[1] Cai Can, Zeng qi, Et al., Investigation on rock-breaking and debris transport of high-pressure water jet drilling using the discrete element method (DEM),Geoenergy Science and Engineering, 2025,249,:213750.(中科院工程大類(lèi)2區(qū),石油TOP); [2] Cai Can, Cao Wenyang, et al., Rock Breakage and Temperature Rising of Rock Cutting after High Temperature Treatment, Petroleum Science, 2025,22(3):1289-1306.;(中科院工程大類(lèi)1區(qū)) [3] Can Cai, Shengwen Zhou, et al., Rock-breaking Enhancement Mechanism of Supercritical CO2 Jet Drilling based on Fluid-Solid Coupling Method and Physical Experiments,International Journal of Oil Gas and Coal Technology, 2025(1): 275-300; [4] Can Cai, Wenyang Cao, et al. Study on Composite Rock-Breaking Mechanism of Ultrahigh-Pressure Water Jet–PDC Cutter /SPE Journal/2024 Vol.29/工程技術(shù)2區(qū); [5] Can Cai, Quangong Xie, et al., Investigation on Rock-breaking and Debris Flow of High-pressure CO2 Jet Drilling Using Discrete Element Methods (DEM), Geothermics, 2024.01, GEOT_102936. [6] Can Cai*, Pei Zhang, et al., Rock breakage and temperature variation of naturally worn PDC tooth during cutting of hard rock and soft rock, Journal of Petroleum Science and Engineering, 2023,229: 212042.(中科院工程大類(lèi)2區(qū),石油TOP) [7] Can Cai*, Xie Quangong, Liehui Zhang, Yulong Zhang,et al., The Thermal-Fluid-Mechanical (TFM) Coupling Method based on Discrete Element Method (DEM) and the Application of CO2 Fracturing Analysis, Geoenergy Science and Engineering, 2024,232,Part A:212443. [8] Can Cai*, Pei Zhang,Daping Xue, Xianpeng Yang,Yingfang Zhou. Composite rock-breaking of high-pressure CO2 jet & polycrystalline-diamond-compact (PDC) cutter using a coupled SPH/FEM Model, International Journal of Mining Science and Technology, 2022,32 (5), 1115-1124 (中科院SCI工程技術(shù)1區(qū),TOP) [9] Xian-Peng Yang, Can Cai*, Xiao-Hua Chen, Pei Zhang, Xin Zeng, Chi Peng, Ying-Fang Zhou, Theoretical Calculation of High-Pressure CO2 Jet under Composite Rock-Breaking Based on Span-Wagner State Equation, Journal of Hydrodynamic, 2022,34 (5), 948-964 ( 中科院工程3區(qū)). [10] Can CAI, Xian-Peng YANG*, Cao GAO, Zhi-Cheng PU, Pei ZHANG, Zheng-Bo TAN . Intense Cooling during Composite Rock Breaking of High-Pressure CO2 Jet-Polycrystalline Diamond Cutter, SPE Journal,2022, 27 (04): 2525–2540. Paper Number: SPE-209603-PA. (SCI石油Top) [11] Can Cai*, Bang-run Li, Yi-yao Zhang et al., Fracture propagation and the Induced Strain Response during Supercritical CO2 Jet Fracturing[J], Petroleum Science, 2022,19(4),1682-1699. (中科院工程大類(lèi)1區(qū),石油TOP) [12] Cai C*, Xie S, Liu Q, Kang Y, Lian D, Li B. The Flow Characteristics of Supercritical Carbon Dioxide (SC-CO2) Jet Fracturing in Limited Perforation Scenarios[J]. Energies. 2020 Jan;13(10):2627. (SCI, 中科院大類(lèi)3區(qū)) [13] Can Cai*, Yong Kang, Yingxin Yang, Xiaochuan Wang, Yang Li, Man Huang, Jiwei Wu, The Effect of Shale Bedding on Supercritical CO2 Jet Fracturing: A Experimental Study[J], Journal of Petroleum Science and Engineering, 2020, 195, 107798. (石油1區(qū) Top, 中科院大類(lèi)2區(qū)) [14] Can Cai*, Yong Kang, Yinxin Yang, Feilong Liao, Yunfei Chen, Man Huang, Hao Chen, Experimental Investigation on Flow Field and Induced Strain Response During SC-CO2 Jet Fracturing[J], Journal of Petroleum Science and Engineering, 2020, 195, 107795. (石油Top, 中科院2區(qū)) [15] Cai Can, Yong Kang*, Xiaochuan Wang, Yi Hu, Man Huang, Yiwei Liu, Jiawei Liu, Hao Chen, Xiaohong Li, Experimental Study on Shale Fracturing Enhancement by Using Multi-times Pulse Supercritical Carbon Dioxide (SC-CO2) Jet. Journal of Petroleum Science and Engineering, 2019, 178C: 948-963. (石油1區(qū) Top, 中科院大類(lèi)3區(qū)) [16] Cai Can, Wang Xiao-chuan*, Yuan Xiao-hong, Kang Yong, Wang Zefeng, Huang Man, Chen Hao, Experimental Investigation on Perforation of Chinese Shale with Ultra-High Pressure Abrasive Water Jet: Shape, Mechanism and Sensitivity, Journal of Natural Gas Science and Engineering, 2019, 67: 196-213. (中科院大類(lèi)2區(qū)) [17]Cai C, Kang Y*, Wang X, Hu Y, Chen H, Yuan X, Cai Y, Mechanism of supercritical carbon dioxide (SC-CO2) hydro-jet fracturing[J]. Journal of CO2 Utilization, 2018, 26:575–587. (被引50次, SCI中科院工程大類(lèi)1區(qū),Top期刊)) [18] 蔡燦*;曾浪;劉家煒 等,油氣井井下切割技術(shù)發(fā)展現(xiàn)狀及趨勢(shì),西安石油大學(xué)學(xué)報(bào),2024,01(39): 89-96+113. [19] 曾浪,蔡燦,廖飛龍,等. 海洋井架腐蝕后力學(xué)強(qiáng)度及疲勞性能[J]. 科學(xué)技術(shù)與工程,2024,24(35):14911-14920. [20] 蔡燦*,曹文洋,高壓射流輔助鉆井的研究現(xiàn)狀及發(fā)展趨勢(shì),天然氣工業(yè),2023,43(08),116-126.. [21] 蔡 燦*, 譚政博, 玄令超, 等,分離式?jīng)_擊-刮切復(fù)合鉆頭破巖機(jī)理及鉆進(jìn)破巖研究[J]. 振動(dòng)與沖擊,2022,41(16):232-241. [22] 陳浩,高超,蔡燦,等,水平井投球暫堵壓裂炮眼封堵的有效性及影響因素研究,鉆采工藝,2023,46(01),78-84; 更多成果介紹,請(qǐng)關(guān)注本人谷歌學(xué)術(shù)、CNKI及百度學(xué)術(shù)。 *近三年組織及參與的學(xué)術(shù)會(huì)議---------------------------------- [1] 蔡燦,2024高端油氣裝備技術(shù)論壇暨《石油機(jī)械》青年編委會(huì)議,高壓射流輔助鉆完井及射流裝備研制,北京 2024-11(組織委員,分會(huì)場(chǎng)特邀報(bào)告); [2] 蔡燦,第六屆探礦工程學(xué)術(shù)論壇(EEF China 2024),非球形巖屑PDC鉆頭噴射鉆井?dāng)y巖特性研究,江蘇徐州 2024/8/28;(組織委員,分會(huì)場(chǎng)特邀報(bào)告) [3] 蔡燦,2024年國(guó)際干熱-超熱地?zé)豳Y源研究與開(kāi)發(fā)研討會(huì)/2024 International Workshop on Hot Dry Rock and Supercritical Geothermal Resources,高溫地?zé)峋邏荷淞?/span>-PDC齒聯(lián)合破巖機(jī)理及攜巖特性研究進(jìn)展,吉林長(zhǎng)春,2024-9-24;(組織委員、承辦、分會(huì)場(chǎng)主持人) [4] 蔡燦,第十八次全國(guó)水射流技術(shù)與應(yīng)用研討會(huì),高壓射流輔助鉆完井及射流裝備研制,湖北武漢 2024/5/10;(組織委員、承辦,分會(huì)場(chǎng)特邀報(bào)告) [5] 蔡燦,地?zé)峋邏簹怏w射流-PDC齒復(fù)合破巖機(jī)理及攜巖特性研究, 第六屆地?zé)崆嗄暾搲瘯?huì)議,湖北武漢,2024-01.(特邀報(bào)告,會(huì)議組委會(huì)成員) [6] 蔡燦,地?zé)峋邏?/span>CO2射流-PDC齒協(xié)同破碎高溫巖石的離散元數(shù)值分析,2024年中國(guó)深部地?zé)嵴搲?/span>2023-03,中科院巖土所,中國(guó)武漢。(特邀報(bào)告,會(huì)議組委會(huì)成員) [7] 蔡燦,高壓射流輔助鉆井破巖機(jī)理及水力攜巖特性研究,首屆國(guó)際綠色礦山學(xué)術(shù)年會(huì),2024-01,中國(guó)北京。(會(huì)議組織委員,特邀報(bào)告); [8] 蔡燦,高壓水射流-PDC齒協(xié)同破巖機(jī)理研究,第二十二屆全國(guó)探礦工程學(xué)術(shù)交流年會(huì),中國(guó)地質(zhì)學(xué)會(huì) 2023/10/17-20,中國(guó)威海。(特邀報(bào)告,會(huì)議組委會(huì)成員) [9] 蔡燦,高壓CO2射流鉆井?dāng)y巖試驗(yàn)研究,第四屆復(fù)雜油氣工程科技創(chuàng)新論壇,長(zhǎng)江大學(xué),2023/6/23-25,中國(guó)荊州。(特邀報(bào)告,會(huì)議組委會(huì)成員) [10] Can Cai, Dr Can Cai, The Thermal-Fluid-Mechanical Coupling Method based on Discrete Element Method (DEM) and the Application of CO2 Fracturing, 6th InterPore UK Conference Brunel Universit, London, U.K., 12th – 13th September 2022. *近五年部分專(zhuān)利---------------------------------- [1] 智能鉆頭鉆進(jìn)檢測(cè)及智能分析軟件V1.0,軟件著作專(zhuān)利,登記號(hào):2022SR0533727,(授權(quán)). [2] 一種脈沖噴射水下仿生水母機(jī)器人,發(fā)明專(zhuān)利,CN202210384723.0;(授權(quán)). [3] 一種二氧化碳射流輔助加工的雕刻機(jī),實(shí)用新型專(zhuān)利 CN2022200995503;(授權(quán)). [4] 一種具有鉆井加速度實(shí)時(shí)監(jiān)測(cè)功能的智能鉆頭,實(shí)用新型專(zhuān)利 CN2022200995503;(授權(quán)). [5] 一種具有溫度實(shí)時(shí)監(jiān)測(cè)功能的智能鉆頭,實(shí)用新型專(zhuān)利 CN2022200995715;(授權(quán)). [6] 一種井下高壓脈沖水力噴射壓裂工具,實(shí)用新型 CN202122347738.3;(授權(quán)). [7] 一種提升巖屑能力的流線(xiàn)型PDC鉆頭,發(fā)明專(zhuān)利,CN2021104322964,(授權(quán)). [8] 一種部分刀翼可動(dòng)的PDC鉆頭,發(fā)明專(zhuān)利,CN2022100759717,(授權(quán)). [9] 一種可控電磁驅(qū)動(dòng)式?jīng)_擊-刮切復(fù)合鉆頭及方法,發(fā)明專(zhuān)利,CN202010052493.9,(授權(quán)). [10] 一種鉆井切削力學(xué)實(shí)時(shí)監(jiān)測(cè)的智能鉆頭及其工作方法,發(fā)明專(zhuān)利,CN202010525525.2,(授權(quán)). |