CIESC Journal ›› 2018, Vol. 69 ›› Issue (S2): 330-340.DOI: 10.11949/j.issn.0438-1157.20181166
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YAO Shouguang, HANG Jianwei, FENG Guozeng, XU Jinjin, GU Conghui
Received:
2018-10-09
Revised:
2018-10-23
Online:
2018-12-31
Published:
2018-12-31
Supported by:
supported by the Jiangsu Science and Technology Achievements Transformation Project (BA2016145).
姚寿广, 杭建伟, 冯国增, 许津津, 顾丛汇
基金资助:
江苏省科技成果转化项目(BA2016145)。
CLC Number:
YAO Shouguang, HANG Jianwei, FENG Guozeng, XU Jinjin, GU Conghui. Simulation and optimization of energy utilization system of 25000 tons of LNG powered chemical tanker[J]. CIESC Journal, 2018, 69(S2): 330-340.
姚寿广, 杭建伟, 冯国增, 许津津, 顾丛汇. 25000 t LNG燃料动力化学品船能量利用系统的设计及优化分析[J]. 化工学报, 2018, 69(S2): 330-340.
[1] | 王鲁星, 田明, 韩有臣.LNG点亮中国船用燃料市场新前景[J].国际石油经济, 2012, 20(5):64-69.WANG L X, TIAN M, HAN Y C.LNG lights up new prospects for China's marine fuel market[J].International Petroleum Economics, 2012, 20(5):64-69. |
[2] | 王经纬,张磊.液化天然气LNG冷能利用进展[J].中国石油和化工标准与质量, 2018, 38(11):74-75.WANG J W, ZHANG L.Process in LNG cold energy utilization[J].China Petroleum and Chemical Standard and Quality, 2018, 38(11):74-75. |
[3] | 陈煜,巨永林.利用液化天然气冷能的朗肯循环与联合法发电系统流程的工艺模拟与对比分析[J].化工学报, 2015, 66(S2):387-391.CHEN Y, JU Y L.Comparative analysis and simulation of power cycle to recovery cold energy of LNG[J].CIESC Journal, 2015, 66(S2):387-391. |
[4] | ZHANG M G, ZHAO L J, LIU C, et al.A combined system utilizing LNG and low-temperature waste heat energy[J].Applied Thermal Engineering,2016,101:525-536. |
[5] | CAO L, LIU J P, XU X W.Robustness analysis of the mixed refrigerant composition employed in the single mixed refrigerant (SMR) liquefied natural gas (LNG) process[J].Applied Thermal Engineering, 2016, 93:1155-1163. |
[6] | 梁莹,管延文,蔡磊, 等.利用LNG冷能与Brayton循环及ORC联合发电系统[J].煤气与热力, 2017, 37(12):1-7.LIANG Y, GUAN Y W, CAI L, et al.Combine powder generation system using LNG cold energy, Brayton cycle and ORC[J].Gas & Heat, 2017, 37(12):1-7. |
[7] | 韩逸骁,管延文,刘文斌,等.LNG冷能用于天然气电厂二级循环发电的研究[J].煤气与热力, 2017, 37(3):49-53.HAN Y X, GUAN Y W, LIU W B, et al.Study on secondary cycle power generation using LNG cold energy in natural gas power plant[J].Gas & Heat, 2017, 37(3):49-53. |
[8] | 仇阳,潘振,李萍,等.一种发电和天然气再液化相结合的LNG冷能利用系统[J].化工学报, 2017, 68(9):3580-3591.QIU Y, PAN Z, LI P, et al.An LNG cold energy utilization system combined with power generation and natural gas re-liquefaction[J].CIESC Journal, 2017, 68(9):3580-3591. |
[9] | 彭赛军,朱晓峰,冯逸仙.一种LNG冷能海水淡化及浓盐水综合利用工艺[J].中国井矿盐, 2016, 47(5):3-5.PENG S J, ZHU X F, FENG Y X.A technology of LNG cold energy sea water desalination and comprehensive utilization of strong brine[J].China Well and Rock Salt, 2016, 47(5):3-5. |
[10] | 林文胜,黄美斌,顾安忠.利用LNG冷能的海水淡化流程[J].化工学报, 2015, 66(S2):318-324.LIN W S, HUANG M B, GU A Z.Process comparison of seawater desalination with LNG cold energy utilization[J].CIESC Journal, 2015, 66(S2):318-324. |
[11] | 田堃,徐文东,梁嘉韵,等.LNG冷能用于海水淡化技术研究与工程化设计[J].煤气与热力, 2015, 35(3):20-25.TIAN K, XU W D, LIANG J Y, et al.Technical study and engineering design of LNG cold energy used for seawater desalination[J].Gas & Heat, 2015, 35(3):20-25. |
[12] | 黄美斌,沈清清,林文胜,等.利用LNG冷能的间接冷冻法海水淡化流程比较[J].低温与超导, 2010, 38(3):16-20.HUANG M B, SHEN Q Q, LIN W S, et al.Comparison of indirect freezing seawater desalination processes utilizing LNG cold energy[J].Cryogenics and Superconductivity, 2010, 38(3):16-20. |
[13] | 黄广峰,黄劲松,陈建平,等.LNG冷能用于冷库的分析[J].冷藏技术, 2018, 41(1):38-41.HUANG G F, HUANG J S, CHEN J P, et al.Analysis of cold energy of LNG used in cold storage[J].Journal of Refrigeration Technology, 2018, 41(1):38-41. |
[14] | 黄美斌,林文胜,顾安忠.利用LNG冷能的低温冷库流程比较[J].制冷学报, 2009, 30(4):58-62.HUANG M B, LIN W S, GU A Z.Process comparison of low temperature cold store using LNG cold energy[J].Journal of Refrigeration, 2009, 30(4):58-62. |
[15] | 陈秋雄,徐文东,陈敏.LNG冷能用于冰蓄冷空调的技术开发[J].煤气与热力, 2012, 32(8):6-9.CHEN Q X, XU W D, CHEN M.Technical development of LNG cold energy for ice storage air-conditioning[J].Gas & Heat, 2012, 32(8):6-9. |
[16] | 贺雷,张磊,高为,等.发电与制冷相结合的LNG冷能梯级利用技术研究[J].低温与超导, 2015, 43(5):22-27.HE L, ZHANG L, GAO W, et al.Technology study on the cascade utilization of LNG cold energy with combination of power generation and air conditioning refrigeration system[J].Cryogenics and Superconductivity, 2015, 43(5):22-27. |
[17] | 李静, 李志红, 华贲.LNG冷能利用现状及发展前景[J].天然气工业, 2005, (5):103-105, 14.LI J, LI Z H, HUA B.Current status and developing prospect of LNG cryogenic energy utilization[J].Natural Gas Industry, 2005, (5):103-105, 14. |
[18] | 李超, 吴桂涛, 杜太利.LNG动力船舶储罐稳压过程[J].中国航海, 2014, 37(2):27-30.LI C, WU G T, DU T L.Pressure regulation process of LNG tanks on LNG power ships[J].Navigation of China, 2014, 37(2):27-30. |
[19] | 李博洋, 张运秋, 邱力强, 等.LNG动力船燃料冷能的综合开发与利用[J].中国航海, 2015, 38(3):108-111, 120. LI B Y, ZHANG Y Q, QIU L Q, et al.Comprehensive development and utilization of cold energy of fuel in LNG powered ship[J].Navigation of China, 2015, 38(3):108-111, 120. |
[20] | 石庆国, 胡以怀.LNG蒸汽冷能在船舶上的应用探讨[J].船舶工程, 2013, 35(1):46-48.SHI Q G, HU Y H.The discuss of using cold energy of LNG steam on ship[J].Ship Engineering, 2013, 35(1):46-48. |
[21] | 张静, 李臻.LNG冷能利用在我国的发展[J].化学工程与装备, 2012, (1):103-104.ZHANG J, LI Z.LNG cold energy utilization in China's development[J].Chemical Engineering & Equipment, 2012, (1):103-104. |
[22] | 谭宏博, 厉彦忠.液化天然气冷能构成及其利用方式探讨[J].化学工程, 2006, (12):58-61.TAN H B, LI Y Z.Analysis on liquefied natural gas cryogenic energy composition and discussion on its utilization[J].Chemical Engineering (China), 2006, (12):58-61. |
[23] | 黄建民, 廖文俊, 曾乐才.液化天然气冷能的综合利用研究[J].上海电机学院学报, 2008, 11(2):87-91, 98.HUANG J M, LIAO W J, ZENG L C.Study on the comprehensive utilization of LNG cold energy[J].Journal of Shanghai Dianji University, 2008, 11(2):87-91, 98. |
[24] | 陈赓良.小型LNG气化站的冷能利用[J].石油与天然气化工, 2013, 42(6):588-593.CHEN G L.Cold energy utilization in satellite LNG regasification plant[J].Chemical Engineering of Oil & Gas, 2013, 42(6):588-593. |
[25] | 吴集迎, 马益民, 陈仕清.LNG冷能用于冷库的系统设计及分析[J].集美大学学报(自然科学版), 2010, 15(1):44-47.WU J Y, MA Y M, CHEN S Q.System design and analysis of applying LNG cold energy to refrigerated warehouses[J].Journal of Jimei University (Natural Science), 2010, 15(1):44-47. |
[26] | 田堃, 徐文东, 张乐亨, 等.LNG燃料船冷能利用技术开发与工程化研究[J].广东化工, 2014, 41(21):128-130.TIAN K, XU W D, ZHANG L H, et al.Technology research of cold energy utilization on LNG fueled ships[J].Guangdong Chemical Industry, 2014, 41(21):128-130. |
[27] | 李博洋, 胡德栋, 钱德松, 等.LNG动力船燃料冷能综合利用研究[J].大连海事大学学报, 2017, 43(1):45-52.LI B Y, HU D D, QIAN D S, et al.Study on the comprehensive utilization of fuel cold energy for LNG powered carrier[J].Journal of Dalian Maritime University, 2017, 43(1):45-52. |
[28] | 孙延寿, 胡德栋, 李博洋, 等.LNG动力船冷能梯级利用方案设计与优化[J].能源化工, 2017, 38(4):68-73.SUN Y S, HU D D, LI B Y, et al.Design and optimization of cascade utilization of LNG cold energy[J].Energy Chemical Industry, 2017, 38(4):68-73. |
[29] | 方贵银.制冷空调设备维修手册[M].北京:中国电力出版社, 2011:137-165.FANG G Y.Refrigeration and Air Conditioning Equipment Maintenance Manual[M].Beijing:China Electric Power Press, 2011:137-165. |
[30] | 埃文斯.冷冻食品科学与技术[M].许学勤, 译.北京:中国轻工业出版社, 2010:79-81.EVANS J A.Frozen Food Science and Technology[M].XU X Q, trans.Beijing:China Light Industry Press, 2010:79-81. |
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