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梁永圖

梁永圖


梁永圖,教授,博士生導(dǎo)師。1995年畢業(yè)于中國石油大學(xué)(華東)采油工程專業(yè),獲學(xué)士學(xué)位;2001年和2009年畢業(yè)于中國石油大學(xué)(北京)油氣儲運工程專業(yè),分別獲得工學(xué)碩士學(xué)位和工學(xué)博士學(xué)位;2005年至2006年在英國羅布特高登大學(xué)作為訪問學(xué)者;2001年至今在中國石油大學(xué)(北京)任教;曾獲“SPE杰出貢獻(xiàn)獎”和“SPE創(chuàng)新教學(xué)獎”。主要從事成品油物流及管輸優(yōu)化和油氣田地面工程的相關(guān)研究。

迄今為止共主持研究國家自然基金4項、省部級基金項目6項以及多項其他類型科研項目。近五年以第一作者和通訊作者在《Computer& Chemical Engineering》《Petroleum Science》《Journal of Petroleum Engineering》《Chemical Engineering Research & Design》《Computational and Applied Mathematics》《Energy》《Journal of Hazardous Materials》《Applied Energy》《油氣儲運》等相關(guān)領(lǐng)域高水平學(xué)術(shù)期刊上發(fā)表論文100余篇。

聯(lián)系電話:010-89733094        電子郵箱liangyt21st@163.com

   

代表性著作:

1. A self-learning approach for optimal detailed scheduling of multi-product pipeline. Journal of Computational and Applied Mathematics, 2018.

2. Battery electric vehicles in Japan: Human mobile behavior based adoption potential analysis and policy target response. Applied energy, 2018.

3. An MILP model for optimal design of multi-period natural gas transmission network. Chemical Engineering Research & Design, 2018.

4. An MILP Method for Design of Distributed Energy Resource System Considering Stochastic Energy Supply and Demand. Energies, 2018.

5. Numerical Simulation on the Dispersion of Natural Gas Releases from a Buried Pipeline. Heat Transfer Engineering, 2018.

6. A method for simulating the release of natural gas from the rupture of high-pressure pipelines in any terrain. Journal of Hazardous Materials, 2018.

7. Numerical simulation for the separation process of suspended fine sand from oil and water emulsion in a large-size sedimentation tank. Desalination and Water Treatment, 2018.

8. A novel particle swarm optimization based on prey-predator relationship. Applied Soft Computing, 2018.

9. Improved PSO-Based Method for Leak Detection and Localization in Liquid Pipelines. IEEE Transactions on Industrial Informatics, 2018.

10. A methodology to restructure a pipeline system for an oilfield in the mid to late stages of development. Computers & Chemical Engineering, 2018.

11. Numerical simulation of oil-water non-Newtonian two-phase stratified wavy pipe flow coupled with heat transfer. Applied Thermal Engineering, 2018.

12. Comparison and analysis of drainage measures for draining accumulated water condensed from wet CBM and transported in surface gathering pipeline network. Journal of Natural Gas Science and Engineering, 2018.

13. An MILP approach for detailed scheduling of multi-product pipeline in pressure control mode. Chemical Engineering Research & Design, 2018.

14. An MILP model for the reformation of natural gas pipeline networks with hydrogen injection. International Journal of Hydrogen Energy, 2018.

15. Mixed-time mixed-integer linear programming for optimal detailed scheduling of a crude oil port depot. Chemical Engineering Research & Design, 2018.

16. A MILP model based on flowrate database for detailed scheduling of a multi-product pipeline with multiple pump stations. Computers & Chemical Engineering, 2018.

17. Experimental and numerical research on the axial and radial concentration distribution feature of miscible fluid interfacial mixing process in products pipeline for industrial applications. International Journal of Heat and Mass Transfer, 2018.

18. Optimal design of oilfield surface pipeline networks for the cyclic water injection development method. Journal of Petroleum Science and Engineering, 2018.

19. 原油航運調(diào)度優(yōu)化問題研究進(jìn)展. 油氣儲運, 2018.

20. 三維地形下環(huán)枝狀復(fù)合型集輸管網(wǎng)拓?fù)浣Y(jié)構(gòu)優(yōu)化. 油氣儲運, 2018.

21. 基于供給側(cè)的天然氣市場調(diào)節(jié)研究進(jìn)展. 油氣儲運, 2018.

22. 數(shù)字化油田注水系統(tǒng)綜合評價模型. 油氣儲運, 2018.

23. 基于用戶需求時間窗的成品油管道調(diào)度優(yōu)化.石油科學(xué)通報, 2018.

24. 基于Gamma-χ~2分布的混油拖尾現(xiàn)象預(yù)測.油氣儲運, 2018.

25. A MILP method for optimal nearshore oilfield gathering system. Ocean Engineering, 2017.

26. Simulation on water and sand separation from crude oil in setting tank based on the particle model. Journal of Petroleum Science & Engineering, 2017.

27. A self-learning approach for optimal detailed scheduling of multi-product pipeline. Journal of Computational and Applied Mathematics, 2017.

28. A method for simulating the entire leaking process and calculating the liquid leakage volume of a damaged pressurized pipeline. Journal of Hazardous Materials, 2017.

29. A three-stage stochastic programming method for LNG supply system infrastructure development and inventory routing in demanding countries. Energy, 2017.

30. A unified MILP model for topological structure of production well gathering pipeline network. Journal of Petroleum Science & Engineering, 2017.

31. Sensitivity analysis and optimal operation control for large-scale water flooding pipeline network of oilfield. Journal of Petroleum Science & Engineering, 2017.

32. An MILP approach for detailed scheduling of oil depots along a multi-product pipeline. Petroleum Science, 2017.

33. 溫度對成品油管道順序輸送過程的影響研究進(jìn)展. 科學(xué)通報, 2017.

34. 成品油管道打孔盜油量測算方法. 石油科學(xué)通報, 2017.

35. 耦合水力約束的成品油管道調(diào)度模型研究. 石油科學(xué)通報, 2017.

36. 煉廠生產(chǎn)調(diào)度優(yōu)化研究進(jìn)展. 油氣儲運, 2017.

37. 埋地液烴管道泄漏擴(kuò)散及泄漏量測算研究進(jìn)展. 油氣儲運, 2017.

38. 成品油管道泄漏量測算軟件. 石油化工高等學(xué)校學(xué)報, 2017.

39. A hybrid computational approach for detailed scheduling of products in a pipeline with multiple pump stations. Energy, 2016.

40. Supply-based optimal scheduling of oil product pipelines.Petroleum Science,.2016.


獲得獎項:

1.中國石油和化學(xué)工業(yè)聯(lián)合會科學(xué)技術(shù)獎一等獎

2.中國石油天然氣集團(tuán)公司技術(shù)創(chuàng)新獎一等獎

3.中石油集團(tuán)公司技術(shù)創(chuàng)新二等獎

4.“和而不同石油工程領(lǐng)域研究生培養(yǎng)體系重建”,中國學(xué)位與研究生教育學(xué)會研究生教育成果獎二等獎.

5.“持續(xù)求精的《運籌學(xué)》課程全方位建設(shè)與教學(xué)實踐”,中國石油教育學(xué)會教學(xué)成果獎二等獎,北京市教育教學(xué)成果獎一等獎.

6.“創(chuàng)新面向真實生產(chǎn)過程的實踐教學(xué)平臺,培養(yǎng)新時期石油工程設(shè)計人才”,北京市教育教學(xué)成果獎一等獎.

7.“傳承石油文化精髓,創(chuàng)新素質(zhì)教育手段,引領(lǐng)學(xué)生服從服務(wù)國家重大戰(zhàn)略需求”,北京市高等教育教學(xué)成果一等獎.

8.中國石油大學(xué)(北京)“校級教學(xué)名師”榮譽(yù)稱號.