
性別: 男
職稱: 研究員
職務(wù): 湖北省環(huán)境巖土工程重點實驗室副主任
學(xué)歷: 博士研究生
電話:
傳真:
電子郵件: bbai@whrsm.ac.cn
通訊地址:
湖北省武漢市武昌區(qū)水果湖街小洪山2號 中國科學(xué)院武漢巖土力學(xué)研究所

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白冰,男,1980年生,江蘇徐州睢寧人,博士,中國科學(xué)院武漢巖土力學(xué)研究所 研究員、博士/碩士生導(dǎo)師,環(huán)境巖土工程湖北省重點實驗室副主任。自2003年以來長期從事碳中和(能源巖土工程與干熱巖深部地?zé)衢_發(fā)、CO2等廢棄物處置利用等)研究工作,曾赴美國洛斯阿拉莫斯國家實驗室(LANL)開展CCUS合作研究。主持國家自然科學(xué)基金項目4項,曾主持或參與國家863計劃、國家科技支撐計劃、科技部國際合作項目、國土資源部公益性項目以及重要工程項目的課題/專題研究,曾獲省科技進(jìn)步一等獎一項。
2011至今,中國科學(xué)院武漢巖土力學(xué)研究所 助理研究員、副研究員、研究員(其間,2017.2-2018.3掛職任貴州省六盤水市市政府黨組成員、市長助理)
2008-2010,中南大學(xué) 資源與安全工程學(xué)院 城市地下空間工程 講師
2003-2008,中國科學(xué)院武漢巖土力學(xué)研究所 巖土工程 博士
1999-2003,中南大學(xué) 資源環(huán)境與建筑工程學(xué)院--土木工程學(xué)院 土木工程 本科
更多信息請參見:https://people.ucas.ac.cn/~baibing
碳中和巖土力學(xué)與工程(CO2地質(zhì)封存、干熱巖深部地?zé)帷⑷斯ぴ焱良吧鷳B(tài)巖土工程)
中國地球物理學(xué)會地?zé)釋I(yè)委員會副秘書長,中國可再生能源學(xué)會地?zé)釋N瘯瘑T,國家自然科學(xué)基金多個學(xué)科通訊評委,CO2地質(zhì)封存、地?zé)釋W(xué)以及巖土力學(xué)與工程領(lǐng)域多個國內(nèi)外著名期刊審稿專家。
1. 國家自然科學(xué)基金聯(lián)合基金重點項目:CO2大規(guī)模封存泄漏規(guī)律及其與水土環(huán)境互饋機制研究,項目負(fù)責(zé)人,2024-2027.
2. 國家自然科學(xué)基金面上項目,干熱巖井-縫聯(lián)絡(luò)型EGS系統(tǒng)變頻壓裂成縫規(guī)律研究,項目負(fù)責(zé)人,2020-2023.
3. 國家自然科學(xué)基金面上項目,超臨界CO2強化采熱中的流動換熱及其誘發(fā)斷裂滑動機制研究,項目負(fù)責(zé)人,2017-2021.
4. 國家自然科學(xué)基金青年項目,考慮CO2入滲超壓影響的砂巖破裂壓及強度特性研究,項目負(fù)責(zé)人,2012-2014.
5. 國家科技支撐計劃項目,CO2驅(qū)封存安全性評價技術(shù)(子課題),負(fù)責(zé)人,2012-2015.
6. 科技部國際合作項目,新型結(jié)合增強地?zé)嵯到y(tǒng)的大規(guī)模CO2利用與封存技術(shù)研究,課題負(fù)責(zé)人,2012-2014.
7. 原國土資源部公益性項目,二氧化碳地質(zhì)儲存灌注控制與場地安全性關(guān)鍵問題研究(子課題),子課題負(fù)責(zé)人,2012-2014.
8. 中核委托項目,川藏地區(qū)地?zé)崃黧w防垢除垢和中低溫回灌堵塞機理研究,項目負(fù)責(zé)人(雷宏武為共同負(fù)責(zé)人),2020-2021.
9. 中國地質(zhì)調(diào)查局地質(zhì)調(diào)查項目委托業(yè)務(wù)項目,干熱巖試采壓裂誘發(fā)地震研究(所屬二級項目:青海共和盆地干熱巖調(diào)查評價與勘查示范),項目負(fù)責(zé)人,2019.
10. 中國地質(zhì)調(diào)查局地質(zhì)調(diào)查項目委托業(yè)務(wù)項目,干熱巖水力壓裂誘發(fā)地震風(fēng)險評價與管控(所屬二級項目:青海共和盆地干熱巖調(diào)查評價與勘查示范),執(zhí)行負(fù)責(zé)人,2020.
11. 中石化勝利油田委托項目,高89-樊142地區(qū)沙四段特低滲透油藏斷層封堵性研究,執(zhí)行負(fù)責(zé)人,2014-2015.
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【干熱巖深部地?zé)帷?/span>
[1]?Bing Bai, Yuanyuan He, XiaochunLi, Jun Li, Xiaoxue Huang, Jialing Zhu. Experimental and analytical study of the overall heat transfer coefficient of water flowing through a single fracture in a granite core, Applied Thermal Engineering,2017.
[2]?Bing Bai,Yuanyuan He, Shaobin Hu, Xiaochun Li. An Analytical Method for Determining the Convection Heat Transfer Coefficient Between Flowing Fluid and Rock Fracture Walls, Rock Mechanics and Rock Engineering, 2017.??
[3]?Bing Bai,Yuanyuan He, XiaochunLi. Numerical study on the heat transfer characteristics between supercritical carbon dioxide and granite fracture wall. Geothermics.2018.?
[4]?Bai B, He Y, Li X, Hu S, Huang X, Li J, et al. Local heat transfer characteristics of water flowing through a single fracture within a cylindrical granite specimen. Environmental Earth Sciences. 2016.
[5] Yuanyuan He,Bing Bai(通訊), et al. Effects of surface roughness on the heat transfer characteristics of water flow through a single granite fracture. Computers and Geotechnics, 2016.
[6] Yuanyuan He,Bing Bai(通訊), Xiaochun Li. Comparative Investigation on the Heat Transfer Characteristics of Gaseous CO2 and Gaseous Water Flowing Through a Single Granite Fracture. International Journal of Thermophysics, 2017.
[7] He Y ,Bai B (通訊), Li X . Investigation on Heat Transfer Properties of Supercritical Water in a Rock Fracture for Enhanced Geothermal Systems. International Journal of Thermophysics, 2018, 39(12).
[8] Jiang, Y., Yao, H., Cui, Y. ,Bai,B(通訊).,?et al.?Evaluative Analysis of Formulas of Heat Transfer Coefficient of Rock Fracture.?Int J Thermophys?41,?104 (2020).
[9] He Y ,Bai B(通訊), Cui Y , et al. 3D Numerical Modeling of Water–Rock Coupling Heat Transfer Within a Single Fracture[J]. International Journal of Thermophysics, 2020, 41(9).
[10] 雷宏武,白冰,崔銀祥,謝迎春,李進(jìn),侯學(xué)文.高溫地?zé)嵘a(chǎn)井碳酸鈣結(jié)垢定量評價:水文地球化學(xué)——以西藏羊八井為例.地球科學(xué).
[11] 雷宏武,白冰,崔銀祥,謝迎春,李進(jìn),侯學(xué)文.高溫地?zé)嵘a(chǎn)井碳酸鈣結(jié)垢定量評價:兩相流動——以西藏羊八井為例.地球科學(xué).
[12] 劉文廷,韓愛果,白冰,何媛媛,崔銀祥,雷宏武,秦劍橋.基于數(shù)值實驗的干熱巖裂隙對流換熱系數(shù)研究.成都理工大學(xué)學(xué)報, 2022,(03).
[13] 徐辰宇,白冰,劉明澤.注CO2條件下花崗巖破裂特征的試驗研究.巖土力學(xué),2019,(04).
[14] 朱家玲,張國偉,李君,白冰.裂隙通道內(nèi)流固換熱系數(shù)解析解及敏感性分析.太陽能學(xué)報,2016,(08).
[15] 胡啟芳,白冰,李小春,袁玉萍.福建省增強地?zé)嵯到y(tǒng)CO2封存容量的估算.資源與產(chǎn)業(yè),2015,(05).
[16] 黃永輝,雷宏武,白冰,崔銀祥,陸仁超,龐忠和.多場耦合模擬技術(shù)及其在地?zé)衢_采安全性評價中的應(yīng)用.科技促進(jìn)發(fā)展,2020.
【CO2地質(zhì)封存利用-CCUS】
[17]?Bing Bai, Xiaochun Li, Haiqing Wu, Yongsheng Wang, Mingze Liu. A methodology for designing maximum allowable wellhead pressure for CO2 injection: application to the Shenhua CCS demonstration project, China. Greenhouse Gas: Science and Technology, 2016.
[18]?Bai, Bing, Xiaochun Li, Yuping Yuan, Di Zhou and Pengchun Li. “Preliminary assessment of CO2 transport and storage costs of promising source–sink matching scenarios in Guangdong province, China”,2014.
[19]?Bing Bai, Hu Q ,Li Z , et al. Evaluating the Sealing Effectiveness of a Caprock-Fault System for CO 2 -EOR Storage: A Case Study of the Shengli Oilfield[J]. Geofluids, 2017.
[20] Bai, Bing, Xiaochun Li, Yuping Yuan, Di Zhou and Pengchun Li. “Preliminary assessment of CO2 transport and storage costs of promising source–sink matching scenarios in Guangdong province, China.”?Acta Geotechnica?,2014.
[21]?Bai B, G Lü,? Li X , et al. Quantitative Measures for Characterizing the Sealing Ability of Caprock with Pore Networks in CO2 Geological Storage[J]. ENERGY PROCEDIA, 2014.
[22]?Bai B,Li X ,Yuan Y . A New Cost Estimate Methodology for Onshore Pipeline Transport of CO2 in China[J]. Energy Procedia, 2013, 37.
[23] Lu S ,Bing B,Wu H , et al. Evaluating Reservoir Risks and Their Influencing Factors during CO 2 Injection into Multilayered Reservoirs[J]. Geofluids,2017.
[24] Wu Haiqing,?Bai Bing (通訊), Li Xiaochun. An advanced analytical solution for pressure build-up during CO2 injection into infinite saline aquifers: The role of compressibility. Advances in Water Resources.2018.
[25] Wu H ,?Bai B (通訊),? Li X , et al. An explicit integral solution for pressure build-up during CO2 injection into infinite saline aquifers. Greenhouse Gases: Science and Technology, 2016.
[26] Wu H ,?Bai B?,Li X , et al. An explicit finite difference model for prediction of wellbore pressure and temperature distribution in CO2 geological sequestration. Greenhouse Gases Science & Technology, 2017.
[27] Wang L,Bai B(通訊),Li X , et al. An Analytical Model for Assessing Stability of Pre-Existing Faults in Caprock Caused by Fluid Injection and Extraction in a Reservoir. Rock Mechanics & Rock Engineering, 2016.
[28] Liu M ,Bai B(通訊), Li X . Experimental studies on the short term effect of CO2 on the tensile failure of sandstone[J]. Energy Procedia, 2014.
[29] Zhang, Qiang, Xiaochun Li,?Bing Bai (通訊), Shaobin Hu and Lu Shi. “Effect of Pore Fluid Pressure on the Normal Deformation of a Matched Granite Joint.”?Processes,2018.
[30] Xie, H., Li, X., Fang, Z.?et al.?Carbon geological utilization and storage in China: current status and perspectives.?Act Geotech.,2014. https://doi.org/10.1007/s11440-013-0277-9.
[31] Diao Y, Zhu G , Li X ,Bai B,et al. Characterizing CO2 plume migration in multi-layer reservoirs with strong heterogeneity and low permeability using time-lapse 2D VSP technology and numerical simulation. International Journal of Greenhouse Gas Control, 2020,.
[32]?白冰, 李小春, 劉明澤, et al. A fast explicit finite difference method for determination of wellhead injection pressure. 中南大學(xué)學(xué)報, 2012.
[33]?白冰,李小春,劉延鋒,張勇.中國CO2集中排放源調(diào)查及其分布特征.巖石力學(xué)與工程學(xué)報,2006.
[34]?白冰,李小春,劉延鋒,張勇.CO2驅(qū)煤層氣中煤層膨脹對套管穩(wěn)定性的影響.巖土力學(xué),2006.
[35] 伍海清,白冰(通訊),李小春,劉明澤,何媛媛.CO2地質(zhì)封存中儲層流體壓力演化規(guī)律的解析模型.巖土力學(xué),2018.
[36] 劉明澤,白冰(通訊),李小春,高帥,王磊,伍海清.CO2–水兩相條件下砂巖致裂特征與有效應(yīng)力模型的試驗研究.巖石力學(xué)與工程學(xué)報,2016.
[37] 孔維鐘,白冰,李小春.CO2咸水層封存中組合蓋層密封效果的影響因素.交通科學(xué)與工程,2015.
[38] 孔維鐘,白冰,李小春,魏寧.CO2咸水層封存中組合蓋層的密封效果研究.巖石力學(xué)與工程學(xué)報,2015.
[39] 伍海清,白冰,劉明澤,李小春,王磊.估算二氧化碳井筒壓力的等效密度法.特種油氣藏,2015.
[40] 孔維鐘,白冰,李小春.組合蓋層中垂向貫穿斷層對儲層內(nèi)CO2密封效果的影響.水電能源科學(xué),2014.
[41] 李小春,劉延鋒,白冰,方志明.中國深部咸水含水層CO2儲存優(yōu)先區(qū)域選擇.巖石力學(xué)與工程學(xué)報,2006.
[42] 劉延鋒,李小春,白冰.中國CO2煤層儲存容量初步評價.巖石力學(xué)與工程學(xué)報,2005.
【巖土力學(xué)與數(shù)值解析方法】
[43]Huiling Ci,?Wei Wang,?Lu Shi,?Bing Bai,?Lei Wang,?Jianfeng Liu,?and?Yun Jia. An Integral-Generalized Finite Difference Method for Interface Problems in Solid Mechanics. International Journal of Applied MechanicsVol. 16, No. 01, 2450001 (2024).
[44]Ci, H.,?Bai, B.(通訊), Zou, Y., Lei, H., & Cui, Y. . A novel boundary tracing method without enrichment for modeling cracks and their propagation. Theoretical and Applied Fracture Mechanics,2023.
[45]?Bai B,?Ci H ,?Lei H , et al. A local integral-generalized finite difference method with mesh-meshless duality and its application. Engineering Analysis with Boundary Elements, 2022.
[46]?Bai B,? Xu C ,? Liu M , et al. A Hydro-fracturing Tester for Rock Saturated with Controlled Two-Phase Pore Fluids. Rock Mechanics and Rock Engineering, 2019.
[47] 白冰, 袁維, 李小春, et al. A new double reduction method for slope stability analysis. 中南大學(xué)學(xué)報:英文版, 2014.
[48] Liu M,?Bai B,?Li X , et al. Assessing the applicability of unsaturated effective stress models to tensile fracturing of sandstone in CO2 -water two-phase fluids. Greenhouse Gases: Science and Technology,2016.
[49] Chen Q,Bai B,Wang H , et al. Dissipated Energy as the Evaluation Index for the Double Reduction Method. International Journal of Geomechanics, 2021.
[50] 次惠嶺,白冰(通訊),雷宏武,崔銀祥.有限單元內(nèi)部場量的高精度求解.巖土力學(xué),2021.
[51]?白冰,袁維,石露,李君,李小春.一種雙折減法與經(jīng)典強度折減法的關(guān)系.巖土力學(xué),2015.
[52 Yuan W,?Bai B(通訊),Xiao-Chun L I , et al. A strength reduction method based on double reduction parameters and its application. 中南大學(xué)學(xué)報:英文版, 2013.
[53]?白冰,李小春,唐禮忠.應(yīng)力–應(yīng)變曲線初始屈服的一個新定義及其應(yīng)用.巖石力學(xué)與工程學(xué)報, 2010.
[54]?白冰,李小春,石露,杜學(xué)飛. 一族線性屈服破壞函數(shù)對應(yīng)的耗散勢.巖土力學(xué), 2008(05).
[55] 徐辰宇,白冰(通訊),劉明澤.注CO2條件下花崗巖破裂特征的試驗研究.巖土力學(xué), 2019.
[56]?白冰,李小春,石露,唐禮忠.彈塑性應(yīng)力-應(yīng)變曲線的斜率恒等式及其驗證和應(yīng)用.巖土力學(xué),2010.
[57]?白冰,李小春,劉延鋒,方志明,王偉.CO2-ECBM中氣固作用對煤體應(yīng)力和強度的影響分析.巖土力學(xué),2007.
[58]?白冰,李小春.濕度應(yīng)力場理論的證明.巖土力學(xué),2007.
[59]?白冰,李小春,石露,姚華彥.對彈性靜力學(xué)中外力功表達(dá)式及相關(guān)問題的探討.力學(xué)與實踐,2011.
[60] 李小春,白冰,唐禮忠,郭群.較低和較高圍壓下煤巖三軸試驗及其塑性特征新表述.巖土力學(xué),2010.
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湖北省科技進(jìn)步一等獎(2017);
2022年度全國顛覆式技術(shù)創(chuàng)新大賽領(lǐng)域賽優(yōu)秀獎;
2022年“華清杯”全國CCUS創(chuàng)新創(chuàng)意賽二等獎(指導(dǎo)教師)