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副高級(jí)

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副高級(jí)

王強(qiáng)

職       務(wù):
職       稱(chēng):副研究員
博導(dǎo)/碩導(dǎo):碩士生導(dǎo)師
所屬部門(mén):油氣藏地質(zhì)及開(kāi)發(fā)工程全國(guó)重點(diǎn)實(shí)驗(yàn)室                
學(xué)科專(zhuān)業(yè):油氣田開(kāi)發(fā)工程              
研究方向:非常規(guī)儲(chǔ)層改造理論與技術(shù)
聯(lián)系方式:17828046757;E-mail:[email protected]


王強(qiáng),博士(后),副研究員,SPE會(huì)員。2021年獲西南石油大學(xué)油氣田開(kāi)發(fā)工程學(xué)科博士學(xué)位,2019.12-2020.12在加拿大卡爾加里大學(xué)公派聯(lián)合培養(yǎng)學(xué)習(xí)。長(zhǎng)期從事非常規(guī)儲(chǔ)層體積壓裂裂縫延伸數(shù)值模擬、復(fù)雜多相多尺度滲流機(jī)理模擬、多場(chǎng)多物理行為耦合研究以及二氧化碳封存等方面的理論研究、技術(shù)應(yīng)用和教學(xué)工作。主持與主研國(guó)家自然科學(xué)基金、四川省青年基金、全國(guó)重點(diǎn)實(shí)驗(yàn)室開(kāi)放基金、“十三五”國(guó)家科技重大專(zhuān)項(xiàng)、油田公司項(xiàng)目等十余項(xiàng)。發(fā)表學(xué)術(shù)論文40篇(其中SCI期刊論文25篇,EI、CSCD期刊論文等6篇)。授權(quán)國(guó)際發(fā)明專(zhuān)利4項(xiàng),授權(quán)國(guó)內(nèi)發(fā)明專(zhuān)利7項(xiàng),授權(quán)軟件著作權(quán)5項(xiàng)。長(zhǎng)期擔(dān)任《石油勘探與開(kāi)發(fā)》《石油與天然氣地質(zhì)》《Journal of Petroleum Science and Engineering》《Journal of Natural Gas Science and Engineering》《Energy Science & Engineering》等期刊審稿專(zhuān)家。2019年獲得康菲未來(lái)之路能源創(chuàng)新研究大賽全國(guó)總冠軍,2021年獲得西南石油大學(xué)學(xué)生“十大杰出研究生”,在四川省高校青年教師職業(yè)技能培訓(xùn)中獲評(píng)優(yōu)秀示范課學(xué)員。

個(gè)人經(jīng)歷

●2010.09-2014.07    西安石油大學(xué),機(jī)械設(shè)計(jì)及其自動(dòng)化,學(xué)士

●2015.09-2018.07    西南石油大學(xué),油氣田開(kāi)發(fā)工程(研究方向:非常規(guī)儲(chǔ)層改造理論與技術(shù)),碩士

●2018.09-2021.07    西南石油大學(xué),油氣田開(kāi)發(fā)工程(研究方向:非常規(guī)儲(chǔ)層改造理論與技術(shù)),博士

●2019.12-2020.12    國(guó)家公派留學(xué)一年,University of Calgary,加拿大(導(dǎo)師:Nancy Chen)

●2021.11-2025.03    西南石油大學(xué)石油與天然氣工程學(xué)院,講師、博士后

●2025.03-至今          西南石油大學(xué)石油與天然氣工程學(xué)院,副研究員

主要研究項(xiàng)目

國(guó)家自然科學(xué)基金青年基金,52304041,天然氣水合物儲(chǔ)層蠕變和出砂作用下支撐裂縫導(dǎo)流模型與衰減機(jī)理研究,2024.12-2026.12,主持

國(guó)家能源頁(yè)巖油研發(fā)中心開(kāi)放基金,多隔夾層頁(yè)巖系統(tǒng)立體開(kāi)發(fā)井網(wǎng)-縫網(wǎng)優(yōu)化設(shè)計(jì)方法研究,2026.03-2026.12,主持

油氣藏地質(zhì)及開(kāi)發(fā)工程全國(guó)重點(diǎn)實(shí)驗(yàn)室開(kāi)放基金,PLN202329,頁(yè)巖油壓后燜井促進(jìn)與抑制采油競(jìng)爭(zhēng)機(jī)理研究,2023.10-2025.10,主持

四川省自然科學(xué)青年基金,2025ZNSFSC1353,NGH儲(chǔ)集層加砂壓裂裂縫導(dǎo)流衰減機(jī)理及預(yù)測(cè)模型構(gòu)建研究,2025.01-2026.12,主持

國(guó)家自然科學(xué)基金,51490653,頁(yè)巖地層動(dòng)態(tài)隨機(jī)裂縫控制機(jī)理與無(wú)水壓裂理論,2015.01-2019.12,主研

中石化勝利油田東勝公司,高青公司樊18塊巖石力學(xué)特征及縫網(wǎng)壓裂研究,2025.09-2026.12,主持

中石化江漢油田工程院,焦石壩壓后復(fù)雜縫網(wǎng)區(qū)井漏識(shí)別與預(yù)測(cè)研究,2025.09-2026.09,主持

中國(guó)石油集團(tuán)川慶鉆探工程有限公司,頁(yè)巖儲(chǔ)層壓后燜井地層壓力及區(qū)域動(dòng)態(tài)預(yù)測(cè)軟件界面設(shè)計(jì)制圖,2024.05-2024.12,主持

中國(guó)石油化工集團(tuán)勝利油田,樁23塊主力儲(chǔ)層精細(xì)分層均衡壓裂技術(shù)研究,2023.05-2024.12,主持

中國(guó)石油集團(tuán)川慶鉆探工程有限公司,深層煤系致密氣井排采機(jī)理研究,2023.05-2023.12,主持

中國(guó)石油集團(tuán)川慶鉆探工程有限公司,致密砂巖儲(chǔ)層巖性分析試驗(yàn)檢驗(yàn),2022.10-2023.12,主持

中海油(中國(guó))有限公司天津分公司項(xiàng)目,渤南海上油田注水井微壓裂解堵技術(shù)研究,2018.03-2019.06,主研

中石油青海油田項(xiàng)目,高應(yīng)力差低滲透儲(chǔ)層縫網(wǎng)體積改造技術(shù)研究,2018.06-2019.12,主研

中石油新疆油田項(xiàng)目,瑪2井區(qū)下烏爾禾組、百口泉組油藏巖心實(shí)驗(yàn),2019.09-2020.09,主研

長(zhǎng)慶油田分公司項(xiàng)目,氣田老井重復(fù)改造工藝技術(shù)研究,2019.05-2020.06,主研

中國(guó)石油集團(tuán)川慶鉆探工程有限公司井下作業(yè)公司項(xiàng)目,頁(yè)巖氣藏水平井分段多簇壓裂參數(shù)優(yōu)化研究,2018.09-2019.07,主研

中海石油(中國(guó))有限公司湛江分公司項(xiàng)目,南海西部低滲氣藏儲(chǔ)層改造技術(shù)研究,2020-2021,主研

勝利油田項(xiàng)目,頁(yè)巖油水平井壓裂分段、分簇優(yōu)化研究—以樊頁(yè)平1井為例,2021.05-2021.12,主研

新疆油田公司項(xiàng)目,中佳地區(qū)深層氣藏水平井體積壓裂關(guān)鍵技術(shù)研究及應(yīng)用,2021.06-2022.09,主研

代表性成果

(1)發(fā)表文章

王強(qiáng),楊郁,趙金洲,等.基于多相質(zhì)點(diǎn)網(wǎng)格法的復(fù)雜裂縫網(wǎng)絡(luò)支撐劑運(yùn)移規(guī)律[J].石油勘探與開(kāi)發(fā),2026,62(1):190-198. (SCI-1區(qū),IF-7.0)

王強(qiáng),王玉豐,趙金洲,等.深層頁(yè)巖氣井壓裂竄擾—生產(chǎn)一體化數(shù)值模擬[J].天然氣工業(yè),2025,45(8):53-66.

王強(qiáng),趙金洲,胡永全,等.頁(yè)巖氣老井重復(fù)壓裂時(shí)機(jī)優(yōu)化方法[J].石油勘探與開(kāi)發(fā),2024,51(1):190-198. (SCI-1區(qū),IF-7.0)

王強(qiáng),趙金洲,胡永全,等.深層頁(yè)巖氣井拉鏈?zhǔn)綁毫蚜芽p擴(kuò)展及竄通規(guī)律[J].石油勘探與開(kāi)發(fā),2024,51(5):1141-1148. (SCI-1區(qū),IF-7.0)

王強(qiáng),趙金洲,胡永全,等.頁(yè)巖油儲(chǔ)集層壓后燜井時(shí)間優(yōu)化方法[J].石油勘探與開(kāi)發(fā),2022,49(3):1-11. (SCI-1區(qū),IF-7.0)

王強(qiáng),趙金洲,胡永全,等.巖心尺度靜態(tài)自發(fā)滲吸的數(shù)值模擬[J].石油學(xué)報(bào),2022,43(6):1-11.

王強(qiáng),楊郁,宋毅,等.天然裂縫-斷層帶影響的頁(yè)巖氣拉鏈?zhǔn)綁毫迅Z擾模型[J].巖石力學(xué)與工程學(xué)報(bào),2025,44(增1):1-13.

王強(qiáng),王玉豐,孫映,等.小斷層影響下深層頁(yè)巖氣井拉鏈?zhǔn)綁毫蚜芽p竄通規(guī)律[J].天然氣地球科學(xué),2025,36(2):342-353.

趙金洲,王強(qiáng),胡永全,等.多孔眼裂縫競(jìng)爭(zhēng)起裂與擴(kuò)展數(shù)值模擬[J].天然氣地球科學(xué),2020,31(10):1-12.

王強(qiáng),趙金洲,胡永全,等.頁(yè)巖水力裂縫網(wǎng)絡(luò)形態(tài)及激活機(jī)制研究[J].西南石油大學(xué)學(xué)報(bào)(自然科學(xué)版),2022,44(6):71-86.

王強(qiáng),王玉豐,梁升平,等.低滲儲(chǔ)層關(guān)井后水力裂縫二次擴(kuò)展規(guī)律[J].石油鉆采工藝,2023,45(5):597-606.

王強(qiáng),胡永全,任嵐,等.水力壓裂裂縫及近縫儲(chǔ)層溫度場(chǎng)[J].大慶石油地質(zhì)與開(kāi)發(fā),2018,1:98-102

胡永全,王強(qiáng),史向陽(yáng),等.多場(chǎng)耦合作用對(duì)水力裂縫形態(tài)的影響[J].大慶石油地質(zhì)與開(kāi)發(fā),2018,3:82-89.

Wang Y F, Wang Q,Zhao J Z,   et al. Numerical simulation of fracture propagation and interwell frac-hit   mechanism in deep shale gas infill wells[J]. Engineering Geology,2026,366(108678).(SCI-1區(qū))

LI X W,WANG Q,HU YQ, et   al. Fracture propagation law of shale gas horizontal wells under the   influence of production stress disturbance in refracturing[J]. Physics of   fluids,2025,37:046613. (SCI-2區(qū))

HU Y Q,WANG Y F,WANG Q,et   al. The propagation laws of hydraulic fractures under the influence of   natural fracture zones[J].Physics of fluids,2025,37:016616. (SCI-2區(qū))

WANG Q,WANG Y F,WANG R,et al. Evolution law of stress induced by pressure depletion in fractured shale reservoirs:Implications for subsequent refracturing and infill well development[J]. Petroleum,2025,11:71-83. (SCI,IF-4.6)

WANG Q,WANG Y F,ZHAO J Z,et   al. A Four-dimensional geostress evolution model for shale gas based on   embedded discrete fracture model and finite volume method[J]. Dhahran,Saudi Arabia:at the International   Petroleum Technology Conference,12-14 February 2024.   IPTC-23476-MS. (EI)

WANG Q,ZHAO C N,Zhao J Z,et al. Numerical simulation of planar hydraulic fracture propagation with consideration to transition from turbulence to laminar flow regime[J]. Engineering Fracture Mechanics,2022,262:108258. (SCI-2區(qū),IF-4.5)

WANG Q,ZHAO J Z,WANG B,et al. Secondary growth and closure behavior of planar hydraulic fractures during shut-in[J]. Journal of Petroleum Science and Engineering,2022,213:110420. (SCI-2區(qū),IF-4.3)

WANG Q,ZHAO C,ZHOU W,et al. Numerical simulation of formation water salinity redistribution in fractured shale reservoirs during hydraulic fracturing[J]. Journal of Petroleum Science and Engineering,2022,218:111022. (SCI-2區(qū),IF-4.3)

ZHAO C N,WANG Q,ZHAO J Z,et al. An understanding of oil–water replacement mechanism based on interfacial tension gradient during the well shut-in[J]. Energy Reports,2022,8:4006-4021. (SCI-2區(qū),IF-6.9)

WANG Q,HU Y Q,ZHAO J Z,et al. Numerical simulation of fracture initiation,propagation and fracture complexity in the presence of multiple perforations[J]. Journal of Natural Gas Science & Engineering,2020,83:103486. (SCI-2區(qū),IF-4.96)

HU Y Q,WANG Q,ZHAO J Z,et al. Numerical simulation of complex fracture geometry caused by hydrodynamics in shale with pre-existing weak planes[J]. Journal of Petroleum Science and Engineering,2021,199:108306. (SCI-2區(qū),IF-4.3)

ZHAO J Z,WANG Q,HU Y Q,et al. Numerical investigation of shut-in time on stress evolution and tight oil production[J]. Journal of Petroleum Science and Engineering,2019,179:716-733. (SCI-2區(qū),IF-4.3)

ZHAO J Z,WANG Q,HU Y Q,et al. Prediction of pore pressure–induced stress changes during hydraulic fracturing of heterogeneous reservoirs through coupled fluid flow/geomechanics[J]. Journal of Engineering Mechanics,2019,145(12):05019001. (SCI-3區(qū),IF-2.6)

HU Y Q,WANG Q,ZHAO J Z,et al. Study on induced stress of hydraulic fracturing in fractured-porous elastic media[J]. Energy Science & Engineering,2020,8:3314-3332. (SCI-3區(qū),IF-4.2)

HU Y Q,WANG Q,ZHAO J Z,et al. Three-dimensional complex fracture propagation simulation:Implications for rapid decline of production capacity[J]. Energy Science & Engineering,2020,8:4196-4211. (SCI-3區(qū),IF-4.2)

WANG Q,HU Y Q,ZHAO J Z,et al. Multiscale apparent permeability model of shale nanopores based on fractal theory[J]. Energies,2019,12:3381. (SCI-3區(qū),IF-2.8)

HU Y Q,WANG Q,ZHAO J Z,et al. A novel porous media permeability model based on fractal theory and ideal particle pore-space geometry assumption[J]. Energies,2020,13:510. (SCI-3區(qū),IF-2.8)

WANG Q,HU Y Q,ZHAO J Z. Effect of natural fractures on stress evolution of unconventional reservoirs using a finite element method and a fracture continuum method[J]. Geofluids,2019:1-16. (SCI-3區(qū),IF-1.8)

HU Y Q,WANG Q,ZHAO J Z,et al. Development of efficiently coupled thermo-hydro-mechanical model to predict hydraulic fracture morphology in heavy oil reservoirs[J]. Environmental Earth Science,2018,77:778. (SCI-4區(qū),IF-2.18)

WANG Q,HU Y Q,ZHAO J Z,et al. A numerical model to simulate fracture network induced by hydraulic fracturing for 3D shale gas reservoir with geo-stress interference[J]. Journal of Engineering Research,2019,8(2):45-65. (SCI-4區(qū),IF-0.4)

HU Y Q,WANG Q,ZHAO J Z,et al. Numerical simulation study on hydraulic fracture propagation in heavy oil reservoir with THM coupling[J]. Int. J. Oil,Gas and Coal Technology,2020,24(2):179-204. (SCI-4區(qū),IF-0.75)

HU Y Q,ZHAO C N,ZHAO J Z,WANG Q,et al. Mechanisms of fracturing fluid spontaneous imbibition behavior in shale reservoir:A review[J]. Journal of Natural Gas Science & Engineering,2020,82:103498. (SCI-2區(qū),IF-3.82)

HU Y Q,ZHAO J,ZHAO J Z,ZHAO C N,WANG Q,et al. Coiled tubing friction reduction of plug milling in long horizontal well with vibratory tool[J]. Journal of Petroleum Science and Engineering,2019,177:452-465. (SCI-3區(qū),IF-3.72)

ZHAO C N,HU Y Q,ZHAO J Z,WANG Q,et al. Numerical investigation of hydraulic fracture extension based on the meshless method[J]. Geofluids,2020:1-16. (SCI-3區(qū),IF-1.8)

(2)授權(quán)國(guó)際發(fā)明專(zhuān)利

ZHAO J Z,WANG Q,HU Y Q,et al. Method for simulating the discontinuity of the hydraulic fracture wall in fractured reservoirs:US11118450B2[P]. 2021-09-14.

HU Y Q,WANG Q,ZHAO J Z,et al. Method for predicting the optimal shut-in duration by coupling fluid flow and geological stress:US11015444B2[P]. 2021-05-25.

HU Y Q,ZHAO C N,ZHAO J Z,F(xiàn)ENG H,WANG Q. Experimental appratus and method for simulating transport of sand carrying fluid in fracturing fractures:US10801312B2[P]. 2020-10-13.

HU Y Q,ZHAO C N,ZHAO J Z,SONG P J,WANG Q. Testing device and method for simulating the flowback in the shut-in period of fractured wells:US11054405B2[P] .2021-07-06.

(3)授權(quán)國(guó)內(nèi)專(zhuān)利

王強(qiáng),楊郁,王玉豐,等.一種計(jì)算深層煤巖氣壓后煤粉臨界流速及優(yōu)化返排速度的方法:202510165900.X[P]. 2025-04-25.

王強(qiáng),楊郁,王孔杰,等.一種考慮多因素影響的深層煤巖氣壓后返排油嘴優(yōu)化方法:202510052879.2[P]. 2025-03-21.

趙金洲,王強(qiáng),胡永全,等.一種基于熱流固耦合作用的超深層砂巖縫網(wǎng)改造評(píng)價(jià)方法:201910170569.5[P]. 2020-03-20.

胡永全,王強(qiáng),趙金洲,等.一種模擬注水井水壓驅(qū)動(dòng)裂縫延伸動(dòng)態(tài)的方法:201810765445.7[P]. 2019-05-31.

王強(qiáng),胡永全,趙金洲,等.一種模擬海上油田微壓裂增注裂縫擴(kuò)展的方法:201810764790.9[P]. 2019-05-31.

胡永全,王強(qiáng),趙金洲,等.一種模擬裂縫性?xún)?chǔ)層中水力裂縫壁面不連續(xù)性行為的方法:201911225898.1[P]. 2020-11-10.

王強(qiáng),胡永全,趙金洲,等.一種基于分形理論的預(yù)測(cè)頁(yè)巖納米孔隙滲透率的方法:201910985843.4[P]. 2020-11-03.

胡永全,王強(qiáng),趙金洲,等.一種耦合流體流動(dòng)與地質(zhì)應(yīng)力預(yù)測(cè)最優(yōu)悶井時(shí)間的方法:201910609637.3[P]. 2020-12-08.

胡永全,王強(qiáng),趙金洲,等.一種基于裂縫連續(xù)體模型預(yù)測(cè)裂縫性?xún)?chǔ)層應(yīng)力演化的方法:201910985831.1[P]. 2021-02-02.

(4)授權(quán)軟件著作權(quán)

王強(qiáng),楊郁,趙金洲,等.考慮裂縫內(nèi)湍流效應(yīng)的水力壓裂模擬軟件:2024SR1251929[CP/CD]. 2024-08-07.

王強(qiáng),楊郁,王玉豐,等.考慮流固耦合的砂巖儲(chǔ)層含油飽和度預(yù)測(cè)軟件:2024SR1591440[CP/CD]. 2024-10-23.

趙金洲,王強(qiáng),胡永全,等.基于位移不連續(xù)法診斷超深層分段壓裂凈壓力研究軟件:2019SR0741190[CP/CD]. 2019-04-03.

趙金洲,王強(qiáng),胡永全,等.耦合流體地質(zhì)應(yīng)力優(yōu)化關(guān)井時(shí)間研究軟件:2019SR0741185[CP/CD]. 2019-03-28.

王強(qiáng),趙金洲,胡永全.基于位移不連續(xù)法模擬多裂縫誘導(dǎo)應(yīng)力場(chǎng)研究軟件:019SR0685317[CP/CD]. 2019-07-03.

王強(qiáng),趙金洲,胡永全.生產(chǎn)過(guò)程中儲(chǔ)層應(yīng)力演化與應(yīng)力反轉(zhuǎn)研究軟件:2019SR0685299[CP/CD]. 2019-07-03.

胡永全,王強(qiáng).裂縫性稠油儲(chǔ)層水力裂縫溫度場(chǎng)研究軟件:2018SR841605[CP/CD]. 2018-10-22.

(5)教改論文

王強(qiáng).基于“雨課堂”的智慧互動(dòng)課堂教學(xué)模式構(gòu)建—以采油工程為例[J]. 科教導(dǎo)刊(電子版),2024,30:88-90.

研究領(lǐng)域

水力壓裂數(shù)值模擬—非常規(guī)儲(chǔ)層體積壓裂裂縫擴(kuò)展機(jī)理與技術(shù)

滲流數(shù)值模擬—非常規(guī)儲(chǔ)層多尺度多相流體流動(dòng)機(jī)理研究

多物理場(chǎng)耦合數(shù)值模擬研究

二氧化碳封存關(guān)鍵技術(shù)研究

天然氣水合物儲(chǔ)層壓裂改造研究



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