代表性论文专著
一、专著
[1] 林文胜等. 深冷技术·LNG储运与利用. 杭州:杭州出版社,2021
[2] 中国制冷学会编著. 2018-2019制冷及低温工程学科发展报告. 北京:中国科学技术出版社,2020
[3] 顾安忠等. 深冷技术·液化天然气. 杭州:杭州出版社,2020
[4] 中华人民共和国国家标准. GB51261-2019天然气液化工厂设计标准. 北京:中国建筑工业出版社,2020
[5] 中国制冷学会组织编写. 中国制冷行业战略发展研究报告. 北京:中国建筑工业出版社,2016
[6] 顾安忠等. 液化天然气技术(第二版). 北京:机械工业出版社,2015
[7] 严铭卿等. 燃气输配工程学. 北京:中国建筑工业出版社,2014
[8] 中华人民共和国国家标准. GB/T18442.6-2011固定式真空绝热深冷压力容器 第6部分:安全防护. 北京:中国标准出版社,2012
[9] 中华人民共和国国家标准. GB/T26980-2011液化天然气(LNG)车辆燃料加注系统规范. 北京:中国标准出版社,2012
[10] 中国制冷学会编著. 2010-2011制冷及低温工程学科发展报告. 北京:中国科学技术出版社,2011
[11] 顾安忠等. 液化天然气技术手册. 北京:机械工业出版社,2010
[12] 中华人民共和国行业标准. QC/T755-2006液化天然气(LNG)汽车专用装置技术条件. 北京:中国计划出版社,2009
[13] 顾安忠等. 工业气体集输新技术. 北京:化学工业出版社,2007
[14] 顾安忠等. 液化天然气技术. 北京:机械工业出版社,2004
二、代表性论文
[1] Ruan BH, Lin WS. Experimental study on heat transfer in a model of submerged combustion vaporizer. Applied Thermal Engineering, 2022,201:117744
[2] Xu JX, Lin WS. Research on systems for producing liquid hydrogen and LNG from hydrogen-methane mixtures with hydrogen expansion refrigeration. International Journal of Hydrogen Energy, 2021,46(57):29243-29260
[3] Xu JX, He T, Lin WS. Experimental and theoretical study of CO2 solubility in liquid CH4/H2 mixtures at cryogenic temperatures. Journal of Chemical and Engineering Data, 2021,66(7):2844-2855
[4] Xu JX, Lin WS. Integrated hydrogen liquefaction processes with LNG production by two-stage helium reverse Brayton cycles taking industrial by-products as feedstock gas. Energy, 2021,227:120443
[5] He T, Lin WS. Energy saving and production increase of mixed refrigerant natural gas liquefaction plants by taking advantage of natural cold sources in winter. Journal of Cleaner Production, 2021,299:126884
[6] He T, Lin WS. Design and analysis of dual mixed refrigerant processes for high-ethane content natural gas liquefaction. Chinese Journal of Chemical Engineering, 2021,29:354-364
[7] He T, Lin WS. Energy saving research of natural gas liquefaction plant based on waste heat utilization of gas turbine exhaust. Energy Conversion and Management, 2020,225:113468
[8] Lin WS, Xiong XJ, Gu AZ. Optimization and thermodynamic analysis of a cascade PLNG (pressurized liquefied natural gas) process with CO2 cryogenic removal. Energy, 2018,161:870-877
[9] Lin WS, Hu MF, Gu AZ. Vapor-liquid equilibria for low temperature CH4/H2 mixture. International Journal of Hydrogen Energy, 2018,43(28):12671-12679
[10] Lin WS, Xu JX, Gao T, Gu AZ. Analysis of heat transfer irreversibility in processes for liquefaction of coalbed methane with nitrogen. Industrial & Engineering Chemistry Research, 2018,57(17):5895-5902
[11] Lin WS, Xiong XJ, Spitoni M, Gu AZ. Design and optimization of pressurized liquefaction processes for offshore natural gas using two-stage cascade refrigeration cycles. Industrial & Engineering Chemistry Research, 2018,57(17):5858-5867
[12] Lin WS, Huang MB, Gu AZ. A seawater freeze desalination prototype system utilizing LNG cold energy. International Journal of Hydrogen Energy, 2017,42(29):18691-18698
[13] Lin WS, Xu JX, Zhang L, Gu AZ. Synthetic natural gas (SNG) liquefaction processes with hydrogen separation. International Journal of Hydrogen Energy, 2017,42(29):18417-18424
[14] Lin WS, Zhang L, Gu AZ. Effects of hydrogen content on nitrogen expansion liquefaction process of coke oven gas. Cryogenics, 2014,61:149-153
[15] Lin WS, Du ZX, Gu AZ. Analysis on heat transfer correlations of supercritical CO2 cooled in horizontal circular tubes. Heat and Mass Transfer, 2012,48(4):705-711
[16] Lin WS, Gao T, Gu AZ, Lu XS. An energy fluctuation approach to calculate homogeneous nucleation rate in superheated liquids and its verification by performing an LPG rapid discharge experiment. Journal of Chemical Engineering of Japan, 2010,43(11):946-951
[17] Lin WS, Zhang N, Gu AZ. LNG (liquefied natural gas): A necessary part in China’s future energy infrastructure. Energy, 2010,35(11):4383-4391
[18] Lin WS, Gao T, Gu AZ, Gu M. CBM nitrogen expansion liquefaction processes using residue pressure of nitrogen from adsorption separation. Journal of Energy Resources Technology-Transactions of the ASME, 2010,132(3):032501
[19] Lin WS, Gong YW, Gao T, Gu AZ, Lu XS. Experimental studies on the thermal stratification and its influence on BLEVEs. Experimental Thermal and Fluid Science, 2010,34(7):972-978
[20] Lin WS, Huang MB, He HM, Gu AZ. A transcritical CO2 Rankine Cycle with LNG cold energy utilization and liquefaction of CO2 in gas turbine exhaust. Journal of Energy Resources Technology-Transactions of the ASME, 2009,131(4):042201
软件版权登记及专利
[1] 林文胜, 许婧煊. 一种利用氮气和氦气膨胀制冷分离焦炉煤气的方法: CN, ZL201810503482.0. 2019-12-10
[2] 林文胜, 许婧煊. 一种利用氦气膨胀制冷分离焦炉煤气的方法: CN, ZL201810503474.6. 2019-09-27
[3] 林文胜, 熊晓俊. 带凝华脱除CO2的气体膨胀天然气带压液化工艺: CN, ZL201210111419.5. 2014-10-15
[4] 林文胜, 熊晓俊. 带凝华脱除CO2的级联式天然气带压液化工艺: CN, ZL201210111417.6. 2014-10-15
[5] 林文胜, 熊晓俊. 带凝华脱除CO2的混合制冷机循环天然气带压液化工艺: CN, ZL201210111409.1. 2014-10-15
[6] 林文胜, 高婷, 顾安忠, 辜敏. 利用变压吸附余压的半开式煤层气氮膨胀液化工艺: CN, ZL200810038554.5. 2010-12-15
[7] 林文胜, 高婷, 顾安忠, 辜敏. 利用变压吸附余压预冷的煤层气氮膨胀液化工艺: CN, ZL200810038555.X. 2010-08-11