新疆时时彩开奖号码-重庆时时彩万能投注

職        稱:副教授
導師 資格:碩導
所屬 部門:儲運所
學科 專業(yè):油氣儲運工程
研究 方向:油氣儲運系統(tǒng)流動與安全、油氣管道及站場完整性管理技術
聯(lián)系 方式:Email:[email protected];Tel.15101186627
聯(lián)系 地址:610500 四川省成都市新都區(qū)新都大道8號西南石油大學

何國璽,四川南江人,副教授,碩士生導師,博士(后)。2018年畢業(yè)于中國石油大學(北京),獲油氣儲運工程博士學位。主要從事油氣管輸過程復雜流動傳熱傳質、油氣儲運系統(tǒng)流動與安全、腐蝕與防護、檢測與評價、完整性管理、成品油順序輸送、智能管道等方面的教學與科研工作。主持國家自然科學基金1項、省部級基金項目3項;參研國家自然科學基金項目3項,省級教改項目2項,橫項科研課題40余項;參編國外專著1部;發(fā)表論文百余篇,其中SCI/EI收錄40余篇,參加IPC/IPTC/IHTC/ASCHT等國際會議10余次;授權專利與軟件著作權30余件(國際專利2件);獲得省部級科技進步獎2項。擔任多本國際學術期刊審稿人。

個人經(jīng)歷

(1)教育經(jīng)歷

●2008.09-2012.06    中國石油大學(北京),數(shù)學與應用數(shù)學,學士

●2012.09-2015.06    中國石油大學(北京),石油與天然氣工程,碩士

●2015.06-2015.09    阿聯(lián)酋石油學院,訪問學者

●2017.08-2018.07    英國哈德斯菲爾德大學,博士聯(lián)培

●2015.09-2018.09    中國石油大學(北京),油氣儲運工程,博士

(2)工作經(jīng)歷

●2018.10-2020.12    西南石油大學石油與天然氣工程學院,博士后

●2018.10-2022.12    西南石油大學石油與天然氣工程學院,講師

●2022.12-至今       西南石油大學石油與天然氣工程學院,副教授


主研項目

●國家自然科學基金青年基金,52202403,順序輸送混油拖尾形成機制及關鍵質量指標衰減機理研究,2023/01-2025/12,主持

●省部級重點實驗室開放基金,LQ21KFJJ01,隧道內(nèi)高壓天然氣管道泄漏后爆炸對相鄰液體管道的影響與防控措施研究,2021/03-2023/03,主持

●四川省科學基金青年基金,2022NSFSC0973,順序輸送混油拖尾現(xiàn)象形成機制及關鍵質量指標值衰減機理研究,2022/01-2023/12,主持

●中國博士后科學基金面上項目,2019M653481,順序輸送過程中混油段油品質量指標值衰減機理研究,2019/06-2020/07,主持

●國家自然科學基金面上項目,52174062,基于主動勵磁的鋼質管道三維應力定量表征與智能監(jiān)測研究,2022/01-2025/12,參與

●國家自然科學基金面上項目,51674212,成品油管道批次輸送過程中的復雜傳熱傳質機理研究,2015/01-2018/12,參與

●油庫安全與設備測評實驗系統(tǒng),2023/03-2023/09,主研

●集輸管道泄漏定位技術有效性及適應性評價研究,2022/11-2023/02,主研

●油氣管道評價和管理軟件開發(fā),2022/10-2023/02,主研

●臨興-神府地面工程節(jié)點模擬研究,2022/10-2023/01,主研

●天然氣管道投產(chǎn)及運行工藝計算軟件開發(fā),2022/10-2023/01,主研

●順北二區(qū)長距離集輸管道在線清管工藝研究,2022/07-2022/10,主研

●相國寺儲氣庫注采站場工藝管道彎頭沖蝕區(qū)域快速篩查方法與應用研究,2022/06-2022/12,主研

●油田集輸與處理系統(tǒng)腐蝕監(jiān)測技術有效性評價與優(yōu)化研究,2022/06-2022/09,主研

●陵水氣田一體化模型建設及生產(chǎn)流動保障關鍵節(jié)點研究,2022/05-2022/08,主研

●長寧區(qū)塊轉供水鋼制管線腐蝕缺陷檢測,2022/05-2022/08,主研

●油氣站場失效識別統(tǒng)計方法研究與失效數(shù)據(jù)庫開發(fā),2021/12-2022/03,主研

●高風險裝置設施檢測評價管理技術研究,2020/12-2021/12,主研

●油氣田管道和站場完整性管理效能評價體系研究,2021/08-2022/08,主研

●瑪湖油田常溫集輸適應性評價與應用,2021/06-2022/10,主研

●車輛荷載作用下公路管段極限承載能力分析研究,2020/12-2021/12,主研

●中緬天然氣管道失效對相鄰管道的影響與防控技術研究,2020/12-2021/12,主研

●長寧頁巖氣田集輸管道腐蝕性主控因素及對防護策研究,2020/11-2021/06,主研

●中緬天然氣管道18處應力異常管段檢測,2020/09-2021/01,主研

●頁巖氣地面工程建設模式研究,2020/09-2020/12,主研

●塔里木油田集輸管道緩蝕劑效果主控因素分析與完整性管理對策研究,2020/08-2021/07,主研

●濕氣管道內(nèi)腐蝕預測系統(tǒng)軟件開發(fā)(WG-ICDA),2020/07-2020/11,主研

●集輸管道元素硫沉積預測系統(tǒng),2020/07-2020/10,主研

●站內(nèi)高含硫伴生氣管道腐蝕分析與治理技術評價,2020/05-2021/06,主研

●油氣田管道缺陷評價軟件開發(fā),2020/04-2020/09,主研

●天然氣管道站場完整性管理體系建立與應用研究,2019/12-2020/03,主研

●頁巖氣地面集輸系統(tǒng)適應性評價,2019/12-2020/03,主研

●胡寧4重油熱采腐蝕規(guī)律及防腐選材研究,2019/09-2021/04,主研

●淄萊線、山東LNG 干線平度-萊西段管道內(nèi)腐蝕分析與研究,2019/08-2020/12,主研

●高緯度地區(qū)天然氣地面工程保溫工藝技術研究與應用,2019/06-2021/06,主研

●輸油管道泄漏量測算軟件部署調試,2017/10-2018/06,主研

●節(jié)點分析在注水地面系統(tǒng)中的研究與應用,2016/01-2016/06,主研

●煤層氣地面集輸工藝優(yōu)化研究-集氣管道凝水聚積位置分析,2015/08-2015/12,主研

●集調氣系統(tǒng)模型構建及模擬研究,2015/08-2016/07,主研

●成品油管道泄漏量測算研究和軟件開發(fā),2015/01-2016/12,主研


代表性成果

(1)發(fā)表學術期刊論文

●HE G X,LYU X,LIAO K X,et al. A method for fast simulating the liquid seepage-diffusion process coupled with internal flow after leaking from buried pipelines[J]. Journal of Cleaner Production,2019,240(10):118167.(SCI 1區(qū)top,IF=11.072)

●HE G X,LIANG Y,LI Y,et al. A method for simulating the entire leaking process and calculating the liquid leakage volume of a damaged pressurized pipeline[J]. Journal of hazardous materials,2017,332(15):19-32.(SCI 1區(qū)top,IF=6.065)

●HE G X,LI Y,HUANG Y,et al. A framework of smart pipeline system and its application on multiproduct pipeline leakage handling[J]. Energy,2019,188(1):116031.(SCI 1區(qū)top,IF=8.857)

●HE G X,ZOU Q,LIAO K X,et al. Corrosion mechanism of high temperature and O2 content in steamed CO2/O2/SO2 system and failure behavior of 20G steel on steam-injection pipelines[J]. Process Safety and Environmental Protection,2022,163(1):528-542.(SCI 2區(qū),IF=7.926)

●HE G X,CHEN D,LIAO K X,et al. A methodology for the optimal design of gathering pipeline system in old oilfield during its phased development process[J]. Computers & Industrial Engineering,2019,130(1):14-34.(SCI 2區(qū),IF=7.18)

●HE G X,HE T,LIAO K X,et al. Experimental and numerical analysis of non-contact magnetic detecting signal of girth welds on steel pipelines[J]. ISA transactions,2022,125(1):681-698.(SCI 2區(qū),IF=5.911)

●HE G X,LIN M,WANG B,et al. Experimental and numerical research on the axial and radial concentration distribution feature of miscible fluid interfacial mixing process in products pipeline for industrial applications[J]. International Journal of Heat and Mass Transfer,2018,127(3):728-745.(SCI 2區(qū),IF=3.458)

●HE G X,LI Y,YIN B,et al. Numerical simulation of vapor condensation in gas-water stratified wavy pipe flow with varying interface location[J]. International Journal of Heat and Mass Transfer,2017,115(2):635-651.(SCI 2區(qū),IF=3.458)

●LI Y,HE G X,SUN L,et al. Numerical simulation of oil-water non-Newtonian two-phase stratified wavy pipe flow coupled with heat transfer[J]. Applied Thermal Engineering,2018,140(1):266-286.(SCI 2區(qū),IF=3.444)

●HE G X. Heat transfer and phase change characterization of multicomponent vapor/condensation stratified flow in a hydrocarbon pipeline[J]. Industrial & Engineering Chemistry Research,2017,56(29):8358-8374.(SCI 2區(qū),IF=2.843)

●HE G X,TANG D,YIN B,et al. Comparison and analysis of drainage measures for draining accumulated water condensed from wet CBM and transported in surface gathering pipeline network[J]. Journal of Natural Gas Science and Engineering,2018,56(1):281-298.(SCI 3區(qū))

●HE G X,PENG H,LIAO K X,et al. Assessment of cathodic protection effect on long‐distance gas transportation pipelines based on buried steel specimens[J]. Materials and Corrosion,2021,72(5):839-858.(SCI 4區(qū))

●HE G X,YANG N,LIAO K X,et al. A novel numerical model for simulating the quantity of tailing oil in the mixed segment between two batches in product pipelines[J]. Mathematical Problems in Engineering,2019,10(1):1-14.(SCI 4區(qū))

●HE G X,LI Y,LIN M,et al. Optimization of gathering and transmission pipe network layout in gas field and pipeline route in 3D terrain[J]. Journal of Pipeline Systems Engineering and Practice,2019,10(2):04019009.(SCI 4區(qū))

●HE G X,NIE S,SUN L,et al. Numerical simulation for the separation process of suspended fine sand from oil and water emulsion in a large-size sedimentation tank[J]. Desalination and Water Treatment,2018,115(1):153-171.(SCI 4區(qū))

●QIN M,LIAO K X,HE G X,et al. Quantitative risk assessment of static equipment in petroleum and natural gas processing station based on corrosion-thinning failure degree[J]. Process Safety and Environmental Protection,2023,172(4):144-156.

●LENG J H,TIAN Z Y,LIAO K X,HE T J,LIU X,HE G X,et al. Localised corrosion failure of an L245N pipeline in a CO2–O2–Cl?environment[J]. Corrosion Engineering,Science and Technology,2023,58(3):1-12.

●HE T J,LIAO K X,TANG J,HE G X,et al. Quantitative study of sensor-pipe distance in non-contact magnetic detection of ferromagnetic pipelines[J]. IEEE Sensors Journal,2023,23(8):1-17.

●QIN M,LIAO K X,CHEN S J,HE G X,et al. Numerical simulation of gas-liquid flow in inclined shale gas pipelines[J]. Chemical Engineering Research and Design,2023,190(2):605-618.

●LI X X,LIAO K X,HE G X,et al. Research on Improved Wavelet Threshold Denoising Method for Non-Contact Force and Magnetic Signals[J]. Electronics,2023,12(5):1244.

●LIAO K X,WANG Y W,CHEN D,HE G X,et al. Parametric Study on Natural Gas Leakage and Diffusion in Tunnels[J]. Journal of Pipeline Systems Engineering and Practice,2023,14(2):04023003.

●HE T,LIAO K X,HE G X,et al. Quantitative study on magnetic-based stress detection and risk evaluation for girth welds with unequal wall thickness of high-grade steel pipelines[J]. Journal of Natural Gas Science and Engineering,2022,108(10):104825.

●LI X,LIAO K X,HE G X,et al. Influence of Blunt-Nose and Conical Fragment on Domino Accident Probability in Spherical-Tank Area[J]. Process Safety and Environmental Protection,2021,146(10):800-810.

●LIAO K X,QIN M,HE G X,et al. Study on corrosion mechanism and the risk of the shale gas gathering pipelines[J]. Engineering Failure Analysis,2021,128(10):1350-6307.

●LIAO K X,QIN M,YANG N,HE G X,et al. Corrosion main control factors and corrosion degree prediction charts in H2S and CO2 coexisting associated gas pipelines[J]. Materials Chemistry and Physics,2022,292(10):126838.

●LIAO K X,ZHOU F,SONG X,WANG Y,ZHAO S,LIANG J,CHEN L,HE G X. Synergistic effect of O2 and H2S on the corrosion behavior of N80 Steel in a simulated high-pressure flue gas injection system[J]. Journal of Materials Engineering and Performance,2020,29(1):155-166.

●QIN M,HE G X,LIAO K X,et al. CO2-O2-SRB-Cl-Multifactor synergistic corrosion in shale gas pipelines at a low liquid flow rate[J]. Journal of Materials Engineering and Performance,2022,31(6):4820-4835.

●QIN M,LIAO K X,HE G X,et al. Main control factors and prediction model of flow-accelerated CO2/H2S synergistic corrosion for X65 steel[J]. Process Safety and Environmental Protection,2022,160(1):749-762.

●QIN M,LIAO K X,HE G X,et al. Flow influenced initiation and propagation of SRB corrosion on L360N carbon steel[J]. Arabian Journal for Science and Engineering,2022,47(9):11469-11480.

●QIN M,LIAO K X,HE G X,et al. Corrosion mechanism of X65 steel exposed to H2S/CO2 brine and H2S/CO2 vapor corrosion environments[J]. Journal of Natural Gas Science and Engineering,2022,106(1):104774.

●YANG Y,ZHENG P,ZENG F,XIN P,HE G X,et al. Metal corrosion rate prediction of small samples using an ensemble technique[J]. Cmes-Computer Modeling in Engineering & Sciences,2023,134(1):267-291.

●ZHANG H,QIN M,LIAO K X,WANG K,HE G X. Pipe-soil vibration characteristics of natural gas pipelines during the pigging process[J]. Journal of Natural Gas Science and Engineering,2021,95(1):104148.

●ZHAO J,LIAO K X,LI X,HE G X,et al. Collaborative detection and on-line monitoring of pipeline stress in oil and gas stations[J]. MEASUREMENT SCIENCE and TECHNOLOGY,2022,33(10):105001.

●ZHAO S,LIAO K X,HE G X,et al. Application of internal corrosion direct assessment in CO2 slug flow submarine pipelines[J]. JOURNAL OF TAIBAH UNIVERSITY FOR SCIENCE,2021,15(1):984-998.

●ZHAO S,LIAO K X,LIU Y,MIAO C,WEI C,HE G X. Corrosion prediction model of submarine mixed pipeline X65 steel under a CO2/Cl-synergistic system[J]. Arabian Journal for Science and Engineering,2022,47(9):11673-11685.

●ZHAO S,LIAO K X,WANG X,ZHOU F,SONG X,HE G X. Corrosion behavior of 35CrMo steel in a CO2/O2 coexistent simulating environment of fire-drive tail gas[J]. Materials Chemistry and Physics,2021,272(1):125016.

●ZHAO S,LIAO K X,ZHOU F,LENG J,HUANG Q,HE G X. Effect of temperature on the corrosion behavior of L245NS steel in a CO2/H2S/O2 multi-component thermal fluid collection and transportation system[J]. Arabian Journal for Science and Engineering,2022,47(9):11223-11237.

●ZOU Q,LIAO K X,LENG J,ZHAO S,HE G X,et al. Corrosion mechanism of oil field gathering pipeline containing small H2S impurity[J]. Arabian Journal for Science and Engineering,2022,47(9):12075-12087.

●何國璽,唐鑫,冷吉輝,等.溫度和O2含量在CO2/H2S/O2體系中對輸氣管道的腐蝕行為研究[J].表面技術,2022,1(1):1-11.

●何國璽,唐鑫,黃小明,等.頁巖氣集輸管網(wǎng)適應性評價分析[J].科學技術與工程,2022,22(24):10550-10556.

●何國璽,覃敏,廖柯熹.順序輸送成品油質量指標值衰減規(guī)律研究進展[J].科學技術與工程,2019,19(30):1-8.

●何國璽,湯東東,王劍波,等.基于Gamma-χ2分布的混油拖尾現(xiàn)象預測[J/OL].油氣儲運,2018,38(1):1-10.

●何國璽,湯東東,孫麗穎,等.油田集調氣系統(tǒng)停機工況下的調氣方案優(yōu)化[J].油氣儲運,2018,37(2):173-182.

●何國璽,聶四明,李巖松,等.液體管道破損處泄漏特性實驗環(huán)道設計[J].管道技術與設備,2018,1(5):11-14.

●何國璽,李巖松,王博弘,等.基于無線通信基站的清管器實時三維定位方法[J].油氣儲運,2018,37(7):780-789.

●何國璽,梁永圖,李巖松,等.基于電導率的混油界面檢測裝置[J].石油化工高等學校學報,2017,30(3):61-65.

●何國璽,梁永圖,李巖松,等.成品油管道打孔盜油量測算方法[J].石油科學通報,2017,2(1):86-101.

●何國璽,梁永圖,李巖松,等.埋地液烴管道泄漏擴散及泄漏量測算研究進展[J].油氣儲運,2017,36(1):8-20.

●何國璽,王寶瑩,林默涵,等.埋地成品油管道泄漏后油品滲流擴散規(guī)律[J].北京石油化工學院學報,2017,25(4):75-82.

●何國璽,聶四明,方利民,等.成品油順序輸送實驗環(huán)道設計[J].管道技術與設備,2017,1(6):1-5,24.

●何國璽,李蛟鸞,李巖松,等.電容式混油界面檢測裝置設計[J].管道技術與設備,2017,1(5):17-21.

●何國璽,梁永圖,方利民,等.考慮三維地形及障礙的煤層氣田集輸系統(tǒng)布局優(yōu)化[J].油氣儲運,2016,35(6):638-647.

●葉男,廖柯熹,何國璽,等.油氣集輸緩蝕劑緩蝕效率的影響因素及評價方法綜述[J].材料保護,2022,55(9):167-179.

●何騰蛟,廖柯熹,何國璽,等.埋地天然氣管道安全狀態(tài)檢測評價技術分析[J].無損檢測,2022,44(7):13-18.

●王亮,廖柯熹,何國璽,等.地面堆載對高后果區(qū)埋地管道承載能力的影響[J].科學技術與工程,2022,22(15):6084-6091.

●趙建華,廖柯熹,賈彥杰,古麗,何國璽,等.立式成品油儲罐底板缺陷的聲發(fā)射檢測[J].無損檢測,2022,44(5):60-63,70.

●廖柯熹,黃元潔,何國璽,等.燃氣爆炸荷載下隧道砌體損傷規(guī)律與事故影響范圍研究[J].中國安全生產(chǎn)科學技術,2022,18(4):84-91.

●李博陽,廖柯熹,何國璽,等.弱磁檢測技術研究進展與展望[J].電子測量與儀器學報,2022,36(3):1-14.

●趙帥,廖柯熹,何國璽,等.CO2/O2環(huán)境下L320鋼在不同流速下的腐蝕行為研究[J].材料保護,2022,55(1):95-101

●鄒慶,廖柯熹,劉昕瑜,何國璽,等.注蒸汽管道在CO2/O2/SO2環(huán)境中的腐蝕行為[J].表面技術,2022,51(7):225-235.

●趙帥,廖柯熹,周飛龍,杜偉,冷吉輝,唐鑫,何國璽.CO2/H2S共存條件下集輸管道選材的新方法及應用[J].科學技術與工程,2021,21(31):13313-13318.

●廖柯熹,王亮,何騰蛟,廖德琛,何國璽.管道應力長期監(jiān)測與報警系統(tǒng)[J].智能制造,2021(S1):53-61.

●廖柯熹,廖德琛,何騰蛟,王亮,何國璽.一種埋地管道全線檢測與評價方法[J].智能制造,2021,A1(S1):125-129,133.

●廖柯熹,王敏安,彭浩,何國璽,等.頁巖氣三甘醇脫水裝置脫水效果影響因素分析[J].遼寧石油化工大學學報,2021,41(5):1-8.

●葉男,廖柯熹,何國璽,等.頁巖氣地面集輸管道腐蝕原因分析及防護措施研究[J].材料保護,2021,54(9):142-147,178.

●朱洪東,廖柯熹,何國璽,等.山區(qū)滑坡管道應力磁檢測技術[J].科學技術與工程,2021,21(23):9856-9863.

●王旭,廖柯熹,彭善碧,何國璽,等.罐區(qū)可燃氣體探測器優(yōu)化設置研究進展[J].應用化工,2021,50(10):2809-2813.

●廖柯熹,王敏安,楊建英,彭浩,何國璽,等.天然氣管網(wǎng)系統(tǒng)性能評價指標及方法研究進展[J].科學技術與工程,2021,21(14):5630-5640.

●廖柯熹,彭浩,曾昭雄,何國璽,等.頁巖氣測試平臺積液原因及排液對策研究[J].遼寧石油化工大學學報,2021,41(1):37-44.

●李剛,鄔姝琰,王暢,冷吉輝,何國璽.CN頁巖氣田地面建設界面及建設模式研究[J].天然氣與石油,2021,39(1):1-6.

●廖柯熹,彭浩,何國璽,等.中國頁巖氣田地面工程技術研究進展[J].科學技術與工程,2020,20(28):11400-11412.

●廖柯熹,彭浩,何騰蛟,何國璽,等.埋地管道環(huán)焊縫非接觸式磁力檢測技術及應用[J].熱加工工藝,2020,49(23):111-117.

●廖柯熹,覃敏,何國璽,等.油氣集輸管線沖刷腐蝕規(guī)律研究進展[J].材料保護,2020,53(7):126-136.

●廖柯熹,彭浩,何國璽,等.頁巖氣測試平臺波紋板分離器的分離性能研究[J].石油機械,2020,48(2):104-113,119.

●冷吉輝,廖柯熹,徐明軍,何國璽,等.氣田加密部署及井網(wǎng)優(yōu)化研究進展[J].遼寧石油化工大學學報,2020,40(1):39-42.

●劉詩桃,廖柯熹,何國璽,等.殼聚糖及其衍生物在金屬緩蝕劑方面的研究應用綜述[J].表面技術,2020,49(1):132-141,172.

●廖柯熹,何騰蛟,李明紅,何國璽.埋地油氣管道應力集中磁力外檢測技術[J].中國測試,2019,45(12):25-30,55.

●廖柯熹,王旭,何國璽,等.Zn-TiO2復合鍍層在硫酸鹽還原菌環(huán)境下的腐蝕特性[J].材料保護,2019,52(11):23-27,43.

●孫健飛,李巖松,韓東,何國璽,等.基于多重網(wǎng)格技術的含蠟原油管道析蠟速率三維數(shù)值模擬研究[J].工程熱物理學報,2019,40(0):1913-1920.

●廖柯熹,周飛龍,何國璽,等.流動條件下20鋼在H2S/CO2共存體系中的腐蝕行為及預測模型研究[J].材料保護,2019,52(7):29-36.

●陳迪,廖柯熹,何國璽,等.基于EWM-GRA的腐蝕主控因素分析與腐蝕模型建立[J].表面技術,2019,48(6):268-273.

●夏惠芳,李巖松,何國璽,等.成品油管道泄漏量測算誤差及敏感性分析[J].遼寧石油化工大學學報,2019,39(3):46-51.

●李巖松,王劍波,丁鼎倩,何國璽,等.基于反問題理論的油庫管道閥門控制方案[J].油氣儲運,2019,38(5):554-561.

●王博弘,梁永圖,張浩然,何國璽,等.三維地形下環(huán)枝狀復合型集輸管網(wǎng)拓撲結構優(yōu)化[J].油氣儲運,2018,37(5):515-521.

●林默涵,何國璽,李巖松,等.海底管道溢油擴散數(shù)值模擬研究[J].北京石油化工學院學報,2017,25(4):83-90.

●高杰,李巖松,何國璽.煤層氣管道排液方式綜合評價模型[J].北京石油化工學院學報,2017,25(4):91-94.

●梁永圖,何國璽,方利民,等.溫度對成品油管道順序輸送過程的影響研究進展[J].科學通報,2017,62(22):2520-2533.

●高杰,梁永圖,何國璽,等.煤層氣地面集輸管網(wǎng)的瞬態(tài)水力熱力計算模型[J].天然氣工業(yè),2017,37(7):108-114.

●高杰,梁永圖,何國璽,等.地形起伏條件下的煤層氣管網(wǎng)穩(wěn)態(tài)計算模型[J].石油化工高等學校學報,2017,30(3):84-88,94.

●吳夢雨,梁永圖,何國璽,等.成品油管道泄漏量測算軟件[J].石油化工高等學校學報,2017,30(2):71-76.

●解寧,羅鑫楷,薛文第,梁永圖,何國璽,等.成品油在土壤中擴散的數(shù)值模擬分析[J].油氣田地面工程,2017,36(4):24-26.

●解寧,羅鑫楷,薛文第,梁永圖,何國璽.成品油在水中擴散的數(shù)值模擬分析[J].石油規(guī)劃設計,2016,27(5):9-12,54.

●任玉鴻,梁永圖,何國璽.頁巖氣地面集輸管網(wǎng)拓撲優(yōu)化[J].油氣田地面工程,2016,35(6):54-57.

●方利民,梁永圖,何國璽.順序輸送環(huán)道中彎管結構對混油量的影響分析[J].遼寧石油化工大學學報,2016,36(3):24-29.

●段志剛,梁永圖,何國璽,等.多源單匯液態(tài)輕烴管網(wǎng)系統(tǒng)調度優(yōu)化[J].油氣田地面工程,2016,35(1):1-4.

●梁永圖,王繼慧,何國璽,等.老油田集輸系統(tǒng)改造管網(wǎng)拓撲優(yōu)化[J].油氣儲運,2014,33(9):971-975.

(2)參加學術會議

●HE G X,XIA G Q,LIAO K X,et al. Stress analysis of crossing highway pipe sections under vehicle load based on the experiment of real-size pipes[C]. Calgary,Alberta,Canada:International Pipeline Conference. American Society of Mechanical Engineers,Sep. 26–30,2022,86588:V003T04A021.

●HE G X,ZHAO J H,LIAO K X,et al. Feasibility analysis and minimum flowable temperature calculation method of normal temperature gathering and transportation process in oilfield[C]. Calgary,Alberta,Canada:International Pipeline Conference. American Society of Mechanical Engineers,Sep. 26–30,2022,86588:V003T04A024.

●HE G X,HE T,LIAO K X,et al. A novel three-dimensional non-contact magnetic stress inspection technology and its application on LNG pipeline[C]. Calgary,Alberta,Canada:International Pipeline Conference. American Society of Mechanical Engineers,Sep. 28-Oct. 1,2020,84461.

●HE G X,CHEN S,LIAO K X,et al. Study on the distribution of submarine pipeline corrosion defects based on internal inspection data and data mining method[C]. Calgary,Alberta,Canada:International Pipeline Conference. American Society of Mechanical Engineers,Sep. 28-Oct. 1,2020,84454.

●HE G X,QIN M,LIAO K X. Prediction of the quality indicators’ distribution in mixed oil segment and the corresponding cutting point in multiproduct pipelines[C]. Tokyo,Japan:The 7th Asian Symposium on Computational Heat Transfer and Fluid Flow, Sep.3-7. 2019.

●HE G X,WANG B,SUN L,et al. Numerical simulation of mass transfer process in hilly products pipeline under shutdown condition[C]. Beijing,China:16th International Heat Transfer Conference,Aug.10-15,2018.

●HE G X,TANG D,LI Y,et al. Numerical modeling of the fluid concentration distribution during the interfacial contamination process in multiproduct pipeline[C]. Chennai,India:6th Asian Symposium on Computational Heat Transfer and Fluid Flow,Dec.10-13,2017.

●HE G X,LI Y,HUANG Q,et al. Numerical prediction of liquid level in a large diameter rich gas pipeline under the gas-liquid stratified flow condition[C]. Chennai,India:6th Asian Symposium on Computational Heat Transfer and Fluid Flow,Dec.10-13,2017.

●HE G X,LIANG Y,F(xiàn)ang L,et al. Optimization of planning and scheduling of refinery product based on downstream requirements[C]. Calgary,Alberta,Canada:11th International Pipeline Conference,Sep.26-30,2016.

●HE G X,LIANG Y,GAO J,et al. A study on the accumulation and distribution of condensate water in a CBM field gas pipeline system[C]. Bangkok,Thailand:International Petroleum Technology Conference,Nov.14-16,2016.

●HE G X,WU M,LI F,et al. Prediction of the volume of product oil leaking and the aperture of leaking area in practical transportation pipelines[C]. Beijing,China:5th world conference on safety of oil and gas industry,Oct.26-29,2016.

(3)授權專利與軟件著作權

●何騰蛟,廖柯熹,何國璽,等. SAFETY PIPE LOOP AND METHOD FOR STRAIN MONITORING OF MOUNTAINOUS PIPELINES:US11402194B2[P].2022-07-13.

●何國璽,何騰蛟,廖柯熹,等. NON-CONTACT REAL-TIME STRESS MONITORING METHOD FOR BURIED PIPELINE:US10724906B1[P].2020-07-28.

●夏國強,陳小榆,廖柯熹,何騰蛟,何國璽.一種穿越公路管段承載能力分析方法:CN114444229B[P].2022-09-30.

●趙建華,廖柯熹,夏鳳,熊紅揚,何國璽,等.一種用于管道高后果區(qū)識別的無人機系統(tǒng)和方法:CN112904878B[P].2022-08-16.

●覃敏,廖柯熹,何國璽,等.一種含二氧化碳和硫化氫六因素局部腐蝕速率預測模型:CN114062236B[P].2022-08-09.

●廖德琛,廖柯熹,何國璽,等.一種管道磁異常綜合指數(shù)F值快速計算方法及實驗裝置:CN113916976B[P].2022-07-29.

●何騰蛟,何國璽,廖柯熹,等.一種石油儲罐罐壁缺陷磁檢測裝置與方法:CN113466327B[P].2022-07-26.

●趙帥,廖柯熹,何國璽,等.一種集輸管道選材的評判方法:CN113933234B[P].2022-07-01.

●王亮,廖柯熹,何國璽,等.一種山區(qū)管道應變在線監(jiān)測系統(tǒng):CN113155017B[P].2022-05-24.

●何國璽,黃元潔,廖柯熹,等.輸氣管道噴射火對鄰近液烴管安全性影響實驗平臺及方法CN112557441B[P].2022-04-15.

●趙建華,廖柯熹,何國璽,等.一種基于霧計算的油氣站場安全組合監(jiān)測系統(tǒng)與方法:CN113037984B[P].2022-04-12.

●何騰蛟,廖柯熹,何國璽,等.一種山區(qū)管道應變監(jiān)測安全管環(huán)與方法:CN112504112B[P].2022-04-05.

●姜新慧,廖柯熹,覃敏,何國璽,等.一種管道內(nèi)腐蝕主控因素快速識別方法:CN113063725B[P].2022-03-29.

●李博陽,廖柯熹,何國璽,等.一種埋地金屬管道埋深及走向檢測方法:CN113138421B[P].2022-01-28.

●廖德琛,何騰蛟,廖柯熹,何國璽,等.一種管道缺陷快速磁檢測裝置與方法:CN113154263B[P].2021-12-21.

●廖德琛,廖柯熹,何騰蛟,何國璽,等.一種管道軸向應力快速檢測裝置與方法:CN113375846B[P].2021-12-03.

●覃敏,廖柯熹,張世堅,何國璽,等.一種濕天然氣管道內(nèi)腐蝕高風險段識別方法:CN112214940B[P].2021-10-15.

●廖柯熹,楊娜,何國璽,等.一種天然氣枝狀管網(wǎng)泄漏管段識別方法:CN111706785B[P].2021-06-18.

●何國璽,唐鑒,廖柯熹,等.山地輸氣管道內(nèi)腐蝕缺陷檢測與評價方法:CN111637367B[P].2021-03-09.

●廖柯熹,朱洪東,何騰蛟,何國璽,等.管道安全狀態(tài)評估方法與階梯式升壓管道安全復產(chǎn)方法:CN110822297B[P].2021-02-02.

●覃敏,廖柯熹,何國璽,等.一種山地濕氣管道氣液兩相流腐蝕試驗裝置:CN111624153B[P].2020-12-15.

●廖柯熹,何騰蛟,何國璽,等.一種埋地管道安全狀態(tài)監(jiān)測與預警方法:CN111307031B[P].2020-11-10.

●覃敏,廖柯熹,呂茜娣,何國璽,等.一種多功能液體單相流流動腐蝕測試環(huán)道:CN110542649B[P].2020-05-12.

●廖柯熹,何騰蛟,何國璽,等.一種山地管道環(huán)焊縫非接觸識別定位方法:CN109632940B[P].2020-02-28.

●廖柯熹,何騰蛟,何國璽,等.一種埋地管道非接觸式應力實時監(jiān)測方法:CN110231111B[P].2020-02-28.

●梁永圖,何國璽,李巖松,等.一種基于電導率的混油界面檢測實驗裝置及實驗方法:CN106932444B[P].2019-10-18.

●梁永圖,何國璽,李巖松,等.一種液烴管道泄漏量測算方法北京市:CN106650120B[P].2019-08-30.

●梁永圖,何國璽,方利民,等.一種成品油順序輸送混油實驗環(huán)道平臺:CN106969793B[P].2019-07-09.

●何國璽,陳迪,廖柯熹,等.一種埋地液烴管道泄漏擴散與污染物祛除實驗平臺及方法:CN109827721A[P].2019-05-31.

●何國璽,李巖松,湯東東,等一種復雜輸油管道系統(tǒng)在泄漏事故時的停輸方法:CN108763809A[P].2018-11-06.

●何國璽,梁永圖,馮浩.煤層氣田地面集輸管網(wǎng)布置優(yōu)化軟件:2014SR104053[CP/CD].2014-06-01.

(4)教學獲獎與科研獲獎

●2022屆本科畢業(yè)設計(論文)優(yōu)秀指導教師,2022

●第六、七屆全國大學生油氣儲運工程設計大賽優(yōu)秀指導教師,2021/2022

●第十一屆中國石油工程設計大賽優(yōu)秀指導教師,2021

●西南石油大學第十九屆大學生課外開放實驗優(yōu)秀指導教師,2021

●第十七屆“挑戰(zhàn)杯”全國大學生科技作品競賽“黑科技”專項賽“星系”級作品指導教師,2021

●第六屆四川省國際“互聯(lián)網(wǎng)+”大學生創(chuàng)新創(chuàng)業(yè)大賽四川省金獎指導教師,2020

●西南石油大學2020年教育教學成果二等獎,排名(9/9),2020

●高等學校科學研究優(yōu)秀成果獎科學技術進步二等獎,排名4/11,2020

●中國石油和化工自動化行業(yè)科學技術獎科技進步一等獎,排名6/15,2018

●第十五次儲運年會論文二等獎,2017


研究領域

研究領域為油氣儲運系統(tǒng)結構與安全、油氣管道流動保障、管道/站場檢測評價、油氣管道完整性管理與智能管道技術。在油氣儲運系統(tǒng)復雜傳熱傳質、腐蝕機理、泄漏、檢測及評價、內(nèi)外腐蝕直接評估方法、緩蝕劑實驗評價、管道流動性安全保障、智能管道技術方面開展基礎理論與應用研究。

研究團隊

安全與智能管道(SSP)團隊由15名教師、36名碩、博士生組成,教師中教授6人、副教授5人、講師4人。涵蓋油氣儲運工程、材料工程、安全工程、計算機科學、人工智能、軟件工程、數(shù)據(jù)科學、算法工程等學科專業(yè)。主要研究人員具有海外留學經(jīng)歷,具有獨立從事一流水平研究并開發(fā)具有完全自主知識產(chǎn)權科研產(chǎn)品的能力,同時具有豐富的科研與工程經(jīng)驗,已培養(yǎng)博士與碩士研究生120余人。

團隊長期從事油氣管道腐蝕與缺陷評價、管道檢測與評價、安全與完整性管理、失效模式識別與機理分析、油氣管道大數(shù)據(jù)挖掘與數(shù)據(jù)利用、算法研發(fā)與軟件平臺開發(fā)等方面的原創(chuàng)性科學研究、技術研發(fā)。近5年,獲省部級科技進步獎十余項,發(fā)表論文300余篇,專利百余件,軟件著作權50余項;承擔國家自然科學基金項目4項、省部級項目30項、企業(yè)合作項目60余項。


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