職稱:教授,,博導(dǎo)/碩導(dǎo)
姜振學(xué),男,,吉林梨樹人,,1963年4月生。中國石油大學(xué)(北京)非常規(guī)油氣科學(xué)技術(shù)研究院教授,,博士生導(dǎo)師,,原副院長,中石油重點(diǎn)實(shí)驗(yàn)室油氣賦存機(jī)制實(shí)驗(yàn)室主任,。中國地質(zhì)學(xué)會(huì)石油地質(zhì)專業(yè)委員會(huì)委員,、中國地質(zhì)學(xué)會(huì)非常規(guī)油氣地質(zhì)專業(yè)委員會(huì)委員、中國能源學(xué)會(huì)石油地質(zhì)學(xué)專業(yè)委員會(huì)秘書長,?!妒团c天然氣地質(zhì)》、《東北石油大學(xué)學(xué)報(bào)》等期刊編委,。1986年畢業(yè)于大慶石油學(xué)院勘探系,,1998年獲中國地質(zhì)大學(xué)(北京)博士學(xué)位,1998—2000年石油大學(xué)(北京)博士后工作,;2000—現(xiàn)今,,中國石油大學(xué)(北京)工作。主要從事含油氣盆地分析,、常規(guī)和非常規(guī)油氣形成與分布,、常規(guī)和非常規(guī)油氣資源評價(jià)科研和教學(xué)工作。在致密砂巖氣成藏機(jī)制與類型劃分、頁巖儲(chǔ)層孔隙結(jié)構(gòu)表征與頁巖氣富集主控因素與評價(jià),、頁巖油富集機(jī)理與可動(dòng)性評價(jià),、油氣運(yùn)聚門限控藏模式等方面取得了重要成果。發(fā)表論文(第1,、2作者)200余篇(其中SCI和EI收錄80篇,,高被引論文7篇),連續(xù)4年入選愛思唯爾中國高被引學(xué)者,,合著專著14部(其中第一完成人5部),,授權(quán)發(fā)明專利30余件;先后參加國家自然科學(xué)基金,、國家“973”,、國家“八五”,、 “九五” ,、“十五”攻關(guān)項(xiàng)目、國家重大專項(xiàng)和局級項(xiàng)目50余項(xiàng),;獲省部級科技進(jìn)步一等獎(jiǎng)19項(xiàng),、二等獎(jiǎng)12項(xiàng),省部級創(chuàng)新團(tuán)隊(duì)獎(jiǎng)3項(xiàng),。
聯(lián)系方式:86-10-89733328,;
通訊地址:北京昌平中國石油大學(xué)非常規(guī)天然氣研究院;郵編:102249,;
郵箱:[email protected],;[email protected]
一、教育和工作簡歷
教育簡歷
1979.09—1982.07,,吉林省梨樹縣第一中學(xué),,學(xué)習(xí);
1982.09—1986.07,,大慶石油學(xué)院勘探系,,學(xué)習(xí),團(tuán)總支組委,;
1986.07—1987.07,,大慶石油學(xué)院外語進(jìn)修班,學(xué)習(xí),;
1989.09—1992.07,,大慶石油學(xué)院,研89,,學(xué)習(xí),,勘探系研究生支部書記;
1995.09—1998.09,中國地質(zhì)大學(xué)(北京),,博95,,學(xué)習(xí);
工作簡歷
1987.07—1989.09,,大慶石油學(xué)院勘探系,,工作,團(tuán)總支書記,;
1992.07—1995.09,,大慶石油學(xué)院勘探系科研室,工作,;
1998.09—2000.11,,石油大學(xué)(北京),盆地與油藏研究中心,博士后工作;
2000.11—2008.06, 中國石油大學(xué)(北京),,盆地與油藏研究中心, 副主任
2008.04—2012.06, 中國石油大學(xué)(北京),,盆地與油藏研究中心, 書記
2012.06—2018.10,中國石油大學(xué)(北京),,非常規(guī)天然氣研究院, 書記,、副院長
2018.10—2021.09,中國石油大學(xué)(北京),,非常規(guī)油氣科學(xué)技術(shù)研究院,,副院長
2021.09—現(xiàn)在,中國石油大學(xué)(北京),,非常規(guī)油氣科學(xué)技術(shù)研究院,,工作
二、主要兼職
1. 中石油重點(diǎn)實(shí)驗(yàn)室中國石油大學(xué)(北京)油氣賦存機(jī)制實(shí)驗(yàn)室主任,,2021.7—
2. 第八屆石油學(xué)會(huì)石油地質(zhì)專業(yè)委員會(huì)油氣運(yùn)移學(xué)組副組長,,2013.2—
3. 能源行業(yè)頁巖氣標(biāo)準(zhǔn)化技術(shù)委員會(huì)委員,2018.11—
4. 中國地質(zhì)學(xué)會(huì)非常規(guī)油氣地質(zhì)專業(yè)委員會(huì)委員,,2014.8—
5. 中國地質(zhì)學(xué)會(huì)地質(zhì)科技情報(bào)專業(yè)委員會(huì)第二屆委員會(huì)委員,,2018.8.13—
6. 中國地質(zhì)學(xué)會(huì)石油地質(zhì)專業(yè)委員會(huì)第九屆委員會(huì)委員,2024.7—
7. 中國石油天然氣集團(tuán)限公司非常規(guī)油氣重點(diǎn)實(shí)驗(yàn)室學(xué)術(shù)委員,,2017—
8. 國土資源部頁巖氣戰(zhàn)略評價(jià)重點(diǎn)實(shí)驗(yàn)室學(xué)術(shù)委員會(huì)委員,,2017.6—
9. 中國能源學(xué)會(huì)石油天然氣地質(zhì)學(xué)專業(yè)委員會(huì),秘書長,,2022.4—
10. 國家能源局頁巖氣研發(fā)中心學(xué)術(shù)委員會(huì)委員,,2023.1—
11. 自然資源部復(fù)雜構(gòu)造區(qū)非常規(guī)天然氣評價(jià)與開發(fā)重點(diǎn)實(shí)驗(yàn)室學(xué)術(shù)委員會(huì)委員,2021.7—
12. 《地質(zhì)學(xué)報(bào)》編委,,2019.1—
13. 《中國礦業(yè)大學(xué)學(xué)報(bào)》編委會(huì)委員,,2018.1—
14. 《礦業(yè)科學(xué)學(xué)報(bào)》第三屆編輯委員會(huì)委員,,2024.8—2028.8
15. 《東北石油大學(xué)學(xué)報(bào)》編委會(huì)委員,2023.1—2025.12
16. 《大慶石油地質(zhì)與開發(fā)》編委會(huì)委員,,2022.10—2027.9
三,、個(gè)人榮譽(yù)獎(jiǎng)(部分)
1. 2022年,中國石油大學(xué)(北京)優(yōu)秀研究生指導(dǎo)教師
2. 2022年,,中國石油大學(xué)(北京)優(yōu)秀研究生指導(dǎo)教師團(tuán)隊(duì)(負(fù)責(zé)人)
3. 2021年,,中國石油大學(xué)(北京)石大學(xué)者優(yōu)秀學(xué)者
4. 2011年,北京市教育工會(huì),,“教育先鋒教書育人先進(jìn)個(gè)人”.
5. 2011年,,中共北京市委教育工作委員會(huì),“北京市高校優(yōu)秀共產(chǎn)黨員”.
6. 2010年,,中國石油大學(xué)(北京),,2008—2010年度 “勞動(dòng)模范”稱號(hào).
7. 2009年,中國石油大學(xué)(北京),,2007—2009年度 “優(yōu)秀共產(chǎn)黨員”稱號(hào).
四,、近期主持的課題(代表性課題)
1. 國家自然科學(xué)基金項(xiàng)目:混積頁巖儲(chǔ)層多尺度孔-縫系統(tǒng)對頁巖油賦存及可動(dòng)性(批準(zhǔn)號(hào):42272137),2023.01—2026.12,,負(fù)責(zé)人,,在研
2. 國家自然科學(xué)基金項(xiàng)目:海相富氣頁巖低阻成因及其對含氣性的控制機(jī)理(批準(zhǔn)號(hào):42072151),,2021.1—2024.12,,負(fù)責(zé)人,在研
3. 國家自然科學(xué)基金項(xiàng)目:陸相頁巖儲(chǔ)層巖石組構(gòu)和孔隙結(jié)構(gòu)特征及其對含氣性的控制機(jī)理(批準(zhǔn)號(hào):41872135),,2019.1—2022.12,,負(fù)責(zé)人,完成
4. 國家自然科學(xué)基金項(xiàng)目:頁巖非均質(zhì)性和微-納米孔喉結(jié)構(gòu)對含氣性的控制機(jī)理(批準(zhǔn)號(hào):41472112),,2015.1—2018.12,,負(fù)責(zé)人,完成
5. 國家自然科學(xué)基金項(xiàng)目:疊合盆地油氣藏深埋過程中油氣組分和相態(tài)演化機(jī)制(批準(zhǔn)號(hào):40972088),2009.1—2012.12,,負(fù)責(zé)人,,完成
6. 國家自然科學(xué)基金項(xiàng)目:減壓實(shí)過程中的砂體回彈作用及其成藏效應(yīng)(40372071),2005.1—2007.12,,負(fù)責(zé)人,,完成
7. 國家自然科學(xué)基金項(xiàng)目:地殼抬升剝蝕過程中的砂體回彈作用及其油氣成藏效應(yīng)(40472078),2004.1—2004.12,;負(fù)責(zé)人,,完成
8. 國家“973”課題:中國西部疊合盆地深部油氣復(fù)合成藏機(jī)制與分布模式(2011CB201105),2011.1—2015.12,,副負(fù)責(zé)人
9. 國家“973”課題:陸相頁巖油資源潛力與分布規(guī)律(2014CB239105), 2014.1—2018.8,,骨干,,完成
10. 國家重大專項(xiàng):中生界陸相不同盆地類型頁巖氣賦存方式與富集規(guī)律研究(2016ZX05034-001),2016.1—2020.12,,任務(wù)負(fù)責(zé)人,,完成
11. 國家重大專項(xiàng):五峰—龍馬溪組富有機(jī)質(zhì)頁巖儲(chǔ)層精細(xì)描述與頁巖氣成藏機(jī)理(2017ZX05035-02),2017.1—2020.12,,課題負(fù)責(zé)人,,完成
12. 國家重大專項(xiàng):盆地致密砂巖氣成藏機(jī)制及識(shí)別標(biāo)志(2011ZX05008-004),2011.1—2015.9,骨干,;完成
13. 國家重大專項(xiàng):典型前陸盆地致密儲(chǔ)層天然氣藏形成機(jī)理與成藏模式(2011ZX05003-001), 2011.7—2014.12,,專題負(fù)責(zé)人;完成
14. 國家重大專項(xiàng):頁巖氣成藏主控因素研究(2011ZX05018-02), 2011.1—2015.12,骨干,,完成
15. 國土資源部項(xiàng)目:西北區(qū)頁巖氣資源調(diào)查評價(jià)與選區(qū),,國土資源部,2011.3—2013.3,,項(xiàng)目負(fù)責(zé)人,,完成
16. 國土資源部項(xiàng)目:典型富有機(jī)質(zhì)頁巖儲(chǔ)集能力及其控制因素研究(工作項(xiàng)目編碼:12120114046701),2014.1—2018.12,,課題負(fù)責(zé)人,,完成
17. 中石油科技部戰(zhàn)略合作項(xiàng)目:瑪湖凹陷風(fēng)城組頁巖油富集機(jī)理及評價(jià)關(guān)鍵技術(shù)研究,2020.1—2024.12,,課題負(fù)責(zé)人,,在研
18. 中國石油西南油田分公司項(xiàng)目:四川盆地龍馬溪組構(gòu)造演化與頁巖氣富集規(guī)律研究,2020.1—2022.12,,課題負(fù)責(zé)人,,完成
19. 中石油西南揭榜掛帥項(xiàng)目:四川盆地古生界海相頁巖儲(chǔ)層發(fā)育機(jī)理及有效性評價(jià),2022.11—2024.12,,課題負(fù)責(zé)人,,在研
20. 浙江油田公司項(xiàng)目:昭通探區(qū)及周邊復(fù)雜構(gòu)造區(qū)淺層頁巖氣資源潛力評價(jià)及有利區(qū)優(yōu)選,2023.6—2024.12,,課題負(fù)責(zé)人,, 在研
五、主要個(gè)人和團(tuán)隊(duì)獎(jiǎng)勵(lì)
科研獎(jiǎng)項(xiàng):一等獎(jiǎng):
1. 2023年,,海相頁巖氣富集機(jī)理與評價(jià)關(guān)鍵技術(shù)及應(yīng)用成效,,石油和化學(xué)工業(yè)聯(lián)合會(huì)科技進(jìn)步一等獎(jiǎng)(1)
2. 2023年,頁巖儲(chǔ)層流體賦存狀態(tài)及儲(chǔ)集能力定量評價(jià)關(guān)鍵技術(shù)及應(yīng)用,,中國發(fā)明協(xié)會(huì)科技進(jìn)步一等獎(jiǎng)(5)
3. 2022年,,非常規(guī)油氣儲(chǔ)層成巖-成孔機(jī)制與儲(chǔ)集能力定量評價(jià)關(guān)鍵技術(shù)及應(yīng)用,中國發(fā)明協(xié)會(huì)一等獎(jiǎng)(4)
4. 2021年,,大面積高豐度頁巖氣富集理論,、綜合評價(jià)技術(shù)創(chuàng)新與工業(yè)化應(yīng)用,,中國能源研究會(huì),2021-0285-J-1-08-R03,,創(chuàng)新一等獎(jiǎng)(3).
5. 2020年,,南方海相頁巖成儲(chǔ)-成藏機(jī)理及評價(jià)技術(shù)與應(yīng)用,中國石油和化工自動(dòng)化應(yīng)用協(xié)會(huì),,科技進(jìn)步一等獎(jiǎng)(1).
6. 2020年,,油氣門限控藏模式、定量預(yù)測關(guān)鍵技術(shù)及重大應(yīng)用成效,,中國石油和化學(xué)工業(yè)協(xié)會(huì),,技術(shù)發(fā)明一等獎(jiǎng)(3).
7. 2019年. 中國西部陸相致密油成藏富集機(jī)理及其應(yīng)用成效. 中國石油和化學(xué)工業(yè)協(xié)會(huì),科技進(jìn)步一等獎(jiǎng)(3).
8. 2018年. 陸相致密砂巖油氣“源儲(chǔ)一體化”有利區(qū)預(yù)測評價(jià)技術(shù)及重大應(yīng)用成效,,中國產(chǎn)學(xué)研促進(jìn)會(huì),科技進(jìn)步一等獎(jiǎng)(3).
9. 2016年. 疊合盆地復(fù)雜油氣藏成因機(jī)制與預(yù)測方法及應(yīng)用成效, 中國石油和化學(xué)工業(yè)協(xié)會(huì),,科技進(jìn)步一等獎(jiǎng)(5).
10. 2015年, 地震成藏學(xué)理論及其應(yīng)用實(shí)踐,中國石油和化工自動(dòng)化應(yīng)用協(xié)會(huì),,科技進(jìn)步一等獎(jiǎng)(2).
11. 2014年,,疊復(fù)連續(xù)型致密砂巖氣藏成因機(jī)制、預(yù)測方法及其在庫車坳陷的重大發(fā)現(xiàn),,中國石油和化學(xué)工業(yè)協(xié)會(huì),,科技進(jìn)步一等獎(jiǎng)(3).
12. 2014年,渤海灣地區(qū)油氣形成富集與分布規(guī)律,,中國產(chǎn)學(xué)研合作促進(jìn)會(huì),,產(chǎn)學(xué)研合作創(chuàng)新成果一等獎(jiǎng)(3).
13. 2014年, 全國頁巖氣資源潛力調(diào)查評價(jià)及有利區(qū)優(yōu)選, 國土資源部,科學(xué)技術(shù)獎(jiǎng)一等獎(jiǎng)(14).
14. 2012年,,油氣臨界成藏理論,、評價(jià)方法與重大勘探成效,北京市,,科學(xué)技術(shù)一等獎(jiǎng)(4).
15. 2012年,復(fù)雜油氣藏相控預(yù)測及其重大應(yīng)用成效,教育部,,科技進(jìn)步一等獎(jiǎng)(3).
16. 2011年,,陸相盆地?cái)嗔芽夭貦C(jī)理與模式,教育部,,科技進(jìn)步一等獎(jiǎng)(3).
17. 2011年,,陸相盆地?cái)嗔芽夭貦C(jī)理與模式, 中國石油和化學(xué)工業(yè)協(xié)會(huì),科技進(jìn)步一等獎(jiǎng)(3).
18. 2005年,,濟(jì)陽坳陷下第三系油氣運(yùn)聚成藏與挖潛勘探,,教育部,科技進(jìn)步一等獎(jiǎng)(12).
19. 1996年,,延吉盆地?cái)鄬臃忾]性及斷塊圈閉評價(jià),,黑龍江省教委,,科技進(jìn)步一等獎(jiǎng)(4).
科研獎(jiǎng)項(xiàng):二等獎(jiǎng):
1. 2022年,川南海相頁巖氣保存評價(jià)技術(shù)創(chuàng)新及應(yīng)用,,中國發(fā)明協(xié)會(huì)二等獎(jiǎng)(4)
2. 2022年,,頁巖納米孔隙結(jié)構(gòu)及流體賦存機(jī)制研究,北京市自然科學(xué)二等獎(jiǎng)(4)
3. 2022年,,疊覆型油氣區(qū)致密氣藏富集機(jī)制,、預(yù)測方法及應(yīng)用成效,中國石油和化學(xué)工業(yè)聯(lián)合會(huì)科學(xué)技術(shù)獎(jiǎng)二等獎(jiǎng)(6)
4. 2021年,,川渝地區(qū)頁巖氣選區(qū)及勘探一體化示范,,中國地質(zhì)學(xué)會(huì),國土資源科學(xué)技術(shù)獎(jiǎng)二等(4)
5. 2020年. 復(fù)雜油氣藏地球物理智能反演技術(shù)及工業(yè)化應(yīng)用,北京市人民政府,,科技進(jìn)步二等獎(jiǎng)(2)
6. 2018年. 中國頁巖氣富集規(guī)律與調(diào)查評價(jià)關(guān)鍵技術(shù),,中國石油和化學(xué)工業(yè)聯(lián)合會(huì)科學(xué)技術(shù)獎(jiǎng)二等獎(jiǎng)(5)
7. 2018年. 頁巖氣分析測試關(guān)鍵技術(shù)及評價(jià)方法體系研究與應(yīng)用,國土資源科學(xué)技術(shù)獎(jiǎng)二等獎(jiǎng)(4)
8. 2017年. 中國北方典型含油氣盆地油氣成藏機(jī)理及其重大應(yīng)用成效(3), 中國產(chǎn)學(xué)研促進(jìn)會(huì),科技進(jìn)步二等獎(jiǎng)(3)
9. 2009年,,遼河探區(qū)西部凹陷深化勘探理論與實(shí)踐,,科技進(jìn)步獎(jiǎng)二等獎(jiǎng)(9),教育部
10. 2002年,,排烴門限理論研究與應(yīng)用,,科學(xué)技術(shù)進(jìn)步獎(jiǎng)二等獎(jiǎng)(4),北京市
11. 2001年,,柴達(dá)木盆地天然氣資源評價(jià)與有利勘探區(qū)選擇,,科學(xué)技術(shù)進(jìn)步獎(jiǎng)二等獎(jiǎng)(3),北京市
12. 1996年,,天然氣聚集及封蓋條件研究,,科技進(jìn)步獎(jiǎng)二等獎(jiǎng),中國石油天然氣總公司
科研獎(jiǎng)項(xiàng):團(tuán)隊(duì)獎(jiǎng)
13. 2022年,,油氣地質(zhì)與綠色只能開發(fā)一體化科技創(chuàng)新團(tuán)隊(duì),,中國石油和化工自動(dòng)化應(yīng)用協(xié)會(huì),科技創(chuàng)新團(tuán)隊(duì)獎(jiǎng)(12),;
14. 2018年,,中國石油大學(xué)(北京)非常規(guī)油氣研究創(chuàng)新團(tuán)隊(duì),中國石油和化學(xué)工業(yè)聯(lián)合會(huì)“創(chuàng)新團(tuán)隊(duì)”獎(jiǎng)(4),;
15. 2013年,,中國石油大學(xué)(北京)油氣成藏研究,中國石油和化學(xué)工業(yè)聯(lián)合會(huì),,創(chuàng)新團(tuán)隊(duì)獎(jiǎng)團(tuán)隊(duì)獎(jiǎng)(6),。
科研榮譽(yù)獎(jiǎng)項(xiàng):個(gè)人獎(jiǎng)
1. 2024年,石油勘探與開發(fā)“突出貢獻(xiàn)審稿專家”
2. 2024年,,石油勘探與開發(fā)2013—2022你50篇精品學(xué)術(shù)論文
3. 2024年,,2023愛思唯爾中國高被引學(xué)者
4. 2023年,,2022愛思唯爾中國高被引學(xué)者
5. 2022年,2021年度中國石油科學(xué)十佳論文提名獎(jiǎng)
6. 2022年,,入選F5000中國精品科技期刊頂尖學(xué)術(shù)論文,,題目:中國南方海相頁巖氣差異富集的控制因素
7. 2022年,2021愛思唯爾中國高被引學(xué)者
8. 2021年,,2020愛思唯爾中國高被引學(xué)者
9. 2021年,,2020年度中國石油科學(xué)十佳論文
10. 2021年,中國科技期刊卓越行動(dòng)計(jì)劃優(yōu)秀審稿人
11. 2020年,,綠色礦山產(chǎn)業(yè)聯(lián)盟,,突出貢獻(xiàn)獎(jiǎng)(個(gè)人).
12. 2015年,中國石油和化學(xué)工業(yè)聯(lián)合會(huì),,全國石油和化工優(yōu)秀科技工作者(個(gè)人).
六,、授權(quán)發(fā)明專利
1. 姜振學(xué),李卓,龐雄奇,等.致密深盆氣成藏預(yù)測方法和裝置.發(fā)明專利,ZL201410646008.5,授權(quán)時(shí)間:2017.12.26,;
2. 姜振學(xué),馮潔,唐相路,等.頁巖氣儲(chǔ)層的地質(zhì)參數(shù)確定方法和裝置.發(fā)明專利,ZL201410818237.0,,授權(quán)時(shí)間:2018.03.09;
3. 姜振學(xué),李卓,唐相路,等.頁巖全孔徑孔隙體積的表征方法.發(fā)明專利,ZL201510785013.9,,授權(quán)時(shí)間:2018.07.27,;
4. 唐相路,姜振學(xué),,郝進(jìn),,等. 頁巖氣儲(chǔ)層特性預(yù)測方法和裝置.發(fā)明專利,ZL201410815590.3,,授權(quán)時(shí)間:2017.06.06,;
5. 唐相路;姜振學(xué);馮潔,等. 頁巖油氣儲(chǔ)層的微觀地質(zhì)特征確定方法和裝置.發(fā)明專利,ZL201510862762.7,授權(quán)時(shí)間:2018.06.08,;
6. 原園,姜振學(xué),黃何鑫,等.巖石粉碎篩選裝置.發(fā)明專利,ZL 201510111926.2,,授權(quán)時(shí)間:2017.04.12;
7. 原園,姜振學(xué),喻宸,等.頁巖孔隙結(jié)構(gòu)的表征方法.發(fā)明專利,ZL201510837038.9,,授權(quán)時(shí)間:2018.12.21,;
8. 黃河鑫,姜振學(xué),李卓,等.恢復(fù)頁巖含氣量的方法.發(fā)明專利,ZL201510699029.8,授權(quán)時(shí)間:2017.11.10,;
9. 陳磊,姜振學(xué),,黃河鑫,,等.頁巖吸附氣量的測定方法.發(fā)明專利.ZL2016610597746.4,授權(quán)時(shí)間:2018.12.04,;
10. 張昆,,姜振學(xué),,謝雪戀,等.海相頁巖層序識(shí)別方法及裝置. 發(fā)明專利.ZL201710157734.4,,授權(quán)時(shí)間:2019.05.24,;
11. 張昆,姜振學(xué),,劉天琳,,等.一種海相頁巖地層有利層段識(shí)別方法. 發(fā)明專利.ZL201710079042.2,授權(quán)時(shí)間:2019.10.01,;
12. 張昆,,姜振學(xué),黃一舟,,等.海相頁巖地層破裂深度的預(yù)測方法和裝置,,發(fā)明專利,201710684941.5,,授權(quán)時(shí)間:2019.11.19,;
13. 陰麗詩,姜振學(xué),,張昆,,等.測定海相頁巖石墨化的方法,發(fā)明專利,,201710449006 .0,,授權(quán)時(shí)間:2020.05.05;
14. 李廷微,、姜振學(xué),、許辰璐,等. 頁巖油儲(chǔ)層評價(jià)方法和裝置,,發(fā)明專利,,201710245905.9,授權(quán)時(shí)間:2020.01.31,;
15. 常佳琦,,姜振學(xué),唐相路,,等. 一種氣體擴(kuò)散運(yùn)移的實(shí)驗(yàn)系統(tǒng)及其實(shí)驗(yàn)方法. 發(fā)明專利,,ZL201810606725.3,授權(quán)時(shí)間:2020.11.06
16. 張帆,,蕭漢敏,,姜振學(xué),等.核磁共振弛豫時(shí)間與孔喉半徑的轉(zhuǎn)化方法,發(fā)明專利,,ZL202010757921.8,,授權(quán)時(shí)間:2022.7.5
17. 萬成祥,宋巖,,姜振學(xué),,李卓,羅群,,郝綿柱,,蘇展飛,周城漢,,紅蘭.海相頁巖原位氣量回復(fù)的確定方法,、裝置及系統(tǒng).發(fā)明專利,ZL202110948002.3,,授權(quán)時(shí)間:2022.10.04
18. 萬成祥,,宋巖,姜振學(xué),,李卓,,羅群,郝綿柱,,蘇展飛,,周城漢,紅蘭.一種模擬海相頁巖地層抬升過程中含氣量變化的方法. ZL202110948769.6,,授權(quán)時(shí)間:2022.10.18
19. 吳永輝,,姜振學(xué),薛子鑫,,等.一種基于電阻率新參數(shù)的海相頁巖低阻成因類型與頁巖氣勘探潛力判識(shí)方法.ZL202210758835.8,,授權(quán)時(shí)間:2023.7.21
20. 李輝,姜振學(xué),,徐旭輝,,等. 基于PC數(shù)值模擬技術(shù)的隱性走滑斷層判定方法及系統(tǒng). ZL202310007079.X,授權(quán)時(shí)間:2023.1.4
21. 龐雄奇,郭迎春,姜振學(xué),等.確定浮力作用下限及動(dòng)力平衡的物理模擬實(shí)驗(yàn)裝置以及確定浮力作用下限及動(dòng)力平衡的方法.發(fā)明專利,ZL201210511391.4,,授權(quán)時(shí)間:2016.08.31,;
22. 龐雄奇,郭迎春,姜振學(xué),等. 確定連續(xù)型致密砂巖氣藏分布范圍的模擬實(shí)驗(yàn)裝置及方法. 發(fā)明專利. ZL201310589131.3,,授權(quán)時(shí)間:2016.05.18,;
23. 白永強(qiáng),郝進(jìn),姜振學(xué),等. 泥頁巖含氣量檢測用解析罐、檢測裝置及檢測系統(tǒng).發(fā)明專利,ZL201410160441.8,,授權(quán)時(shí)間:2016.04.20,;
24. 高鳳琳,宋巖,姜振學(xué),等.用于地質(zhì)構(gòu)造物理模擬實(shí)驗(yàn)的鋪砂裝置.發(fā)明專利.ZL201610648029.X,授權(quán)時(shí)間:2018.09.21
25. 高鳳琳,,宋巖,,姜振學(xué),等.頁巖有機(jī)質(zhì)碳化的判斷方法. 發(fā)明專利.ZL201610994832.9,,授權(quán)時(shí)間:2019.07.26,;
26. 諶志遠(yuǎn),宋巖,,姜振學(xué),,等.一種表征水在頁巖煤中賦存狀態(tài),發(fā)明專利,,ZL201810619151.3,,授權(quán)時(shí)間:2020.07.17
27. 李卓,張瀛涵,姜振學(xué),等. 頁巖裂縫吸水?dāng)U展實(shí)驗(yàn)裝置.發(fā)明專利.ZL201710183292.0,授權(quán)時(shí)間:2018.02.09,;
28. 李卓,鞏文龍,姜振學(xué),等. 巖石的納米CT測試樣品制備裝置和制備方法.發(fā)明專利. ZL201710201705.3,,授權(quán)時(shí)間:2018.04.17;
29. 李卓,,梁志凱,,姜振學(xué),等.頁巖含氣量測試裝置及方法.發(fā)明專利,,ZL201910397347.7,,授權(quán)時(shí)間:2020.7.28
30. 李卓; 鞏文龍; 姜振學(xué),等. 用于測量頁巖破裂甲烷散失的模擬實(shí)驗(yàn)裝置及其方法.發(fā)明專利, ZL 201810324105.0,, 授權(quán)時(shí)間:2020.12.08.
31. 高之業(yè),,熊書苓,姜振學(xué),,等.滲析切割一體化的頁巖滲吸裝置和滲吸效率參數(shù)確定方法.發(fā)明專利,,ZL201910681469.9,授權(quán)時(shí)間:2020.7.17
32. 高之業(yè),,楊朔,,姜振學(xué),等.一種定量表征頁巖儲(chǔ)層潤濕性的方法和裝置. 發(fā)明專利,,ZL201810431064.5,,授權(quán)時(shí)間:2019.6.11
33. 高之業(yè),范毓鵬,,姜振學(xué),,等.頁巖三維接觸角及潤濕非均質(zhì)性評價(jià)系統(tǒng). 發(fā)明專利,ZL201910428652.8,,授權(quán)時(shí)間:2020.5.08
34. 高之業(yè); 薛子鑫; 姜振學(xué),,等. 巖石樣品研磨與分離裝置與方法. 發(fā)明專利, ZL 201911080431.2, 授權(quán)時(shí)間:2021.03.02
35. 高之業(yè); 范毓鵬; 姜振學(xué),等. 一種用于去除巖樣中無機(jī)碳的預(yù)處理裝置. 發(fā)明專利,授權(quán): ZL 201811337731.X,, 授權(quán)時(shí)間:2020.11.03.
36. 高之業(yè),,梁祝,姜振學(xué),,等.一種頁巖儲(chǔ)層潤濕性評價(jià)方法及裝置發(fā)明專利,授權(quán): ZL 202011176488.5,, 授權(quán)時(shí)間:2021.08.06.
37. 楊威 朱德宇 姜振學(xué),等. 一種野外砂泥巖鑒別裝置及方法. 發(fā)明專利,授權(quán): ZL 201910826075.8.,,授權(quán)時(shí)間:2020.11.06
38. 楊威,王乾佑,,姜振學(xué),等. 頁巖氣儲(chǔ)層測井孔隙度快速預(yù)測方法及系統(tǒng). 發(fā)明專利, ZL 201910869852.7,, 授權(quán)時(shí)間:2021.04.09
39. 楊威, 崔哲,,姜振學(xué),等. 油氣水運(yùn)移模擬裝置及方法. 發(fā)明專利,授權(quán): ZL 201910370742.6,, 授權(quán)時(shí)間:2020.11.06.
七,、代表性論著(2000年后主要論文)
代表性專著
1. 姜振學(xué) 楊 威 羅 群,等. 四川盆地及周緣五峰組—龍馬溪組頁巖氣藏成藏要素匹配效應(yīng)與綜合評價(jià).北京:石油工業(yè)出版社,,2021,,P189.
2. 姜振學(xué),陳冬霞,,李卓,,等. 中國中生界陸相頁巖氣形成條件及富集的控制因素.北京:地質(zhì)出版社,2022.1,,P211.
3. 唐相路,,周彤,姜振學(xué),,等.Pore Structure and Its Influencing Factors of Shale Oil Reservoir in Jianghan Basin,China.(中國江漢盆地頁巖油儲(chǔ)層孔隙結(jié)構(gòu)及影響因素).Scientific Reaearch Publishing.2020,P233
4. 羅群,,姜振學(xué),魏浩元.陸相斷陷湖盆致密油成藏條件與富集機(jī)制—以酒泉盆地為例.北京:石油工業(yè)出版社,,2019,,P255
5. 姜振學(xué),唐相路,,李卓,,等.中國典型海相和陸相頁巖儲(chǔ)層孔隙結(jié)構(gòu)及含氣性,科學(xué)出版社,,2018,,P388.
6. 姜振學(xué),饒丹,,柳廣弟,,等.西北區(qū)頁巖氣(油)資源調(diào)查評價(jià)與選區(qū),,科學(xué)出版社2016,P259.
7. 姜振學(xué),,龐雄奇,,楊海軍,等.庫車拗陷致密砂巖氣成因機(jī)制與分布預(yù)測,,科學(xué)出版社,,2015,P169.
8. 龐雄奇,,羅曉容,姜振學(xué),,等.中國典型疊合盆地油氣聚散機(jī)理與定量模擬.北京:科學(xué)出版社,,2007,P212.
9. 羅群,,姜振學(xué),,龐雄奇.斷裂控藏機(jī)理及模式,石油工業(yè)出版社,,2006,,P318.
10. 龐雄奇,邱楠生,,姜振學(xué).油氣成藏過程定量模擬,,石油工業(yè)出版社,2005,,P353.
11. 金之鈞,,龐雄奇,姜振學(xué).油氣成藏定量模式,,石油工業(yè)出版社,,2003,P169.
12. 黃志龍,,姜振學(xué).吐哈盆地油氣成藏機(jī)理及定量評價(jià),石油工業(yè)出版社,,2000,P148.
13. 金之鈞,,龐雄奇,,姜振學(xué).油氣成藏定量模式,石油工業(yè)出版社,,2003,,P169;
14. 龐雄奇,,萬龍貴,,付廣,,姜振學(xué).蓋層封油氣性綜合定量評價(jià)—盆地模擬在蓋層評價(jià)中的應(yīng)用,1993,,地質(zhì)出版社,;
代表性論文(2000年以后,部分)
1. Jiang Zhenxue, Song Yan, Tang Xianglu, et.a(chǎn)l.Controlling factors of marine shale gas differential enrichment in southern China. Petrol. Explor. Develop., 2020, 47(3): 661–673.
2. Zhenxue Jiang, Xianglu Tang, Lijun Cheng,,et al. Characterization and origin of the Silurian Wufeng-Longmaxi Formation shale multiscale heterogeneity in southeastern Sichuan Basin, China. Interpretation, 2015, 3(2): SJ61-SJ74.
3. Zhen-Xue Jiang, Zhuo Li, Feng Li,,et al. Tight sandstone gas accumulation mechanism and development models. Petroleum Science,2015,12(4):587–605.
4. Jiang Zhenxue, Pang Xiongqi, Li Zhuo, et al. An improved multi-parameter-constrained Pareto model for hydrocarbon resource assessment and its application in Bozhong Sag, Eastern China. Bulletin of Canadian Petroleum Geology, 2012, 60(3): 209-217.
5. Jiang Zhenxue, Yang Haijun, Li Zhuo, et al. Differences of Hydrocarbon Enrichment between the Upper and the Lower Structural Layers in the Tazhong Paleouplift. Acta Geologica Sinica, 2010, 84(5): 1116-1127.
6. Jiang Zhenxue, Pang Xiongqi, Yang Haijun, et al. Hydrocarbon enrichment characteristics and difference analysis in the TZ1-TZ4 well block of the Tarim Basin. Petroleum Science, 2010, 7(2): 201-210.
7. Jiang Zhenxue, Pang Xiongqi, Liu Luofu, Quantitative studies of hydrocarbon loss of the silurian bitumen sandstone in the Tarim Basin. Sci China Ser D-Earth Sci,2008,51(Supp.Ⅱ):101-107.
8. Jiang Zhenxue, Dong Yuexia, Li Hongyi.The limitation of fault-sealing and its control on hydrocarbon accumulation—?an example from the Laoyemiao Oilfield of Nanpu Sag.Petroleum Science,2008,5(4):295-301.
9. Jiang Zhenxue,Chen Dongxia, Pang Xiongqi,,et al. Oil saturation of surrounding rock controls on lithological reservoirs. Petroleum Science,2006,3(2):1-5.
10. Jiang Zhenxue, Pang Xiongqi, Jin Zhijun,,et al. Division of Gas Accumulation System and Laws Controlling Distribution of Natural Gas in Typical Petroliferous Basins of China. Journal of Chain of Geosciences. 2002,13(4);306-312.
11. Guozhen Wang, Zhenxue Jiang, Houjian Gong,et al. A Novel Method for Calculating Diffusion Coefficient of Shale Gas Reservoirs: A Case Study of Longmaxi Formation in Weiyuan Area, Sichuan Basin, China. Appl. Sci. 2023, 13, 7044. https://doi.org/10.3390/app13127044
12. Zhikai Liang, Zhenxue Jiang, Yunhao Han,,et al. A Modified Dent-Fractal Mathematical Model to Investigate the Water Vapor Adsorption on Nanopore Structure Heterogeneity from the Longmaxi Shale, Sichuan Basin, China. Energy Fuels. https://doi.org/10.1021/acs.energyfuels.3c01171
13. Yunhao Han, Zhenxue Jiang, Zhikai Liang,,et al. Full Pore Size Fractal Characteristics of Longmaxi Formation Shale in 2 Luzhou?Changning Area and Its Influence on Seepage. Energy Fuels. https://doi.org/10.1021/acs.energyfuels.3c01456
14. Zhang Fan, Jiang Zhenxue, Zhang Yuanhao, ,et al. A New Method for Converting T2 Spectrum into Pore Radius. Journal of Earth Science. 2023,34(4): 966–974. https://doi.org/10.1007/s12583-021-1576-y.
15. Huan Miao, Zhenxue Jiang, Xianglu Tang,,et al. Strata Uplift Controlled Deep Shale Gas Accumulation Modes: A Case Study from the Weiyuan Block, Sichuan Basin. Energy Fuels. 2023, 37, 12889?12904 . https://doi.org/10.1021/acs.energyfuels.3c02255
16. Zhikai Liang, Zhenxue Jiang, Wei Wu. et al.. Study and Classification of Porosity Stress Sensitivity in Shale Gas Reservoirs Based on Experiments and Optimized Support Vector Machine Algorithm for the Silurian Longmaxi Shale in the Southern Sichuan Basin, China. ACS Omega.2022, https://doi.org/10.1021/acsomega.2c03393
17. Zixin Xue, Zhenxue Jiang, Xin Wang .et al..Genetic mechanism of low resistivity in high-mature marine shale: Insights from the study on pore structure and organic matter graphitization. MARINE AND PETROLEUM GEOLOGY.2024,,144 (2022) 105825. https://doi.org/10.1016/j.marpetgeo.2022.105825
18. Fan Zhang, Zhenxue Jiang, Hanmin Xiao , et al.. Testing origin of reservoir quality difference of tight sandstones in the Yanchang Formation, Ordos Basin, China. MARINE AND PETROLEUM GEOLOGY. 2024. 137, 137 (2022) 105507. https://doi.org/10.1016/j.marpetgeo.2021.105507
19. Jiaqi Chang, Xiaodong Fan, Zhenxue Jiang, et al.. Differential impact of clay minerals and organic matter on pore structure and its fractal characteristics of marine and continental shales in China. APPLIED CLAY SCIENCE,2022,,216 (2022) 106334 .https://doi.org/10.1016/j.clay.2021.106334
20. Li X, Jiang Z, Jiang S, et al. Synergetic effects of matrix components and diagenetic processes on pore properties in the Lower Cambrian shale in Sichuan Basin, South China[J]. Journal of Natural Gas Science and Engineering, 2021, 94(4-5):104072.(IF:3.86)
21. Deyu Zhu,,Zhenxue Jiang,Shu Jiang,,et al. Water-bearing characteristics and their influences on the reservoir capacity in terrestrial shale reservoirs: A case study of the lower Jurassic Ziliujing Formation in the Northeast Sichuan Basin, China. Marine and Petroleum Geology,2021,123,104738,1-16
22. Fan Zhang , Hanmin Xiao, Zhenxue Jiang, et al. Influence of Pore Throat Structure and the Multiphases Fluid Seepage on Mobility of Tight Oil Reservoir. Lithosphere,2021, https://doi.org/10.2113/2021/5525670.
23. Houjian Gong, Zhenxue Jiang, Zhiye Gao,et al. Innovative Standard for Graded Evaluation of Oil Enrichment of Lacustrine Shale: A Case Study of the Lower Third Member of the Shahejie Formation, Zhanhua Sag, Eastern China. ENERGY & FUELS,2021, https://doi.org/10.1021/acs.energyfuels.1c03014
24. Liu, Z.; Qiu, H.; Jiang, Z.; Liu, R.; Wei, X.; Chen, F.; Wei, F.; Wang, D.; Su, Z.; Yang, Z. Types and Quantitative Characterization of Microfractures in the Continental Shale of the Da’anzhai Member of the Ziliujing Formation in Northeast Sichuan, China. Minerals 2021, 11, 870. https://doi.org/10.3390/ min11080870
25. Hengyuan Qiu, Zhenxue Jiang, Zhujiang Liu,,et al. Difference in pore structure characteristics between condensate and dry shale gas reservoirs: Insights from the pore contribution of different matrix components . Journal of Natural Gas Science and Engineering, https://doi.org/10.1016/j.jngse.2021.104283.
26. Zhikai Liang,Zhenxue Jiang,,Zhuo Li, et al. Nanopores Structure and Multifractal Characterization of Bulk Shale and Isolated Kerogen-An Application in Songliao Basin, China. Energy & fuels, 2021, ttps://doi.org/10.1021/acs.energyfuels.0c04230.
27. Zhikai Liang , Zhenxue Jiang , Zhuo Li ,et al. Investigation into the Pore Structure and Multifractal Characteristics of Shale Reservoirs through N2 Adsorption: An Application in the Triassic Yanchang Formation, Ordos Basin, China. Geo?uids Volume 2021, Article ID 9949379, 19 pages https://doi.org/10.1155/2021/9949379.
28. Zhang Fan,,Jiang Zhenxue,Sun Wei,,et al. Effect of Microscopic Pore-Throat Heterogeneity on Gas-Phase Percolation Capacity of Tight Sandstone Reservoirs. Energy & Fuels,2020, 34, 12399?12416.
29. Li, Xin, Jiang, Zhenxue, Jiang, Shu ,et al. Characteristics of matrix-related pores associated with various lithofacies of marine shales inside of Guizhong Basin, South China. Journal of Petroleum Science and Engineering,2020,185,1-16.
30. Li, Xin, Jiang, Zhenxue, Jiang, Shu ,et al. Various controlling factors of matrix-related pores from differing depositional shales of the Yangtze Block in south China: Insight from organic matter isolation and fractal analysis. Mar. Pet. Geol.,2020,111,720-734.
31. Wang, Xin,,Jiang, Zhenxue,,Zhang, Kun ,et al. Analysis of gas composition and nitrogen sources of shale gas reservoir under strong tectonic events: Evidence from the complex tectonic area in the yangtze plate. Energies,2020,13,281,1-18.
32. Wang Xingmeng, Jiang Zhenxue, Jiang Shu ,et al. Pore Evolution and Formation Mechanism of Organic-Rich Shales in the Whole Process of Hydrocarbon Generation: Study of Artificial and Natural Shale Samples. ENERGY & FUELS,2020,34,332-347.
33. Li Tingwei, Jiang Zhenxue Su, et al. Effect of laminae development on pore structure in the lower third member of the Shahejie Shale, Zhanhua Sag, Eastern China.Interpretation-a journal of subsurface characterization,2020,8(1):103-114.
34. Lei Chen, Luo Zuo, Zhenxue Jiang,et al. Mechanisms of shale gas adsorption: Evidence from thermodynamics and kinetics study of methane adsorption on shale. Chemical Engineering Journal. 2019, 361:559–570.
35. Lei Chen, Zhenxue Jiang, Qingxin Liu., et al. Mechanism of shale gas occurrence: Insights from comparative study on pore structures of marine and lacustrine shales. Marine and Petroleum Geology.2019,104: 200-216.
36. Lei Chen, Zhenxue Jiang, Keyu Liu., et al. INVESTIGATION OF FRACTAL CHARACTERISTICS AND METHANE ADSORPTION CAPACITY OF THE UPPER TRIASSIC LACUSTRINE SHALE IN THE SICHUAN BASIN, SOUTHWEST CHINA. Fractals.2019, doi.org/10.1142/S0218348X19400115.
37. Lei Chen, Zhenxue Jiang, Shu Jiang., et al. Nanopore Structure and Fractal Characteristics of Lacustrine Shale: Implications for Shale Gas Storage and Production Potential. Nanomaterials.2019, 9, 390. doi:10.3390/nano9030390.
38. Xingmeng Wang, Zhenxue Jiang, Shu Jiang., et al. Full-Scale Pore Structure and Fractal Dimension of the Longmaxi Shale from the Southern Sichuan Basin: Investigations Using FE-SEM, Gas Adsorption and Mercury Intrusion Porosimetry. Minerals 2019, 9, 543.
39. Xingmeng Wang, Zhenxue Jiang, Shu Jiang., et al. Pore Evolution and Formation Mechanism of Organic-Rich Shales in the Whole Process of Hydrocarbon Generation: Study of Artificial and Natural Shale Samples. Energy Fuels.2019. DOI: 10.1021/acs. Energy fuels.9b03789.
40. Li, X., Jiang, Z., Jiang, S., et al. Various controlling factors of matrix-related pores from differing depositional shales of the Yangtze Block in South China: insight from organic matter isolation and fractal analysis. Marine and Petroleum Geology. 2020,111:720-734.
41. Li, X., Jiang, Z., Jiang, S., et al. Characteristics of Matrix pore associated with various lithofacies of marine shales inside of Guizhong Basin, South China. Journal of Petroleum Science and Engineering.2019.doi.org/10.1016/j.petrol.2019.106671.
42. Fan Zhang, Zhenxue Jiang, Wei Sun., et al. A multiscale comprehensive study on pore structure of tight sandstone reservoir realized by nuclear magnetic resonance, high pressure mercury injection and constant-rate mercury injection penetration test. Marine and Petroleum Geology.2019. doi.org/10.1016/j.marpetgeo.2019.06.019.
43. Ming Wen, Zhenxue Jiang, Kun Zhang., et al. Difference Analysis of Organic Matter Enrichment Mechanisms in Upper Ordovician-Lower Silurian Shale from the Yangtze Region of Southern China and Its Geological Significance in Shale Gas Exploration. Geofluids. 2019. doi.org/10.1155/2019/9524507.
44. Yizhou Huang, Kun Zhang, Zhenxue Jiang.,et al. A Cause Analysis of the High-Content Nitrogen and Low-Content Hydrocarbon in Shale Gas: A Case Study of the Early Cambrian in Xiuwu Basin, Yangtze Region. Geofluids. 2019. doi.org/10.1155/2019/1435892.
45. Xiaoxue Liu, Zhenxue Jiang, Kun Zhang., et al. Mechanism Analysis of Organic Matter Enrichment of Upper Ordovician-Lower Silurian Shale in the Upper Yangtze Area Taking Jiaoye-1 Well in the Jiaoshiba Block as an Example. Geofluids. 2019. doi.org/10.1155/2019/ 5806023.
46. Zhiyuan Chen, Yan Song, Zhenxue Jiang., et al. Identification of organic matter components and organic pore characteristics of marine shale: A case study of Wufeng-Longmaxi shale in southern Sichuan Basin, China. Marine and Petroleum Geology. 2019,109:56-69.
47. Xin Li, Zhenxue Jiang, Pengfei Wang, et al. Porosity-preserving mechanisms of marine shale in Lower Cambrian of Sichuan Basin, South China [J]. Journal of Natural Gas Science and Engineering, 55(2018):191-205.
48. Xin Li, Zhenxue Jiang, Yan Song, et al. Porosity evolution mechanisms of marine shales at over-maturity stage: Insight from comparable analysis between Lower Cambrian and Lower Silurian inside and at the margin of the Sichuan Basin, South China [J]. Society of Exploration Geophysicists and American Association of Petroleum Geologists, 2018,6(3):739-757.
49. Tang X, Zhenxue Jiang, Jiang S, et al. Effects of organic matter and mineral compositions on pore structures of shales: A comparative study of lacustrine shale in Ordos Basin and Marine Shale in Sichuan Basin, China[J]. Energy Exploration & Exploitation, 2018(6):28-42.
50. Tingwei Li, Zhenxue Jiang, Zhuo Li, et al. Continental shale pore structure characteristics and their controlling factors: A case study from the lower third member of the Shahejie Formation, Zhanhua Sag, Eastern China [J]. Journal of Natural Gas Science and Engineering, 45(2017):670-692.
51. Yizhou Huang, Zhenxue Jiang, Kun Zhang, et al. Effect of Hydrothermal Activity on Organic Matter Enrichment of Shale: A Case Study of the Upper Ordovician and the Lower Silurian in the Lower Yangtze, South China [J]. minerals, 2018,8(495):1-18.
52. Kun Zhang, Zhenxue Jiang, Xuelian Xie, et al. Lateral Percolation and Its Effect on Shale Gas Accumulation on the Basis of Complex Tectonic Background.[J] Geofluids. 2018, 5195469(11).
53. Su, S., Jiang, Z., Shan, X., Zhang, C., Zou, Q., Li, Z., Zhu, R. (2018). The effects of shale pore structure and mineral components on shale oil accumulation in the Zhanhua Sag, Jiyang Depression, Bohai Bay Basin, China. Journal of Petroleum Science and Engineering, 165, 365-374.
54. Tang X, Jiang Z, Jiang S, et al. Characteristics and origin of in-situ gas desorption of the Cambrian Shuijingtuo Formation shale gas reservoir in the Sichuan Basin, China[J]. Fuel, 2017, 187:285-295.
55. Tang X, Jiang Z, Li Z, et al. Factors controlling organic matter enrichment in the lower Cambrian niutitang formation shale on the eastern shelf margin of the Yangtze block, China[J]. Interpretation, 2017, 5(3):1-41.
56. Li T, Jiang Z, Li Z, et al. Continental shale pore structure characteristics and their controlling factors: A case study from the lower third member of the Shahejie Formation, Zhanhua Sag, Eastern China[J]. Journal of Natural Gas Science & Engineering, 2017, 45.
57. Li T, Jiang Z, Xu C, et al. Effect of sedimentary environment on shale lithofacies in the lower third member of the Shahejie formation, Zhanhua Sag, eastern China[J]. Interpretation, 2017, 5(4):1-50.
58. Li T, Jiang Z, Xu C, et al. Effect of pore structure on shale oil accumulation in the lower third member of the Shahejie formation, Zhanhua Sag, eastern China: Evidence from gas adsorption and nuclear magnetic resonance[J]. Marine & Petroleum Geology, 2017.
59. Chen L, Jiang Z, Liu K, et al. Pore structure characterization for organic-rich Lower Silurian shale in the Upper Yangtze Platform, South China: A possible mechanism for pore development[J]. Journal of Natural Gas Science & Engineering, 2017, 46.(ESI高被引論文)
60. Chen L, Jiang Z, Liu K, et al. Application of low-pressure gas adsorption to nanopore structure characterisation of organic-rich lower Cambrian shale in the Upper Yangtze Platform, South China[J]. Australian Journal of Earth Sciences, 2017:1-13.
61. Chen Lei, Jiang Zhenxue, Liu Keyu et al. Application of Langmuir and Dubinin-Radushkevich models to estimate methane sorption capacity on two shale samples from the Upper Triassic Chang 7 Member in the southeastern Ordos Basin, China[J]. Energy Exploration & Exploitation, 2017,,35(1):122-144.
62. Chen L, Jiang Z, Liu K, et al. Relationship between pore characteristics and occurrence state of shale gas: A case study of Lower Silurian Longmaxi shale in the Upper Yangtze Platform, South China[J]. Interpretation, 2017, 5(3):1-41.
63. Chen L, Jiang Z, Liu K, et al. A Combination of N2 and CO2 Adsorption to Characterize Nanopore Structure of Organic-Rich Lower Silurian Shale in the Upper Yangtze Platform, South China: Implications for Shale Gas Sorption Capacity[J]. 地質(zhì)學(xué)報(bào):英文版, 2017, 91(4):1380-1394.
64. Wang P, Jiang Z, Yin L, et al. Lithofacies classification and its effect on pore structure of the Cambrian marine shale in the Upper Yangtze Platform, South China: Evidence from FE-SEM and gas adsorption analysis[J]. Journal of Petroleum Science & Engineering, 2017, 156:307-321.
65. Ning C, Jiang Z, Gao Z, et al. Characteristics and controlling factors of reservoir space of mudstone and shale in Es3x in the Zhanhua Sag[J]. Marine & Petroleum Geology, 2017, 88.
66. Zhang K, Jiang Z, Yin L, et al. Controlling functions of hydrothermal activity to shale gas content-taking lower Cambrian in Xiuwu Basin as an example[J]. Marine & Petroleum Geology, 2017, 85.
67. Xiong F, Jiang Z, Li, P, et al. Pore structure of transitional shales in the Ordos Basin, NW China: Effects of composition on gas storage capacity[J]. Fuel, 2017, 206:504-515.
68. Tang Xianglu, Jiang Zhenxue, Jiang Shu, et al. Effects of organic matter and mineral compositions on pore structures of shales A comparative study of lacustrine shale in Ordos Basin and Marine Shale in Sichuan Basin, China. Energy Exploration & Exploitation 2018, 36(1) 28–42.
69. Xianglu Tang, Zhenxue Jiang, Hexin Huang, et al. Lithofacies characteristics and its effect on gas storage of the Silurian Longmaxi Marine Shale in the southeast Sichuan Basin, China. Journal of Natural Gas Science and Engineering, 2016, 28: 338-346.
70. Lei Chen, Zhenxue Jiang, Keyu Liu,et al. Effect of lithofacies on gas storage capacity of marine and continental shales in the Sichuan Basin, China. Journal of Natural Gas Science and Engineering,2016,(36):773-785.(ESI高被引論文)
71. Fengyang Xiong, Zhenxue Jiang, Jianfa Chen, et al. The role of the residual bitumen in the gas storage capacity of mature lacustrine shale: A case study of the Triassic Yanchang shale, Ordos Basin, China. Marine and Petroleum Geology, 2016,,(69): 205-215.
72. Peng Li, Zhenxue Jiang, Min Zheng, et al. Estimation of shale gas adsorption capacity of the Longmaxi Formation in the Upper Yangtze Platform, China. Journal of Natural Gas Science and Engineering, 2016, 34: 034-1043.
73. Peng Li, Zhenxue Jiang, Min Zheng, et al. Prediction model for gas adsorption capacity of the Lower Ganchaigou Formation in the Qaidam Basin, China. Journal of Natural Gas Science and Engineering, 2016, 31: 493-502.
74. Pengfei Wang, Zhenxue Jiang, Wenming Ji, et al. Heterogeneity of intergranular, intraparticle and organic pores in Longmaxi shale in Sichuan Basin, South China: Evidence from SEM digital images and fractal and multifractal geometries. Marine and Petroleum Geology, 2016, 72:122-138.(ESI高被引論文)
75. Jianliang Liu, Zhenxue Jiang, Keyu Liu,et al. Hydrocarbon sources and charge history in the Southern Slope Region, Kuqa Foreland Basin, northwestern China. Marine and Petroleum Geology, 2016, 74:26-46.
76. BI He, Jiang Zhenxue, LI Jianzhong, LI Peng, CHEN Lei, PAN Qinghua, WU Yongxin. The Ono–Kondo model and an experimental study on supercritical adsorption of shale gas: A case study of on Longmaxi shale in southeastern Chongqing, China. Journal of Natural Gas Science and Engineering,2016,35:114-121.
77. Tang Xianglu, Jiang Zhenxue, Jiang Shu, et al. Effect of Organic Matter and Maturity on Pore Size Distribution and Gas Storage Capacity in High-Mature to Post-Mature Shales. Energy & fuels, 2016, 10.1021/acs.energyfuels.6b01499.
78. Tang Xianglu, Jiang Zhenxue, Jiang Shu, et al. Heterogeneous nanoporosity of the Silurian Longmaxi Formation shale gas reservoir in the Sichuan Basin using the QEMSCAN, FIB-SEM,and nano-CT methods. Marine and Petroleum Geology, 2016, 78:99-109.
79. Wang Pengfei, Jiang Zhenxue, Chen,Lei, et al. Pore structure characterization for the Longmaxi and Niutitang shales in the Upper Yangtze Platform, South China: Evidence from focused ion beam–He ion microscopy, nano-computerized tomography and gas adsorption analysis. Marine and Petroleum Geology, 2016,77:1323-1337.
80. Xianglu Tang, Zhenxue Jiang, Zhuo Li, et al. The effect of the variation in material composition on the heterogeneous pore structure of high-maturity shale of the Silurian Longmaxi formation in the southeastern Sichuan Basin, China. Journal of Natural Gas Science and Engineering, 2015, 23: 464-473.(ESI高被引論文)
81. Fengyang Xiong, Zhenxue Jiang, Xianglu Tang,et.al. Characteristics and origin of the heterogeneity of the Lower Silurian Longmaxi marine shale in southeastern Chongqing, SW China. Journal of Natural Gas Science and Engineering, 2015, doi:10.1016/j.jingse.2015.10.003.
82. Chen Lei, Jiang Zhenxue ,Ji Wenming, et al. Characterization of Microscopic Pore Structures and Its Effect on Methane Adsorption Capacity in Continental Shales. Acta Geologica Sinica (English Edition), 2015,89(s1):11-11.
83. Junqing Chen,Zhenxue Jiang,,Hong Pang,,et al.Lateral Migration of Petroleum in the Jurassic Toutunhe Formation in the Fudong Slope,Junggar Basin,,China.RESOURCE GEOLOGY,2014,,64(1):35-46.
84. Pang Xiongqi, Jiang Zhenxue, Li Zhuo, et al. A statistical method for determining the hydrocarbon accumulation coefficient and its application to assessment of hydrocarbon resources in Huanghekou Sag, Bohai Bay Basin, Eastern China. Bulletin of Canadian Petroleum Geology, 2012, 60(3): 1-9.
85. 姜振學(xué),李 鑫,,王幸蒙,等.中國南方典型頁巖孔隙特征差異及其控制因素.石油與天然氣地質(zhì),,2021,42(1):41-53
86. 姜振學(xué), 宋巖, 唐相路, 等. 中國南方海相頁巖氣差異富集的控制因素[J]. 石油勘探與開發(fā), 2020, 47(3): 1-12.
87. 姜振學(xué),李廷微,宮厚健,,等.沾化凹陷低熟頁巖儲(chǔ)層特征及其對頁巖油可動(dòng)性的影響.石油學(xué)報(bào),2020,41(12):1587-1600.
88. 姜振學(xué),唐相路,李卓,等. 川東南地區(qū)龍馬溪組頁巖孔隙結(jié)構(gòu)全孔徑表征及其對含氣性的控制. 地學(xué)前緣,2016,02:126-134.
89. 姜振學(xué),李峰,楊海軍,等.庫車坳陷迪北地區(qū)侏羅系致密儲(chǔ)層裂縫發(fā)育特征及控藏模式. 石油學(xué)報(bào),2015,S2:102-111.
90. 姜振學(xué),,龐雄奇.油氣資源評價(jià)的多參數(shù)約束改進(jìn)油氣田(藏)規(guī)模序列法及其應(yīng)用.海相油氣地質(zhì),,2009,,14(3):53-59.
91. 姜振學(xué),,龐雄奇,劉洛夫,,等.塔里木盆地志留系瀝青砂破壞烴量定量研究.中國科學(xué) D 輯:地球科學(xué),,2008,38(增刊Ⅰ):89-94.
92. 姜振學(xué),,田豐華,,夏淑華.砂體回彈物理模擬實(shí)驗(yàn).地質(zhì)學(xué)報(bào),,2007,81(2):244-249.
93. 姜振學(xué),,龐雄奇,,王顯東,等,,塔里木盆地志留系瀝青砂巖有效厚度的確定方法.地質(zhì)學(xué)報(bào),2006,,80(3):418-423.
94. 姜振學(xué),王顯東,龐雄奇,,等.塔北地區(qū)志留系典型油氣藏古油水界面恢復(fù). 地球科學(xué)-中國地質(zhì)大學(xué)學(xué)報(bào),,2006,31(2):201-206.
95. 姜振學(xué),,林世國,,龐雄奇,,等.兩種類型致密砂巖氣藏對比.石油實(shí)驗(yàn)地質(zhì).2006,28(3):210-214.
96. 姜振學(xué),,龐雄奇,,曾濺輝,,等.油氣優(yōu)勢運(yùn)移通道的類型及其物理模擬實(shí)驗(yàn)研究.地學(xué)前緣,,2005,12(4):507-516.
97. 姜振學(xué),龐雄奇,,金之鈞,,等.地層抬升過程中的砂體回彈作用及其油氣成藏效應(yīng).地球科學(xué)—中國地質(zhì)大學(xué)學(xué)報(bào),2004,,29(4):420-426.
98. 姜振學(xué),,陳冬霞,邱桂強(qiáng)等. 應(yīng)用層次分析法研究透鏡狀砂體成藏主控因素.石油勘探與開發(fā),,2003,,30(3):44-47.
99. 姜振學(xué),龐雄奇,,金之鈞,,門限控?zé)N作用及其在有效烴源巖判別中的應(yīng)用. 地球科學(xué)—中國地質(zhì)大學(xué)學(xué)報(bào). 2002,27(6):689-695.
100. 姜振學(xué),龐雄奇,,黃志龍.疊合盆地油氣運(yùn)聚期次研究方法及應(yīng)用.石油勘探與開發(fā),,2000,27(4):22-25.
101. 姜振學(xué),,龐雄奇,,張金川,等.深盆氣研究現(xiàn)狀綜述.地球科學(xué)進(jìn)展,,2000,,15(3):289-292.
102. 王高成,姜振學(xué),,佟彥明,等. 山地頁巖氣多尺度斷裂系統(tǒng)表征及應(yīng)用 ——以昭通國家級頁巖氣示范區(qū)紫金壩 YS 區(qū)塊為例.天然氣工業(yè),,2021,41(增刊):14-23
103. 周雯, 姜振學(xué), 仇恒遠(yuǎn), 等. 桂中坳陷下石炭統(tǒng)鹿寨組頁巖氣成藏條件和有利區(qū)預(yù)測[J].石油學(xué)報(bào),2019,40(07):798-812.
104. 張博, 姜振學(xué), 原園,等. 灰色關(guān)聯(lián)度分析法在篩選頁巖含氣量主控因素中的應(yīng)用[J]. 石油科學(xué)通報(bào), 2018, 3(2):134-143.
105. 王朋飛, 姜振學(xué), 韓波,等. 中國南方下寒武統(tǒng)牛蹄塘組頁巖氣高效勘探開發(fā)儲(chǔ)層地質(zhì)參數(shù)[J]. 石油學(xué)報(bào), 2018, 39(2):152-162.
106. 寧傳祥, 姜振學(xué), 高之業(yè),等. 用核磁共振和高壓壓汞定量評價(jià)儲(chǔ)層孔隙連通性——以沾化凹陷沙三下亞段為例[J]. 中國礦業(yè)大學(xué)學(xué)報(bào), 2017, 46(3):578-585.
107. 蘇思遠(yuǎn), 姜振學(xué), 寧傳祥,等. 沾化凹陷頁巖油富集可采主控因素研究[J]. 石油科學(xué)通報(bào), 2017(2):187-198.
108. 李卓, 姜振學(xué), 唐相路,等. 渝東南下志留統(tǒng)龍馬溪組頁巖巖相特征及其對孔隙結(jié)構(gòu)的控制[J]. 地球科學(xué)-中國地質(zhì)大學(xué)學(xué)報(bào), 2017, 42(7):1116-1123.
109. 原園,姜振學(xué),喻宸,等. 高豐度低演化程度湖相頁巖儲(chǔ)層特征——以柴達(dá)木盆地北緣中侏羅統(tǒng)為例. 地質(zhì)學(xué)報(bào),2016,03:541-552.
110. 唐相路,姜振學(xué),李卓,等. 渝東南地區(qū)龍馬溪組高演化頁巖微納米孔隙非均質(zhì)性及主控因素. 現(xiàn)代地質(zhì),2016,01:163-171.
111. 宋澤章,姜振學(xué),原 園,,等.“相控”測井曲線標(biāo)準(zhǔn)化的應(yīng)用— ——以鄂爾多斯盆地下寺灣地區(qū)延長組湖相泥頁巖TOC評價(jià)為例. 中國礦業(yè)大學(xué)學(xué)報(bào),,2016,45(2):283-291
112. 劉建良,姜振學(xué)、劉可禹,等.庫車前陸盆地羊塔克地區(qū)流體包裹體特征及油氣成藏過程地球科學(xué),2016,41(7):10.3799/dqkx.2016.096,EI
113. 原園,姜振學(xué),李卓,等.柴達(dá)木盆地西部地區(qū)古近系下干柴溝組咸化湖相泥頁巖儲(chǔ)集層特征. 古地理學(xué)報(bào),2015,03:381-392.
114. 陳磊,姜振學(xué),紀(jì)文明,等.川西坳陷須五段頁巖微觀孔隙結(jié)構(gòu)發(fā)育控制因素及其成藏意義. 煤炭學(xué)報(bào),2015,S2:449-457.
115. 羅梟,,姜振學(xué),,李卓,,等.英買力地區(qū)中生界—新生界油氣藏石油包裹體特征及成藏期次.石油學(xué)報(bào),,2015,,36(1):60-66.
116. 李 峰,,姜振學(xué),,李 卓,,等.庫車坳陷迪北地區(qū)下侏羅統(tǒng)天然氣富集機(jī)制. 地球科學(xué)—中國地質(zhì)大學(xué)學(xué)報(bào),,2015,40(9):1538-1548.
117. 唐相路,姜振學(xué),,張鶯鶯,,等.渝東南地區(qū)頁巖氣富集區(qū)差異性分布成因.西安石油大學(xué)學(xué)報(bào)( 自然科學(xué)版),,2015,30(3):24-35.
118. 李峰,,姜振學(xué),,李卓,,等.庫車坳陷迪那2氣藏成因類型及成藏機(jī)制.中南大學(xué)學(xué)報(bào)(自然科學(xué)版),,2015,,46(4):1345-1352.
119. 劉建良,,姜振學(xué),,劉可禹,,等.庫車前陸盆地牙哈構(gòu)造帶油氣成藏過程研究.天然氣地球科學(xué),,2015,26(1):43-53.
120. 李卓,,姜振學(xué),李峰.塔里木盆地塔中16石炭系低含油飽和度油藏成因機(jī)理.地球科學(xué)—中國地質(zhì)大學(xué)學(xué)報(bào),,2014,,39(5).557-564.
121. 龐雄奇,姜振學(xué),,黃捍東,等.疊復(fù)連續(xù)油氣藏成因機(jī)制,、發(fā)育模式及分布預(yù)測.石油學(xué)報(bào),,2014,,35(5):795-828.
122. 李卓,姜振學(xué),,龐雄奇,等.塔里木盆地庫車坳陷致密砂巖氣藏成因類型.地球科學(xué)(中國地質(zhì)大學(xué)學(xué)報(bào)),,2013,,38(1):156-164.
123. 李卓,姜振學(xué),,李峰.應(yīng)用定量顆粒熒光技術(shù)恢復(fù)塔中地區(qū)石炭系油氣充注歷史.石油學(xué)報(bào),,2013,34(3):427-434.
124. 李卓,,姜振學(xué),,李峰.古油層和殘余油層的定量顆粒熒光響應(yīng).光譜學(xué)與光譜分析,,2012,32(11):3073-3077.
125. 渠冬芳,,姜振學(xué),,劉惠民,等.關(guān)鍵成藏期碎屑巖儲(chǔ)層古孔隙度恢復(fù)方法.石油學(xué)報(bào),,2012,,33(3):404-413.
126. 李宏義,姜振學(xué),,董月霞,,等.?dāng)鄬臃忾]能力的有限性研究及模擬實(shí)驗(yàn).石油實(shí)驗(yàn)地質(zhì),2010,,32(6):583-587.
127. 田豐華,,姜振學(xué),夏淑華.砂體回彈在大慶油田形成過程中的貢獻(xiàn).中國石油大學(xué)學(xué)報(bào)(自然科學(xué)版),,2008,,32(2):16-20.
128. 田豐華,姜振學(xué).剝蝕減壓過程中的砂體回彈作用及其成藏效應(yīng)研究綜述.地質(zhì)科技情報(bào),,2008,,27(1):64-68.
129. 王顯東,姜振學(xué),,龐雄奇.塔里木盆地志留系古油藏規(guī)模探討.西南石油大學(xué)學(xué)報(bào)(自然科學(xué)版),,2008,30(3):13-16.
130. 姜福杰,,姜振學(xué),,龐雄奇.東營凹陷油氣成藏體系的劃分及定量評價(jià).地球科學(xué),2008,,33(5):651-660.
131. 田豐華,,姜振學(xué),夏淑華.砂體回彈在大慶油田形成過程中的貢獻(xiàn).中國石油大學(xué)學(xué)報(bào)(自然科學(xué)版),,2008,,32(2):16-20.
132. 李宏義,姜振學(xué),,龐雄奇,,等.柴北緣斷裂上、下盤油氣差異性聚集及成因.石油勘探與開發(fā),,2006,,33(5):586-590.
133. 李宏義,姜振學(xué),,龐雄奇,,等.柴北緣油氣運(yùn)移優(yōu)勢通道特征及其控油氣作用.地球科學(xué)-中國地質(zhì)大學(xué)學(xué)報(bào),,2006,31(2):214-220.
134. 張 洪,,姜振學(xué),龐雄奇.克拉2氣田超壓成因的物理模擬實(shí)驗(yàn)研究.石油學(xué)報(bào),,2006,,27(4):59-62.
135. 王顯東,姜振學(xué),,龐雄奇.古油氣水界面恢復(fù)方法綜述.地球科學(xué)進(jìn)展,,2003,18(3):412-419.