[1] |
ZENG M, ZHANG G P, LI Y, et al. Geometrical parametric analysis of flow and heat transfer in the shell side of a spiral-wound heat exchanger[J]. Heat Transfer Engineering, 2015, 36(9):790-805.
|
[2] |
LU X, DU X P, ZENG M, et al. Shell-side thermal-hydraulic performances of multilayer spiral-wound heat exchangers under different wall thermal boundary conditions[J]. Applied Thermal Engineering, 2014, 70(2):1216-1227.
|
[3] |
LU X, ZHANG G P, CHEN Y T, et al. Effect of geometrical parameters on flow and heat transfer performances in multi-stream spiral-wound heat exchangers[J]. Applied Thermal Engineering, 2015, 89:1104-1116.
|
[4] |
浦晖, 陈杰. 绕管式换热器在大型天然气液化装置中的应用及国产化技术分析[J]. 制冷技术, 2011, (3):26-29. PU H, CHEN J. Application and technical analysis on localization of spiral-wound heat exchanger in large-scale natural gas liquefaction plant[J]. Chinese Journal of Refrigeration Technology, 2011, (3):26-29.
|
[5] |
陈永东, 陈学东. LNG成套装置换热器关键技术分析[J]. 天然气工业, 2010, 30(1):96-100. CHEN Y D, CHEN X D. A technical analysis of heat exchangers in LNG plants and terminals[J]. Natural Gas Industry, 2010, 30(1):96-100.
|
[6] |
秦留军, 于旺, 孙校辉, 等. 大型缠绕管式换热器关键技术发展分析[J]. 河南科技, 2016, (19):71-72. QIN L J, YU W, SUN X H, et al. Development analysis of the key technology of the large-scale spiral-wound heat exchanger[J]. Journal of Henan Science and Technology, 2016, (19):71-72.
|
[7] |
WANG T T, DING G L, REN T, et al. A mathematical model of floating LNG spiral-wound heat exchangers under rolling conditions[J]. Applied Thermal Engineering, 2016, 99:959-969.
|
[8] |
GILMOUR N, DEVENEY D.Floating LNG-Shell's recent history and current approach[C]//The 16th International Conference and Exhibition on Liquefied Natural Gas. Oran, 2010.
|
[9] |
WANG T T, DING G L, DUAN Z D, et al. A distributed-parameter model for LNG spiral wound heat exchanger based on graph theory[J]. Applied Thermal Engineering, 2015, 81:102-113.
|
[10] |
朱建鲁, 常学煜, 韩辉, 等. FLNG绕管式换热器晃动实验分析[J]. 化工学报, 2017, 68(9):3358-3367. ZHU J L, CHANG X Y, HAN H, et al. Experimental study on effect of sloshing on performance of heat exchanger[J]. CIESC Journal, 2017, 68(9):3358-3367.
|
[11] |
李丰志, 于佳文, 鹿来运, 等. LNG绕管式换热器管侧流动与传热实验台设计及验证[J]. 哈尔滨工业大学学报, 2017, 49(2):98-102. LI F Z, YU J W, LU L Y, et al. Design and verification for tube-side flow and heat transfer test-rig of coil-wound LNG heat exchangers[J]. Journal of Harbin Institute of Technology, 2017, 49(2):98-102.
|
[12] |
鹿来运, 陈杰, 浦晖, 等. LNG绕管式换热器管侧冷凝流型数值模拟[J]. 节能技术, 2016, 34(4):323-328. LU L Y, CHEN J, PU H, et al. Numerical simulation of condensation flow pattern in tube side of liquefied natural gas coil wound heat exchangers[J]. Energy Conservation Technology, 2016, 34(4):323-328.
|
[13] |
段钟弟, 任滔, 丁国良, 等. 分相的多股流LNG绕管式换热器动态模型[J]. 化工学报, 2015, 66(S2):85-94. DUAN Z D, REN T, DING G L, et al. Multi-zone dynamic model for multi-stream LNG spiral wound heat exchanger[J]. CIESC Journal, 2015, 66(S2):85-94.
|
[14] |
李剑锐, 陈杰, 浦晖, 等. 绕管式换热器壳侧降膜流动和相变传热的数值模拟[J]. 化工学报, 2015, 66(S2):40-49. LI J R, CHEN J, PU H, et al. Simulation of falling film flow and heat transfer at shell-side of coil-wound heat exchanger[J]. CIESC Journal, 2015, 66(S2):40-49.
|
[15] |
FREDHEIM A O. Thermal design of coil-wound LNG heat exchangers shell-side heat transfer and pressure drop[D]. Norwegian:University of Trondheim, 1994.
|
[16] |
李剑锐, 陈杰, 浦晖, 等. 横摇对水平管外制冷剂两相降膜流动换热特性的影响分析[J]. 制冷技术, 2016, 36:20-23. LI J R, CHEN J, PU H, et al. Analysis of influence of rolling on heat transfer characteristics of two-phase falling film flow of refrigerant outside horizontal tubes[J]. Chinese Journal of Refrigeration Technology, 2016, 36:20-23.
|
[17] |
PACIO J C, DORAO C A. A review on heat exchanger thermal hydraulic models for cryogenic applications[J]. Cryogenics, 2011, 51:366-379.
|
[18] |
ALABDULKAREM A, MORTAZAVI A, HWANG Y, et al. Optimization of propane pre-cooled mixed refrigerant LNG plant[J]. Applied Thermal Engineering, 2011, 31:1091-1098.
|
[19] |
NEKSA P, BRENDENG E, DRESCHER M, et al. Development and analysis of a natural gas reliquefaction plant for small gas carriers[J]. Journal of Natural Gas Science and Engineering, 2010, 2:143-149.
|
[20] |
王婷婷, 丁国良, 段钟弟, 等. 基于仿真的LNG绕管式换热器设计方法[J]. 制冷技术, 2017, 37(3):12-17. WANG T T, DING G L, DUAN Z D, et al. A design method based on simulation for LNG spiral wound heat exchangers[J]. Chinese Journal of Refrigeration Technology, 2017, 37(3):12-17.
|
[21] |
DUAN Z D, REN T, DING G L, et al. A dynamic model for FLNG spiral wound heat exchanger with multiple phase-change streams based on moving boundary method[J]. Journal of Natural Gas Science & Engineering, 2016, 34:657-669.
|
[22] |
NEERAAS B O, FREDHEIM A O, AUNAN B. Experimental shell-side heat transfer and pressure drop in gas flow for spiral-wound LNG heat exchanger[J]. International Journal of Heat and Mass Transfer, 2004, 47:353-361.
|
[23] |
季鹏, 李玉星, 朱建鲁, 等. LNG绕管式换热器壳侧单相传热模型的优化[J]. 制冷学报, 2015, (2):21-26. JI P, LI Y X, ZHU J L, et al. Optimization of shell-side single phase heat transfer correlation for coil-wound LNG heat exchanger[J]. Journal of Refrigeration, 2015, (2):21-26.
|
[24] |
吴志勇, 陈杰, 浦晖, 等. LNG绕管式换热器壳侧过热态流动的数值模拟[J]. 煤气与热力, 2014, 34(8):6-11. WU Z Y, CHEN J, PU H, et al. Numerical simulation of superheated flow of refrigerant at shell side of LNG spiral wound heat exchanger[J]. Gas & Heat, 2014, 34(8):6-11.
|
[25] |
NEERAAS B O, FREDHEIM A O, AUNAN B. Experimental shell-side heat transfer and pressure drop in gas flow for spiral-wound LNG heat exchanger[J]. International Journal of Heat and Mass Transfer, 2004, 47:353-361.
|
[26] |
WU Z Y, WANG H, CAI W H, et al. Numerical investigation of boiling heat transfer on the shell-side of spiral wound heat exchanger[J]. Heat and Mass Transfer, 2016, 52:1973-1982.
|
[27] |
FREDHEIM A, JORSTAD O, OWREN G, et al. Coil, a model for simulation of spiral wound LNG heat exchangers[C]//World Gas Conference. Nice, 2000.
|
[28] |
PILLARELLA M, LIU Y N, PETROWSKI J, et al. The C3MR liquefaction cycle:versatility for a fast growing, ever changing LNG industry[C]//Fifteenth International Conference on LNG. Barcelona, 2007.
|
[29] |
KUNZ O, WAGNER W. The GERG2004 wide-range equation of state of natural gases and other mixtures[J]. Journal of Chemical & Engineering Data, 2007, 57(11):3032-3091.
|
[30] |
MOFFAT R J. Describing the uncertainties in experimental results[J]. Experimental Thermal and Fluid Science, 1988, 1:3-17.
|