[1] |
许雄文,刘金平,曹乐,等. 非共沸混合工质在制冷循环中浓度偏移分析[J]. 化工学报,2011,62(11):3066-3072. XU X W, LIU J P, CAO Y, et al. Analysis of concentration deviation of non azeotropic mixture in refrigeration cycle[J]. CIESC Journal, 2011,62(11):3066-3072.
|
[2] |
YAN G, HU H, YU J L. Performance evaluation on an internal auto-cascade refrigeration cycle with mixture refrigerant R290/R600a[J]. Applied Thermal Engineering, 2015, 75(22):994-1000.
|
[3] |
王新一, 任绍民. 自动复叠制冷系统的应用研究[J].制冷, 2010, 29(3):1-3. WANG X Y, REN S M. Application research of auto-cascade refrigeration system[J]. Refrigeration, 2010, 29(3):1-3.
|
[4] |
芮胜军,张华,张庆钢,等. 两级分凝自复叠制冷系统特性[J]. 化工学报,2013,64(6):2029-2035. RUI S J,ZHANG H, ZHANG Q G, et al. Characteristics of two-stage segregation auto-cascade refrigeration system[J]. CIESC Journal, 2013, 64(6):2029-2035.
|
[5] |
黎立新, 王玉珏, 季建刚, 等. R23/R134a自然复叠制冷系统研究[J]. 流体机械, 2011, 39(3):58-62. LI L X, WANG Y J, JI J G, et al. Refrigeration system research of R23/R134a auto-cascade[J]. Fluid Machinery, 2011, 39(3):58-62.
|
[6] |
芮胜军,张华,董彬,等.自复叠制冷系统4种组分配比性能[J]. 化工学报,2016,67(5):1830-1835. RUI S J, ZHANG H, DONG B, et al. Effect of four components ratios on performance of auto-refrigerating cascade system[J]. CIESC Journal, 2016, 67(5):1830-1835.
|
[7] |
GIULIANI G, HEWITT N J, MARCHESI D F, et al. Composition shift in liquid-recirculation refrigerating systems:an experimental investigation for the pure fluid R134a and the mixture R32/134a[J]. International Journal of Refrigeration, 1999, 22:486-498.
|
[8] |
芮胜军,张华,李健,等.自复叠制冷系统压力和组分调节[J].化工学报,2017, 68(1):329-335. RUI S J, ZHANG H, LI J, et al. Pressure and composition regulation of auto-refrigerating cascade system[J]. CIESC Journal, 2017, 68(1):329-335.
|
[9] |
DU K, ZHANG S, XU W, et al. A study on the cycle characteristics of an auto-cascade refrigeration system[J]. Experimental Thermal & Fluid Science, 2009, 33(2):240-245.
|
[10] |
TAN Y, WANG L, LIANG K. Themodynamic performance of an auto-cascade ejector refrigeration cycle with mixed refrigerant R32+R236fa[J]. Applied Thermal Engineering,2015, 84:268-275.
|
[11] |
KALAISELVAM S, SARAVANAN R. Exergy analysis of scroll compressors working with R22, R407C, and R417A as refrigerant for HVAC system[J]. Thermal Science, 2009, 13(1):175-184.
|
[12] |
SIVAKUMAR M, SOMASUNDARAM P. Exergy and energy analysis of three stage auto refrigerating cascade system using zeotropic mixture for sustainable development[J]. Energy Conversion & Management, 2014, 84(1):589-596.
|
[13] |
YAN G, CHEN J H, YU J L. Energy and exergy analysis of a new ejector enhanced auto-cascade refrigeration cycle[J]. Energy Conversion and Management, 2015, 105:509-517.
|
[14] |
BAI T, YU J L, YAN G. Advanced exergy analysis on a modified auto-cascade freezer cycle with an ejector[J]. Energy, 2016, 113:385-398.
|
[15] |
BAO J, LI Z. Exergy analysis and parameter study on a novel auto-cascade Rankine cycle[J]. Energy, 2012, 48(1):539-547.
|
[16] |
LIU Q, DUAN Y Y, YANG Z. Effect of condensation temperature glide on the performance of organic Rankine cycles with zeotropic mixture working fluids[J]. Applied Energy,2014,115:394-404.
|
[17] |
DENG H, FERNANDINOA M, DORAOA C A. Numerical study of the condensation length of binary zeotropic mixtures[J]. Energy Procedia, 2015, 64:43-52.
|
[18] |
AGHAHOSSEINI S, DINCER I. Comparative performance analysis of low-temperature organic Rankine cycle (ORC) using pure and zeotropic working fluids[J]. Applied Thermal Engineering, 2013, 54:35-42.
|
[19] |
ZHENG N, SONG W D, ZHAO L. Theoretical and experimental investigations on the changing regularity of the extreme point of the temperature difference between zeotropic mixtures and heat transfer fluid[J]. Energy, 2013, 55:541-552
|
[20] |
BONEKAMP S, BIER K. Influence of ultrasound on pool boiling heat transfer to mixtures of the refrigerants R23 and R134A[J]. International Journal of Refrigeration, 1997, 20(8):606-615.
|
[21] |
MODI A, HAGLIND F. A review of recent research on the use of zeotropic mixtures in power generation systems[J]. Energy Conversion and Management, 2017, 138:603-626.
|
[22] |
刘丽华,张丽娜,陈光明. 混合工质变浓度容量调节的现状研究[J]. 制冷学报,2007, 28(6):35-40. LIU L H, ZHANG L N, CHEN G M. A study on the present situation of the capacity regulation on the mixed refrigerant concentration[J]. Journal of Refrigeration, 2007,28(6):35-40.
|
[23] |
刘训海,黄森,张华. 混合工质配比对自动复叠制冷循环影响的实验研究[J]. 低温工程,2006,151(3):51-54. LIU X H, HUANG S, ZHANG H. Experimental study on the influence of mixture ratio on automatic cascade refrigeration cycle[J]. Cryogenic Engineering, 2006,151(3):51-54.
|
[24] |
KIM M. Experimental study on the performance of a heat pump system with refrigerant mixtures' composition change[J]. Energy, 2004, 29(7):1053-1068.
|
[25] |
LIU J, SHE X H, ZHANG X S, et al. Experimental study of a novel double temperature chiller based on R32/R236fa[J]. Energy Conversion and Management, 2016,124:618-626
|
[26] |
王林, 崔晓龙, 谈莹莹, 等. 混合工质充注量/配比对自复叠制冷循环特性影响[J].工程热物理学报, 2011, 32(4):565-568. WANG L, CUI X L, TAN Y Y, et al. Effect of the mixed refrigerant filling quantity/ratio on auto cascade refrigeration cycle characteristics[J]. Journal of Engineering Thermophysics, 2011,32(4):565-568.
|
[27] |
郑树熙,赵有信,张金翠,等. 自复叠与喷气增焓制冷系统节能对比实验研究[J].青岛大学学报(工程技术版),2015,30:83-87. ZHENG S X, ZHAO Y X, ZHANG J C, et al. Comparative experimental study on energy saving of auto-cascade and jet enthalpy refrigeration system[J]. Journal of Qingdao University (Engineering and Technology Edition), 2015, 30:83-87.
|
[28] |
张金翠,赵有信,郑树熙,等. 自动复叠与单机两级压缩制冷的运行比较研究[J]. 青岛大学学报(工程技术版),2015,30:105-108. ZHANG J C, ZHAO Y X, ZHENG S X, et al. Comparative study of auto-cascade and single stage two stage compression refrigeration[J]. Journal of Qingdao University (Engineering and Technology Edition), 2015, 30:105-108.
|
[29] |
郑树熙,汤皓杰,王超,等. 自复叠与单机压缩制冷系统冷凝换热实验分析[J]. 青岛大学学报(工程技术版),2017,32(1):129-132. ZHENG S X, TANG H J, WANG C, et al. Experimental analysis of condensation heat transfer in auto-cascade refrigeration system and single compressor refrigeration system[J]. Journal of Qingdao University (Engineering and Technology Edition), 2017, 32(1):129-132.
|
[30] |
汤皓杰,郑树熙,杨玉涛,等. 单级自复叠制冷系统中冷凝器的换热分析[J]. 青岛大学学报(工程技术版), 2016, 31(4):117-119. TANG H J, ZHENG S X, YANG Y T, et al. Heat transfer analysis of condensers in single-stage auto-cascade refrigeration system[J]. Journal of Qingdao University (Engineering and Technology Edition), 2016, 31(4):117-119.
|