccant solution—Lithium chloride and calcium chloride mixture.索尔能源49:205 - 212。

    谷歌学术搜索

  19. 通用电气、g M。,Xiao, F., Niu, X. F. 2011. Control strategies for a liquid desiccant air-conditioning system.Energ建筑43:1499 - 1507。

    谷歌学术搜索

  20. 张春,h . M。,Grossman, G. 1995. Simulation and analysis of an open-cycle dehumidifier-evaporator-regenerator (DER) absorption chiller for low-grade heat utilization.Int J上班的18:177 - 189。

    谷歌学术搜索

  21. Hihara E。,Saito, T. 1993. Effect of surfactant on falling film absorption.Int J上班的16:339 - 346。

    谷歌学术搜索

  22. Hueffed, a K。,Chamra, L. M., Mago, P. J. 2009. A simplified model of heat and mass transfer between air and falling-film desiccant in a parallel-plate dehumidifier.J热为我国,131:052001。

    谷歌学术搜索

  23. 伊斯兰教,m R。Ho, j . C。,Wijeysundera, N. E. 2006. A study of heat and mass transfer in falling films of film-inverting absorbers. In: Proceedings of the 13th International Heat Transfer Conference.

  24. 伊斯兰教,m R。,Wijeysundera, N. E., Ho, J. C. 2003. Performance study of a falling-film absorber with a film-inverting configuration.Int J上班的26日:909 - 917。

    谷歌学术搜索

  25. 耆那教的年代。,Bansal, P. K. 2007. Performance analysis of liquid desiccant dehumidification systems.Int J上班的30:861 - 872。

    谷歌学术搜索

  26. 耆那教的年代。,Dhar, P. L., Kaushik, S. C. 2000. Experimental studies on the dehumidifier and regenerator of a liquid desiccant cooling system.:小卡英格20:253 - 267。

    谷歌学术搜索

  27. 江,Y。李,Z。,Chen, X. L., Liu, X. H. 2004. Liquid desiccant air conditioning system and its applications.J HV&AC34:88 - 98。

    谷歌学术搜索

  28. Kaita, y 2001。热力学性质的溴水锂在高温下的解决方案。Int J上班的24:374 - 390。

    谷歌学术搜索

  29. 康,y . T。,Kashiwagi, T. 2002. Heat transfer enhancement by Marangoni convection in the NH3- h2O吸收过程。Int J上班的25:780 - 788。

    谷歌学术搜索

  30. 康,y . T。,Kim, J.-K., Jeong, J., Park, C., Akisawa, A., Kashiwagi, T. 2006. Mass transfer enhancement of a binary nanofluid for absorption application. In: Proceedings of the 13th International Heat Conference.

  31. 康,y . T。,Kim, J.-K., Park, C. W. 2002. The effect of micro-surface treatment on heat and mass transfer performance for falling film absorption process. In: Proceedings of the International Heat Transfer Conference: 277–282

  32. 克恩,d .问:1997。传热过程。塔塔麦格劳-希尔教育。

  33. Kessling, W。,Laevemann, E., Kapfhammer, C. 1998. Energy storage for desiccant cooling systems component development.索尔能源,64:209 - 221。

    谷歌学术搜索

  34. 汗,a . Y。,Ball, H. D. 1992. Development of a generalized model for performance evaluation of packed-type liquid sorbent dehumidifiers and regenerators. In: Proceedings of the ASHRAE Winter Meeting: 525–533.

  35. 李,我。,Kim, H. J., Jung, J. H. 2007. An experimental study on the falling film heat transfer for binary nano-fluids. In: Proceedings of the 18th International Symposium on Transports Phenomena: 1107–1110.

  36. 李,2003 z。液体除湿空调和湿度独立控制空调系统。J HV&A33:26-31。

    谷歌学术搜索

  37. 刘,J。,张,T。,刘,x H。,Jiang, J. J. 2015. Experimental analysis of an internally-cooled/heated liquid desiccant dehumidifier/regenerator made of thermally conductive plastic.Energ建筑,99:75 - 86。

    谷歌学术搜索

  38. 刘,x H。,Chang, X. M., Xia, J. J., Jiang, Y. 2009. Performance analysis on the internally cooled dehumidifier using liquid desiccant.构建环境44:299 - 308。

    谷歌学术搜索

  39. 刘,x H。,江,Y。,Qu, K. Y. 2008. Analytical solution of combined heat and mass transfer performance in a cross-flow packed bed liquid desiccant air dehumidifier.Int J Tran热质量51:4563 - 4572。

    数学谷歌学术搜索

  40. Lof, g . o . g . 1955。与太阳能冷却。美国国会在太阳能,图森市:171 - 189。

  41. 洛温斯坦,a . 2008。对液体除湿技术,暖通空调的应用。空调Res14:819 - 839。

    谷歌学术搜索

  42. 洛温斯坦,一个。、Slayzak年代。,Kozubal, E. 2006. A zero carryover liquid-desiccant air conditioner for solar applications. In: Proceedings of the ASME 2006 International Solar Energy Conference: 397–407.

  43. 罗,y . M。,Yang, H. X., Lu, L., Qi, R. H. 2014. A review of the mathematical models for predicting the heat and mass transfer process in the liquid desiccant dehumidifier.更新Sust Energ牧师31日:587 - 599。

    谷歌学术搜索

  44. 妈,x H。,Su, F. M., Lan, Z., Chen, J. 2008. Experimental study on the thermal physical properties of a CNTs-ammonia binary nanofluid. In: Proceedings of the ASME 2008 1st International Conference on Micro/Nanoscale Heat Transfer: MNHT2008-52153.

  45. Mazzei, P。,Minichiello, F., Palma, D. 2005. HVAC dehumidification systems for thermal comfort: A critical review.:小卡英格25:677 - 707。

    谷歌学术搜索

  46. 1979年洛杉矶·麦克尼利。热力学性质的溴化锂水溶液。ASHRAE这样反式,85:412 - 434。

    谷歌学术搜索

  47. Mesquita, l·c·S。哈里森,s . J。,Thomey, D. 2006. Modeling of heat and mass transfer in parallel plate liquid-desiccant dehumidifiers.索尔能源,80:1475 - 1482。

    谷歌学术搜索

  48. Nakao K。,Ozaki, E., Yamanaka, G. 1986. Study on vertical type heat exchanger for absorption heat transformer. In: Proceedings of the National Heat Transfer Symposium of Japan: 367–369.

  49. Nishimura N。野村,T。,Lyot, H. 2002. Investigation of absorption enhancement by a surfactant. In: Proeeedings of the Intemational Sorption Heat Pump Conference: 373–377.

  50. 庞,c W。吴,w . D。盛,W。张,H。,康,y . T。2012. Mass transfer enhancement by binary nanofluids (NH3/小时2O + Ag纳米粒子)泡沫吸收过程。Int J上班的35:2240 - 2247。

    谷歌学术搜索

  51. 公园,m . S。,Howell, J. R., Vliet, G. C., Peterson, J. 1994. Numerical and experimental results for coupled heat and mass transfer between a desiccant film and air in cross-flow.Int J Tran热质量37:395 - 402。

    谷歌学术搜索

  52. 彭,s W。,Pan, Z. M. 2009. Heat and mass transfer in liquid desiccant air-conditioning process at low flow conditions.Commun非线性科学14:3599 - 3607。

    谷歌学术搜索

  53. Perez-Lombard, L。奥尔蒂斯,J。,Coronel, J. F., Maestre, I. R. 2011. A review of HVAC systems requirements in building energy regulations.Energ建筑43:255 - 268。

    谷歌学术搜索

  54. Pesaran, A。,Parent, Y. O., Meckler, M., Novosel, D. 1994. Evaluation of a liquid-desiccant-enhanced heat-pipe air preconditioner (No. NREL/TP-472-7015; CONF-950104-2). National Renewable Energy Lab., Golden, CO, United States.

    谷歌学术搜索

  55. 气,r . H。,盾,c . S。张,L。Z. 2019. Wave-wise falling film in liquid desiccant dehumidification systems: Model development and time-series parameter analysis.Int J Tran热质量,132:96 - 106。

    谷歌学术搜索

  56. 气,r . H。陆,L。,Yang, H. X. 2013. Development of simplified prediction model for internally cooled/heated liquid desiccant dehumidification system.Energ建筑59:133 - 142。

    谷歌学术搜索

  57. 奎罗斯,a G。,Orlando, A. F., Saboya, F. E. M. 1988. Performance analysis of an air drier for a liquid dehumidifier solar air conditioning system.J索尔Energ,110:120 - 124。

    谷歌学术搜索

  58. Rafique, M . M。,Gandhidasan, P., Bahaidarah, H. M. S. 2016. Liquid desiccant materials and dehumidifiers—A review.更新Sust Energ牧师56:179 - 195。

    谷歌学术搜索

  59. 兰姆,v . h . 1968。吸收气体。以色列计划Scienti®c翻译,耶路撒冷。

  60. 任,c . Q。你,M。,Wang, H. H. 2007. An analytical model for heat and mass transfer processes in internally cooled or heated liquid desiccant-air contact units.Int J Tran热质量(50岁):3545 - 3555。

    数学谷歌学术搜索

  61. 萨曼,w . Y。,Alizadeh, S. 2002. An experimental study of a cross-flow type plate heat exchanger for dehumidification/cooling.索尔能源73:59 - 71。

    谷歌学术搜索

  62. 史蒂文斯,d . I。布劳恩,j·E。,Klein, S. A. 1989. An effectiveness model of liquid-desiccant system heat/mass exchangers.索尔能源42:449 - 455。

    谷歌学术搜索

  63. Stoecker, w . f . 1989。热系统的设计,第3版。麦格劳-希尔。

  64. Studak, j·W。,Peterson, J. L. 1988. A preliminary evaluation of alternative liquid desiccants for a hybrid desiccant air conditioner. In: Proceedings of the 5th Symposium on Improving Building Systems in Hot and Humid Climates: 155–159.

  65. Treybal, r . e . 1981。传质操作,第3版。麦格劳-希尔。

  66. Tuominen, P。,Holopainen, R., Eskola, L., Jokisalo, J., Airaksinen, M. 2014. Calculation method and tool for assessing energy consumption in the building stock.构建环境,75:153 - 160。

    谷歌学术搜索

  67. 温,T。,Lu, L., Dong, C. S. 2018a. Enhancing the dehumidification performance of LiCl solution with surfactant PVP-K30.Energ建筑,171:183 - 195。

    谷歌学术搜索

  68. 温,T。,Lu, L., Dong, C. S., Luo, Y. M. 2018b. Investigation on the regeneration performance of liquid desiccant by adding surfactant PVP-K30.Int J Tran热质量,123:445 - 454。

    谷歌学术搜索

  69. 杨,Y。,Li, X. G., Li, W. Y., Fang, C. C., Qi, X. L. 2000. Experimental study on the characteristics of solar powered liquid dehumidification system.Energiae Solaris学报21日:155 - 159。

    谷歌学术搜索

  70. 阴,y G。,Zhang, X. S., Peng, D. G., Li, X. W. 2009. Model validation and case study on internally cooled/heated dehumidfier/regenerator of liquid desiccant systems.Int J千卡Sci48:1664 - 1671。

    谷歌学术搜索

  71. 张,T。,刘,x H。,Jiang, J. J., Chang, X. M., Jiang, Y. 2013. Experimental analysis of an internally-cooled liquid desiccant dehumidifier.构建环境,63:1 - 10。

    谷歌学术搜索

  72. 智,j . H。,盾,c . S。,Guo, M. M., Qi, R. H., Zhang, L. Z. 2019. Wettability and performance enhancement with durable superhydrophilic surfaces for plastic liquid desiccant dehumidification systems.Energ建筑,187:77 - 85。

    谷歌学术搜索

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咚,C。,Hibiki, T., Zhang, L.et al。降膜液体干燥剂空气除湿。Exp。第一版。Multiph。流2,187 - 198 (2020)。https://doi.org/10.1007/s42757 - 019 - 0036 - 8

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关键字

  • 降膜
  • 液体干燥剂除湿
  • 除湿性能
  • 能源消耗