職 稱(chēng):教授
導(dǎo)師 資格:博導(dǎo)
所屬 部門(mén):采油所
學(xué)科 專(zhuān)業(yè):油氣田開(kāi)發(fā)工程
研究 方向:增產(chǎn)改造
聯(lián)系 方式:[email protected]
聯(lián)系 地址:610500 四川省成都市新都區(qū)新都大道8號(hào)西南石油大學(xué)國(guó)家重點(diǎn)實(shí)驗(yàn)室A307

四川省學(xué)術(shù)學(xué)科帶頭人后備人選,入選四川省杰出青年學(xué)術(shù)技術(shù)帶頭人資助計(jì)劃,“油氣藏地質(zhì)及開(kāi)發(fā)國(guó)家重點(diǎn)實(shí)驗(yàn)室”固定研究人員,教育部創(chuàng)新團(tuán)隊(duì)發(fā)展計(jì)劃“致密油氣藏增產(chǎn)改造理論與技術(shù)”(培育)學(xué)術(shù)方向帶頭人;四川省科技創(chuàng)新研究團(tuán)隊(duì)專(zhuān)項(xiàng)計(jì)劃“儲(chǔ)層增產(chǎn)改造”學(xué)術(shù)方向帶頭人。在國(guó)內(nèi)外期刊發(fā)表論文35篇,其中SCI收錄22篇,獲國(guó)家發(fā)明專(zhuān)利授權(quán)23項(xiàng);獲得省部級(jí)以上科技研究獎(jiǎng)勵(lì)5項(xiàng)。主持完成國(guó)家油氣重大專(zhuān)項(xiàng)4項(xiàng);主持和參加完成部省級(jí)科研項(xiàng)目和油田協(xié)作重大項(xiàng)目十余項(xiàng),多項(xiàng)研究成果在油田推廣應(yīng)用。
●2000.09-2003.07 南開(kāi)大學(xué),化學(xué),碩士
●2004.09-2007.07 清華大學(xué),化學(xué),博士
●2007.07-2009.12 西南石油大學(xué),講師
●2016.03-2017.03 美國(guó)密蘇里科技大學(xué)訪(fǎng)問(wèn)學(xué)者
●2010.01-2017.12 西南石油大學(xué),副研究員
●2018.01-至今 西南石油大學(xué),教授
●功能性水溶壓裂液稠化劑合成配方優(yōu)化,2020/09-2021/06,主持
●蘇里格氣田致密砂巖儲(chǔ)層改造傷害機(jī)理及治理對(duì)策研究與試驗(yàn),2020/06-2021/12,主持
●相酸體系緩速機(jī)理與性能研究,2020/06-2021/06,主持
●國(guó)家油氣重大專(zhuān)項(xiàng),解吸附劑研制及低傷害壓裂液技術(shù)研究,2016/01-2020/06,主持
●國(guó)家油氣重大專(zhuān)項(xiàng),滑溜水低吸附壓裂液和納米雜化高溫壓裂液,2016/01-2020/12,主持
●西北超深井高效鉆完井工藝技術(shù),順北定容儲(chǔ)層強(qiáng)堵強(qiáng)壓材料測(cè)試,2018/12-2019/09,主持
●四川省杰出青年學(xué)術(shù)技術(shù)帶頭人資助計(jì)劃,2016/01-2018/12
●四川省科技支撐計(jì)劃,高礦化度可回收利用滑溜水壓裂液體系研究及現(xiàn)場(chǎng)試驗(yàn),2015/01-2017/12,主持
(1)文章
●Liu J W,Wang S B,He L,et al. Preparation and properties of nano-silica hybrid hydrophobic associated polyacrylamide for polymer flooding[J]. Journal of Petroleum Science and Engineering,2022,208(PB).
●Zhao F,Wang S B,Guo J C. Experimental and molecular dynamics simulation study on the effects of the carbon chain length of gemini surfactants on the inhibition of the acid-rock reaction rate[J]. Langmuir:the ACS journal of surfaces and colloids,2021,37(17).
●Shen X,Wang S B,Guo J C,et al. Effect of carbon chain lengths of cationic surfactant on inhibition rate of acid-rock reactioncc[J]. Journal of Petroleum Science and Engineering,2021,196.
●Liu J W,Wang S B,Wang C,et al. Influence of nanomaterial morphology of guar-gum fracturing fluid,physical and mechanical properties[J]. Carbohydrate polymers,2020,115915.
●Zhao F,Wang S B,Shen X,et al. Study on mechanism of Gemini surfactant inhibiting acid rock reaction rate[J]. Colloids and Surfaces A:Physicochemical and Engineering Aspects,2019,578.
●Li Y,Wang S B,Guo J C,et al. Reducing adsorption of hydroxypropyl guar gum on sandstone by silicon nanoparticles[J]. Carbohydrate Polymers,2019,219.
●Chen R Y,Wang S B,Shen X,et al. Effect of Ca2+ on viscosity and microstructure of water-soluble triblock terpolymer used as thicker in the hydraulic fracturing[J]. Journal of Applied Polymer Science,2019,136(20):47539.
●Guo J C,Ren J C,Wang S B,et al. Comprehensive study of fracture flow characteristic and feasibility of hybrid volume stimulation technique in tight fractured carbonate gas reservoir[J]. Journal of Petroleum Science and Engineering,2019,174.
●Li Y,Guo J C, Wang S B. The damage mechanisms of fracturing fluid on production in tight gas reservoirs[J]. Energy Procedia,2019,158.
●Wang S B,Chen F H,Guo J C,et al. Adsorption damage of hydroxypropyl guar gum to porous media composed of quartz[J]. Journal of Petroleum Science and Engineering,2019,182(C).
●Li Y,Wang S B,Guo J C,et al. Reduced adsorption of polyacrylamide‐based fracturing fluid on shale rock using urea[J]. Energy Science & Engineering,2018,6(6).
●Wang S,Zhang D,Guo J,et al. Experiment and analysis of the reaction kinetics of temperature control viscosity acids with limestone[J].Journal of Petroleum ence & Engineering,2018:S092041051830127X.
●Aliu AO,Guo J C,Wang S B. Quantifying regain conductivity in proppant packs using broken Na-CMC fracture fluid[J]. Journal of Natural Gas Science and Engineering,2017:S1875510017302962.
●Wang S B,Li G,Li Y,et al. Adsorption of new hydrophobic polyacrylamide on the calcite surface[J]. Journal of Applied Polymer Science,2017,134(38):4.
●Aliu AO,Guo J C,Wang S B. Hydraulic fracture fluid for gas reservoirs in petroleum engineering applications using sodium carboxy methyl cellulose as gelling agent[J]. Journal of Natural Gas ence and Engineering,2016:491-500.
●Wang S B,Tang H B,Guo J C,et al. Effect of pH on the rheological properties of borate crosslinked hydroxypropyl guar gum hydrogel and hydroxypropyl guar gum[J]. Carbohydrate Polymers,2016,147:455-463.
●Wang S,Yang R,Guo J,et al. Phenothiazine organic dyes with the cone-shaped structural:Broad photoresponse and limitations on short-circuit photocurrent density in dye-sensitized solar cells[J]. Synthetic Metals,2016,215:184-193.
●Wang S B,He L,Guo J C,et al. Intrinsic viscosity and rheological properties of natural and substituted guar gums in seawater[J]. International Journal of Biological Macromolecule,2015,76.
●Wang S B,Zhang Y Y,Guo J C,et al. A study of relation between suspension behavior and microstructure and viscoelastic property of guar gum fracturing fluid[J]. Journal of Petroleum Science and Engineering,2014,124:32-435.
●Wang S B,Wang H,Guo J C,et al. Influence of the terminal electron donor in DeDepe Aphenothiazine dyes for dye-sensitized solar cells[J]. Dyes & Pigments,2014,109:96-104.
●Wang S B,Guo J C,He L,et al. Influence of thiophene and benzene unit in triphenylamine dyes on the performance of dye-sensitized solar cells[J]. Synthetic Metals,2013,168(Complete):1-8.
●Wang S B,Guo J C,Yan D,et al. Efficient triphenylamine photosensitizers with alkoxy-or fluorine-substituted phenylene spacer for dye-sensitized solar cells[J]. Journal of Materials Science,2012,47(4):1843-1851.
●易輝永,王世彬,李帥帥,等.纖維素納米晶雜化壓裂液的流變性能[J].油田化學(xué),2021,38(02):230-234.DOI:10.19346/j.cnki.1000-4092.2021.02.007.
●郭建春,李楊,王世彬.氫鍵抑制方法減少瓜爾膠壓裂液對(duì)砂巖儲(chǔ)層的吸附傷害[J].天然氣工業(yè),2019,39(07):57-62.
●李楊,郭建春,王世彬,等.耐高溫壓裂液研究現(xiàn)狀與發(fā)展趨勢(shì)[J].現(xiàn)代化工,2019,39(S1):95-98.DOI:10.16606/j.cnki.issn0253-4320.2019.S.020.
●申鑫,王世彬,張永春,等.陽(yáng)離子表面活性劑的碳鏈長(zhǎng)度對(duì)緩速性能影響[J].油田化學(xué),2018,35(4):643-647+664.DOI:10.19346/j.cnki.1000-4092.2018.04.015.
●李楊,郭建春,王世彬,等.低傷害壓裂液研究現(xiàn)狀及發(fā)展趨勢(shì)[J].現(xiàn)代化工,2018,38(9):20-22+24.DOI:10.16606/j.cnki.issn0253-4320.2018.09.005.
●王川,王世彬,郭建春.納米陶粉對(duì)胍膠壓裂液性能的影響[J].油田化學(xué),2018,35(01):31-35. DOI:10.19346/j.cnki.1000-4092.2018.01.006.
●郭建春,李楊,王世彬.滑溜水在頁(yè)巖儲(chǔ)集層的吸附傷害及控制措施[J].石油勘探與開(kāi)發(fā),2018,45(2):320-325.
●王坤杰,王世彬,郭建春.準(zhǔn)噶爾盆地儲(chǔ)集層各向異性特征及破裂壓力預(yù)測(cè)研究[J].鉆采工藝,2017,40(4):32-35+3.
●唐洪彪,王世彬,郭建春. pH值對(duì)羥丙基胍膠壓裂液性能的影響[J].油田化學(xué),2016,33(2):4.
●王世彬,王浩儒,郭建春,等.砂巖儲(chǔ)層酸化自轉(zhuǎn)向酸研究與應(yīng)用[J].油田化學(xué),2015,32(4):490-493. DOI:10.19346/j.cnki.1000-4092.2015.04.004.
●何樂(lè),王世彬,郭建春,等.高礦化度水基壓裂液技術(shù)研究進(jìn)展[J].油田化學(xué),2015,32(4):621-627.DOI:10.19346/j.cnki.1000-4092.2015.04.032.
●莊園,王世彬,郭建春.提高均質(zhì)致密碳酸鹽巖儲(chǔ)層酸蝕裂縫導(dǎo)流能力效果研究[J].科學(xué)技術(shù)與工程,2014,14(20):35-38.
●王浩儒,王世彬,郭建春.自轉(zhuǎn)向土酸在青海油田儲(chǔ)層改造中的應(yīng)用[J].科學(xué)技術(shù)與工程,2014,14(15):177-180.
●張德政,王世彬,郭建春.考慮冪律特性的膠凝酸酸巖反應(yīng)動(dòng)力學(xué)研究[J].石油天然氣學(xué)報(bào),2014,36(11):192-196+11.
●王恒,王世彬,郭建春,等.酸壓濾失體積表征與計(jì)算方法研究[J].斷塊油氣田,2014,21(2):266-268.
●王世彬,張藝耀,郭建春,等.酶降解制備小分子瓜爾膠[J].油田化學(xué),2014,31(2):195-198.DOI:10.19346/j.cnki.1000-4092.2014.02.009.
●何樂(lè),王世彬,郭建春,等.海水中瓜爾膠溶脹性能研究[J].油田化學(xué),2014,31(2):207-210.DOI:10.19346/j.cnki.1000-4092.2014.02.012.
●蔣淮宇,王世彬,郭建春,等.提高低溫條件下過(guò)硫酸銨分解速率的方法[J].鉆井液與完井液,2012,29(1):2.
(2)專(zhuān)利
●王世彬,胡鵬,石磊,等.一種適用于二次壓裂的水溶性暫堵劑及其制備方法:110283578B[P].2021-10-01.
●管保山,王世彬,許可,等.一種耐高溫碳納米管雜化壓裂液及其制備方法:113265234A[P].2021-08-17.
●管保山,王世彬,許可,等.一種改性氧化石墨烯雜化瓜爾膠壓裂液體系及其制備方法:113265235A[P].2021-08-17.
●王世彬,劉成城,石朋,等.一種固體緩速酸的注入方法:111364964B[P].2020-09-25.
●王世彬,高楊,徐兵威,等.一體化壓裂施工中稠化劑的添加方法:111287719A[P].2020-06-16.
●王世彬,王志,石朋,等.一種用于連續(xù)施工的稠化劑乳液的制備方法及其使用方法:111234797A[P].2020-06-05.
●王世彬,劉成城,易輝永,等.一種纖維素納米晶雜化的壓裂液及其配制方法:111205848A[P].2020-05-29.
●王世彬,李楊,郭建春,等.一種低吸附傷害滑溜水體系:108865105B[P].2019-06-14.
●王世彬,趙峰,郭建春,等.用于低滲透碳酸鹽巖儲(chǔ)層酸化的緩速酸體系及其制備方法:109554174A[P].2019-04-02.
●王世彬,石磊,李楊,等.一種納米粒子復(fù)合高溫瓜膠壓裂液:109097019A[P].2018-12-28.
●李楊,郭建春,王世彬,等.一種致密砂巖儲(chǔ)層胍膠壓裂液吸附傷害實(shí)驗(yàn)評(píng)價(jià)裝置:207703850U[P].2018-08-07.
●王世彬,易輝永,李楊,等.一種降低胍膠壓裂液在砂巖儲(chǔ)層傷害的解除劑:108084984A[P].2018-05-29.
●王川,王世彬.一種具有液體預(yù)混合功能的粘附系數(shù)測(cè)定儀:207007644U[P].2018-02-13.
●王世彬,李楊,郭建春,等.一種控制水力壓裂裂縫延伸下端高度的導(dǎo)向劑:107629781A[P]. 2018-01-26.
●王世彬,趙峰,郭建春,等.一種控制水力裂縫延伸高度的方法:107503725A[P].2017-12-22.
●王世彬,陳付虎,郭建春,等.一種碳納米管摻雜的壓裂液體系:106433603A[P].2017-02-22.
●王世彬,郭建春,李泰良,等.一種解除鉆井液加重劑堵塞的清除液:104073229A[P].2014-10-01.
●王世彬,郭建春,賴(lài)杰,等.一種適用于高礦化度水壓裂液的交聯(lián)劑:103497753A[P].2014-01-08.
●王世彬,郭建春,張藝耀,等.一種適用于140-180℃地層酸化的緩蝕劑:102827596A[P].2012-12-19.
●王世彬,郭建春,鄧燕.一種用于壓裂酸化作業(yè)的快速破乳劑及其制備方法:102250608A[P].2011-11-23.
(3)獲獎(jiǎng)
●全國(guó)“互聯(lián)網(wǎng)+”學(xué)生創(chuàng)新創(chuàng)業(yè)大賽,銅獎(jiǎng),2020
●四川省“互聯(lián)網(wǎng)+”學(xué)生創(chuàng)新創(chuàng)業(yè)大賽,金獎(jiǎng),2019
●四川省科技進(jìn)步一等獎(jiǎng),致密氣藏水平井多裂縫滲流與精細(xì)分段壓裂關(guān)鍵技術(shù)及推廣應(yīng)用,2014
●中國(guó)石油和化學(xué)工業(yè)聯(lián)合會(huì)技術(shù)發(fā)明一等獎(jiǎng),高溫深層油氣藏支撐劑高效鋪置壓裂技術(shù)與應(yīng)用,2013
●中國(guó)專(zhuān)利優(yōu)秀獎(jiǎng),適用于160℃-200℃地層加砂壓裂的交聯(lián)劑,2012
研究方向?yàn)橛蜌馓镌霎a(chǎn)改造工作液與工藝。針對(duì)增產(chǎn)改造過(guò)程入井液與巖石作用問(wèn)題,研究新型的入井流體,優(yōu)化入井流體的性能,為解決增產(chǎn)改造中的各種難題提出針對(duì)性強(qiáng)、創(chuàng)造性強(qiáng)和應(yīng)用效果顯著的入井液體系和配套工藝技術(shù)。
研究團(tuán)隊(duì)為壓裂酸化創(chuàng)新團(tuán)隊(duì),是西南石油大學(xué)壓裂酸化方向的核心研究力量,目前擁有骨干研究人員8人(全部擁有博士學(xué)位)。本團(tuán)隊(duì)始終站在學(xué)科發(fā)展的前沿,立足于為我國(guó)復(fù)雜油氣藏的儲(chǔ)層改造提供全面系統(tǒng)的理論和技術(shù)支持,取得了一系列創(chuàng)新性研究成果,在我國(guó)環(huán)渤海灣盆地、塔里木盆地、四川盆地、冀中凹陷和鄂爾多斯盆地等油氣區(qū)塊得到推廣應(yīng)用,成果應(yīng)用解決了國(guó)內(nèi)復(fù)雜油氣藏改造所遇到的一系列關(guān)鍵技術(shù)難題,應(yīng)用效果良好,產(chǎn)生經(jīng)濟(jì)效應(yīng)顯著。