上海交通大学学报(自然版) ›› 2016, Vol. 50 ›› Issue (04): 506-513.
孔祥强,李俊枭,李瑛
收稿日期:
2015-04-09
出版日期:
2016-04-28
发布日期:
2016-04-28
基金资助:
KONG Xiangqiang,LI Junxiao,LI Ying
Received:
2015-04-09
Online:
2016-04-28
Published:
2016-04-28
摘要: 摘要: 为了研究直膨式太阳能热泵热水器,分别采用R22、R410A和R290作为工质的性能,建立了太阳能集热/蒸发器和冷凝器的分布参数均相流动模型、压缩机和膨胀阀的集中参数模型以及系统工质充注量模型,编制了直膨式太阳能热泵热水器系统性能模拟程序.比较发现,理论模型计算值与文献实验结果吻合较好.在不同环境参数和运行参数的工况下,对采用3种热泵工质的系统性能系数、集热器的集热效率和系统制热功率进行对比分析.结果表明:R290系统的性能系数明显高于R22和R410A系统,R410A系统的集热效率和制热功率略高于R22和R290系统;环境参数对R290系统的影响程度大于R22和R410A系统;压缩机转速的变化对R410A系统影响显著,而水箱水温的变化对R290系统影响较明显;R290和R410A系统的最佳工质充注量分别约为R22系统的46%和95%.
中图分类号:
孔祥强,李俊枭,李瑛. 直膨式太阳能热泵热水器不同工质的性能分析[J]. 上海交通大学学报(自然版), 2016, 50(04): 506-513.
KONG Xiangqiang,LI Junxiao,LI Ying. Performance Analysis of Three Different Refrigerants in a Directexpansion Solar-Assisted Heat Pump Water Heater[J]. Journal of Shanghai Jiaotong University, 2016, 50(04): 506-513.
[1]PADMANABHAN V M V, PALANISAMY S K. Exergy efficiency and irreversibility comparison of R22, R134a, R290 and R407C to replace R22 in an air conditioning system[J]. Journal of Mechanical Science and Technology, 2013, 27(3): 917926. [2]贾荣林, 吴静怡. 空气源热泵热水器中R417A与R22的性能对比[J]. 化工学报, 2008, 59(S2): 9398. JIA Ronglin, WU Jingyi. Comparison of performance between R417A and R22 in air source heat pump water heater[J]. Journal of Chemical Industry and Engineering(China), 2008, 59(S2): 9398. [3]张太康, 翁文兵, 喻晶. R134a、R417a和R22用于空气源热泵热水器的性能研究[J]. 流体机械, 2010, 39(5): 7276. ZHANG Taikang, WENG Wenbing, YU Jing. Performance research of airsource heat pump water heater using R134a, R417a and R22[J]. Fluid Machinery, 2010, 39(5): 7276. [4]张明方, 李鹏荣. R417A替代家用空调器用R22的实验研究[J]. 制冷与空调, 2006, 6(5): 8082. ZHANG Mingfang, LI Pengrong. Experimental study on room air conditioner using R417A instead of R22[J]. Refrigeration and AirConditioning, 2006, 6(5): 8082. [5]黄玉优, 尹茜, 于静, 等. R290空气源热泵热水器的试验研究与对比[J]. 制冷与空调, 2011, 11(3): 5760. HUANG Yuyou, YIN Qian, YU Jing, et al. Experimental study and comparison of R290 air source heat pump water heater[J]. Refrigeration and AirConditioning, 2011, 11(3): 5760. [6]魏义平, 陶乐仁, 密洁霞,等. R410A和R22在水平内螺纹管内冷凝性能的实验研究[J]. 低温与超导,2012, 40(12): 4649. WEI Yiping, TAO Leren, MI Jiexia, et al. Experimental study on condensation heat transfer of horizontal internally ribbed tube with R22 and R410A[J]. Cryogenics & Superconductivity, 2012, 40(12): 4649. [7]PALMITERA L, KIMB J H, LARSONA B, et al. Measured effect of airflow and refrigerant charge on the seasonal performance of an airsource heat pump using R410A[J]. Energy and Buildings, 2011, 43(7): 18021810. [8]MOHANRAJ M, JAYARAJ S, MURALEEDHARAN C. Environment friendly alternatives to halogenated refrigerants—A review[J]. International Journal of Greenhouse Gas Control, 2009, 3(1): 108119. [9]李廷勋, 杨九铭, 曾昭顺, 等. R290灌注式替代R22空调整机性能研究[J]. 制冷学报, 2010, 31(4): 3134. LI Tingxun, YANG Jiuming, ZENG Zhaoshun, et al. Experiment on R290 substituting for R22 in a room airconditioner[J]. Journal of Refrigeration, 2010, 31(4): 3134. [10]宁静红, 刘敬坤. R290水平管内凝结换热和压降的研究现状[J]. 流体机械, 2013, 41(7): 6671. NING Jinghong, LIU Jingkun. Research on condensation heat transfer and pressure drop of R290 inside horizontal tubes[J]. Fluid Machinery, 2013, 41(7): 6671. [11]MASTRULLO R, MAURO A W, MENNA L, et al. Replacement of R404A with propane in a light commercial vertical freezer: A parametric study of performances for different system architectures[J]. Energy Conversion and Management, 2014, 82(6): 5460. [12]TENG T P, MO H E, LIN H, et al. Retrofit assessment of window air conditioner[J]. Journal of Engineering and Technological Sciences, 2012, 32(1): 100107. [13]PARK K J, SHIM Y B, JUNG D. Experimental performance of R432A to replace R22 in residential airconditioners and heat pumps[J]. Applied Thermal Engineering, 2009, 29(2/3): 597600. [14]CHOI J, KANG B, CHO H. Performance comparison between R22 and R744 solargeothermal hybrid heat pumps according to heat source conditions[J]. Renewable Energy, 2014, 71(11): 414424. [15]胡海涛, 黄翔超, 丁国良, 等. 润滑油对小管径强化管内R410A流动冷凝压降特性的影响[J]. 上海交通大学学报, 2012, 46(4): 515519. HU Haitao, HUANG Xiangchao, DING Guoliang, et al. The influence of oil on pressure drop of R410A flow condensation in small diameter microfin tube[J]. Journal of Shanghai Jiao Tong University, 2012, 46(4): 515519. [16]YANG Y X, JIA L. Experimental investigation on heat transfer coefficient during upward flow condensation of R410A in vertical smooth tubes[J]. Journal of Thermal Science, 2015, 24(2): 155163. [17]COMLAN F J L, CLMENT R, LOUIS L, et al. A comparative performance study of a direct expansion geothermal evaporator using R410A and R407C as refrigerant alternatives to R22[J]. Applied Thermal Engineering, 2015, 82(5): 306317. [18]EVYATER E, YAIR E. Radiative cooling of buildings with flatplat solar collectors[J]. Building and Environment, 2000, 35(4): 297305. [19]DUFFIE J A, BECKMAN W A. Solar engineering of thermal process[M]. New York: John Wiley and Sons, 1991. [20]吴业正. 小型制冷装置设计指导[M]. 北京: 机械工业出版社, 2004. [21]秦振春. R410A空气源热泵工作过程仿真及实验研究[D]. 南京: 南京师范大学动力工程学院, 2007. [22]周国兵. 绝热毛细管制冷剂流动特性及与系统匹配研究[D]. 天津: 天津大学环境科学与工程学院, 2004. [23]LOCKHART R W, MARTINELLI R C. Proposed correlations of data for isothermal twophase, two component flow in pipes[J]. Chemical Engineering Progress, 1949, 45(1): 3948. [24]马小魁, 丁国良, 张平, 等. R410A空调器空泡系数模型适用性的实验验证[J]. 上海交通大学学报, 2007, 41(3): 388392. MA Xiaokui, DING Guoliang, ZHANG Ping, et al. Experimental validation of void fraction models for R410A airconditioner[J]. Journal of Shanghai Jiao Tong University, 2007, 41(3): 388392. [25]王建栓, 张于峰, 张志红. 天然制冷剂充注量的计算与试验[J]. 流体机械, 2003, 31(1): 4447. WANG Jianshuan, ZHANG Yufeng, ZHANG Zhihong. Calculation and experiment of charging quantity for nature refrigerant[J]. Fluid Machinery, 2003, 31(1): 4447. [26]李郁武. 直膨式太阳能热泵热水装置的优化分析与变容量运行研究[D]. 上海: 上海交通大学机械与动力工程学院, 2007. |
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