職 稱:副研究員
所屬部門:油氣儲運(yùn)工程研究所
學(xué)科專業(yè):油氣儲運(yùn)工程
研究方向:氣體分離與液化、低溫碳捕集理論與技術(shù)、油氣儲運(yùn)系統(tǒng)節(jié)能減排、熱力系統(tǒng)仿真與優(yōu)化
聯(lián)系方式:Email:17854222029;[email protected]
聯(lián)系地址:610500四川省成都市新都區(qū)新都大道85號西南石油大學(xué)國家重點(diǎn)實(shí)驗(yàn)室B604
何婷,博士,副研究員,2023年獲上海交通大學(xué)-挪威科技大學(xué)(Norwegian University of Science and Technology)動力工程及工程熱物理專業(yè)雙博士學(xué)位。主要從事氣體分離與液化、低溫碳捕集理論與技術(shù)、油氣儲運(yùn)系統(tǒng)節(jié)能減排、熱力系統(tǒng)仿真與優(yōu)化等方面的研究工作,包括高含乙烷天然氣液化及碳捕集工藝,天然氣制氫中變氣低溫碳捕集理論與技術(shù),多元物系相平衡理論,大規(guī)模相變儲能系統(tǒng),中低溫余熱利用等。主研/參研國家自然科學(xué)基金面上項(xiàng)目、挪威研究理事會項(xiàng)目等縱向課題3項(xiàng)、校企合作橫向項(xiàng)目7項(xiàng);以第一作者在《Energy Conversion and Management》《Energy》《Applied Thermal Engineering》等能源領(lǐng)域top期刊上發(fā)表論文20余篇(其中SCI收錄10篇,影響因子累計超70,EI收錄2篇);擔(dān)任《Soft Computing》《Journal of Cleaner Production》等SCI期刊審稿專家。
●2014.09-2018.06 中國石油大學(xué)(華東),油氣儲運(yùn)工程,學(xué)士
●2018.09-2023.06 上海交通大學(xué),動力工程及工程熱物理,博士
●2021.10-2022.11 挪威科技大學(xué),能源與過程工藝系,雙學(xué)位博士聯(lián)合培養(yǎng)(國家留學(xué)基金委資助)
●2023.09-2023.12 西南石油大學(xué)石油與天然氣工程學(xué)院,講師
●2024.01-至今 西南石油大學(xué)石油與天然氣工程學(xué)院,副研究員
●國家自然科學(xué)基金面上項(xiàng)目,52276012,利用C2H6-CO2共沸特性的天然氣低溫脫碳與液化熱力過程研究,2023.01-2026.12,主研
●挪威研究理事會HighEFF項(xiàng)目子課題,257632,液化空氣儲能系統(tǒng)儲能效率提升研究,2021.10-2022.10,參研
●挪威SINTEF Energy研究所項(xiàng)目,質(zhì)子膜重整制氫剩余氣碳捕集系統(tǒng)研究,2022.01-2022.12,主研
●北京低碳清潔能源研究院項(xiàng)目,含CO2多元?dú)怏w混合物相平衡特性測定及碳捕集流程研究,2023.01-2023.07,主研
●上海宇航系統(tǒng)工程研究所項(xiàng)目,低溫連接器自動對接技術(shù)方案調(diào)研,2019.01-2021.04,主研
●西氣東輸管道公司項(xiàng)目,國產(chǎn)30MW級燃驅(qū)壓縮機(jī)組現(xiàn)場調(diào)試和工業(yè)性應(yīng)用試驗(yàn)實(shí)施技術(shù)服務(wù),2020.01-2020.11,參研
(1)期刊論文
●HE T,SI B,GUNDERSEN T,et al. Integrated ethane recovery and cryogenic carbon capture in a dual mixed refrigerant natural gas liquefaction process[J]. Energy,2024,290:130125.(SCI,中科院一區(qū))
●HE T,LIU Z,SON H,et al. Comparative analysis of cryogenic distillation and chemical absorption for carbon capture in integrated natural gas liquefaction processes[J]. Journal of Cleaner Production,2023,383(1):135264. (SCI,中科院一區(qū))
●HE T,LIN W,DU Z. Measurement and theoretical calculation of CO2 solubility data in liquid CH4+C2H6 mixtures at cryogenic temperatures[J]. Journal of Chemical & Engineering Data,2022,67(10):3222-3233. (SCI)
●HE T,LIN W,DU Z. Design and analysis of cascade liquefaction processes for coproducing liquid ethane and LNG[J]. International Journal of Energy Research,2022,46:9794-9811. (SCI)
●He T,LIN W. Energy saving and production increase of mixed refrigerant natural gas liquefaction plants by taking advantage of natural cold sources in winter[J]. Journal of Cleaner Production,2021,299(12):126884. (SCI,中科院一區(qū))
●HE T,LIN W. Design and analysis of dual mixed refrigerant processes for high-ethane content natural gas liquefaction[J]. Chinese Journal of Chemical Engineering,2021,29:354-364.(SCI)
●HE T,LIN W. Energy saving research of natural gas liquefaction plant based on waste heat utilization of gas turbine exhaust[J]. Energy Conversion and Management,2020,225:113468. (SCI,中科院一區(qū))
●HE T,LIN W. A novel propane pre-cooled mixed refrigerant process for coproduction of LNG and high purity ethane[J]. Energy,2020,202:117784. (SCI,中科院一區(qū))
●HE T,LIN W. Design and optimization of nitrogen expansion liquefaction processes integrated with ethane separation for high ethane-content natural gas[J]. Applied Thermal Engineering,2020,173:115272. (SCI)
●HE T,LIN W. Design and optimization of integrated single mixed refrigerant processes for coproduction of LNG and high-purity ethane[J]. International Journal of Refrigeration,2020,119:216-226. (SCI)
●XU J,HE T,LIN W. Experimental and theoretical study of CO2 solubility in liquid CH4/H2 mixtures at cryogenic temperatures[J]. Journal of Chemical & Engineering Data,2021,66:2844-2855. (SCI)
●LIU Z,HE T,KIM D,et al. Optimal utilization of compression heat in liquid air energy storage[J]. Industrial & Engineering Chemistry Research,2023,62(12):5097-5108. (SCI)
●HAI H,WANG S,HE T,et al. Numerical study of the falling film thickness around the tube bundle with different spacings between spray holes and tubes under tilt and sloshing conditions[J]. International Journal of Heat and Mass Transfer,2019,138:184-193. (SCI)
●何婷,林文勝.基于余熱利用的活化MDEA法脫除CO2的天然氣液化系統(tǒng)[J].化工學(xué)報,2021,72(S1):453-460. (EI)
●何婷,林文勝.高含乙烷天然氣氮膨脹液化分離流程[J].化工學(xué)報,2018,69(S2):236-241. (EI)
●何婷,林文勝. LNG冷能利用新技術(shù)[J]. 深冷技術(shù),2021(3):9.
●熊曉俊,何婷,林文勝.利用常溫壓縮機(jī)處理LNG接收站BOG的工藝探討[J].化工學(xué)報,2018,69(S2):435-440. (EI)
(2)學(xué)術(shù)會議
●HE T,GUNDERSEN T,LIN W. Integrated ethane recovery and cryogenic carbon capture in a dual mixed refrigerant natural gas liquefaction process[R]. Shanghai:3rd International Conference for Global Chinese Academia on Energy and Built Environment,2023.
●HE T,GUNDERSEN T,LIN W. Novel integrated system for cryogenic CO2 capture and liquefaction of natural gas using natural refrigerants[R]. Trondheim,Norway:15th IIR-Gustav Lorentzen Conference on Natural Refrigerants,2022.
●HE T,GUNDERSEN T,LIN W. Design and analysis of a single mixed refrigerant natural gas liquefaction process integrated with ethane recovery and carbon removal using cryogenic distillation[R]. Kyoto,Japan:The 14th International Symposium on Process Systems Engineering-PSE 2021+,2022.
●SU P,HE T,LIN W. Waste heat utilization and CO2 capture in a cascade natural gas liquefaction system[R]. Shanghai:3rd International Conference for Global Chinese Academia on Energy and Built Environment,2023.
●何婷,林文勝.基于低溫精餾脫碳的含乙烷天然氣液化流程[R]. 上海:2020年中國工程熱物理學(xué)會工程熱力學(xué)與能源利用學(xué)術(shù)年會,2020.
●何婷,林文勝.基于余熱利用的活化MDEA法脫除CO2的天然氣液化系統(tǒng)[R]. 湖南 長沙:第十一屆全國制冷空調(diào)新技術(shù)會議,2020.
●何婷,林文勝.高含乙烷天然氣C3MR液化分離流程[R].云南 玉溪:第十四屆全國低溫工程大會,2019.
●何婷,林文勝.高含乙烷天然氣氮膨脹液化分離流程研究[R]. 上海:第五屆中國液化天然氣論壇錄,2018.
(3)專利
●何婷,陳利瓊,張開,等.一種用于天然氣制氫中變氣的低溫碳捕集工藝:202311382282.1[P]. 2024-01-23.
●氣體分離與液化:從事天然氣液化,天然氣脫碳,天然氣輕烴回收等技術(shù)領(lǐng)域的研究
●低溫碳捕集理論與技術(shù):從事多元物性低溫相平衡理論,利用C2H6-CO2共沸特性的天然氣低溫精餾脫碳,CO2低溫液化/凝華分離等技術(shù)領(lǐng)域的研究
●油氣儲運(yùn)系統(tǒng)節(jié)能減排:從事中低溫余熱利用,LNG冷能利用,天然氣管網(wǎng)余壓利用等技術(shù)領(lǐng)域的研究
●熱力系統(tǒng)仿真與優(yōu)化:從事蒸汽壓縮式制冷循環(huán)、氣體膨脹制冷循環(huán)、吸收式制冷循環(huán)、有機(jī)朗肯循環(huán)、液化空氣儲能系統(tǒng)等技術(shù)領(lǐng)域的研究
研究團(tuán)隊(duì)由3位教授、3位副教授和多名博士、碩士組成。團(tuán)隊(duì)成員長期從事油氣儲運(yùn)工程專業(yè)的教學(xué)和科研究工作,有較強(qiáng)的研究與創(chuàng)新能力。其研究人員從事油氣集輸管網(wǎng)優(yōu)化及適應(yīng)、非常規(guī)原油降粘減阻、天然氣凈化及凝液回收、天然氣液化、系統(tǒng)能量綜合利用及節(jié)能、油氣地面系統(tǒng)完整性、油氣集輸/配送系統(tǒng)危害識別及控制、天然氣管道投產(chǎn)/運(yùn)營風(fēng)險識別及控制、高鋼級帶缺陷油氣管道斷裂行為預(yù)測及工況控制、基于應(yīng)力應(yīng)變的管道安全評價技術(shù)、管道定量風(fēng)險評價及完整性管理決策、特殊地質(zhì)條件下油氣管道維搶修等領(lǐng)域的研究,已取得大量的研究成果,形成穩(wěn)定的研究方向和特色。團(tuán)隊(duì)承擔(dān)國家自然基金、國家油氣重大專項(xiàng)等國家級、省部級項(xiàng)目30余項(xiàng)、油氣田合作項(xiàng)目130余項(xiàng),撰寫并出版本科及研究生教材、專著等12部,發(fā)表學(xué)術(shù)論文300余篇,SCI、EI收錄110余篇。團(tuán)隊(duì)獲省部級獎項(xiàng)7項(xiàng)(牽頭申報5項(xiàng)),授權(quán)發(fā)明專利18項(xiàng)。