【个人简介】 博士(后),主要从事高压射流理论、冲击动力学与结构安全相关研究。本、硕、博就读于重庆大学资源及环境科学学院(现资源与安全学院);在华南理工大学机械与汽车工程学院完成博士后研究工作。主持多项国家、省部级科研课题;以第一、通讯作者发表SCI/EI论文二十余篇,授权发明专利6项,担任Energy, Physics of fluid, Construction and Building Materials, Powder technology, Journal of Loss Prevention in the Process Industries等多个学术期刊、国际会议审稿专家。 【论文著作】 第一、通讯作者发表论文: [1] Xue Y, Zhong H, Tang P, Jiang S. Numerical simulation of oscillation pulse abrasive water jet and PDC cutter combined breaking of granite based on SPH-FEM method. Engineering Fracture Mechanics 335, 111927 (2026). [2] Xue Y, Yao L, Zhou X, Luo W, Wang S, Zhao Y. Coupling mechanism and influence pattern of stress distribution in near-wellbore rock during liquid nitrogen jet assisted geothermal drilling. Geoenergy Science and Engineering 258, 214305 (2026). [3] Xue Y, Tang P, Zhong H, Hu J. Investigation on the influence of nozzle parameters on rock breaking capability of rotating water jet. Powder Technology 469, 121860 (2026). [4] Xue Y, Zhou X, Yao L, Luo W, Wang S, Zhao Y. Numerical study on rock breaking mechanism of supercritical CO2 jet based on CFD-DEM approach. Geoenergy Science and Engineering 257, 214253 (2026). [5] Xue Y, Luo W, Ding L, Wang S, Yao L, Zhou X, et al. Investigation of Casing Stress Distribution under Combined Effects of Perforation Operation and Initial Stress Field Induced by Cementing Defects. SPE Journal 30(10), 6045-6062 (2025). [6] Xue Y, Wang S, Zhang Q, Ding L, Luo W, Yao L, et al. A Refined Analytical Model for Stress Concentration in Perforated Casings Under Complex Loading Conditions in Deep Oil and Gas Wells. Geoenergy Science and Engineering 253, 214003 (2025). [7] Xue Y, Yao L, Li J, Ding L, Luo W, Zhou X, et al. Temporal and spatial evolution laws of temperature effects in high-velocity liquid nitrogen jet rock breaking. Applied Thermal Engineering 255, 124060 (2024). [8] Xue Y, Li J, Liu J, Ding L. Simulation study on the rock-breaking behavior of a straight-swirling mixed supercritical CO2 jet. Applied Thermal Engineering 243, 122551 (2024). [9] Xue Y, Chen G, Zhang Q, Xie M, Ma J. Simulation of the dynamic response of an urban utility tunnel under a natural gas explosion. Tunnelling and Underground Space Technology 108, 103713 (2021). [10] Xue Y, Si H, Chen G. The fragmentation mechanism of coal impacted by water jets and abrasive jets. Powder Technology 361, 849–859 (2020). [11] Xue Y, Si H, Xu D, Yang Z. Experiments on the microscopic damage of coal induced by pure water jets and abrasive water jets. Powder Technology 332, 139–149 (2018). [12] Xue Y, Si H, Yang Z, Xu D. Microscopic damage field in coal induced by water jets. Journal of Loss Prevention in the Process Industries 56, 300–315 (2018). [13] Xue Y, Si H, Hu Q. The propagation of stress waves in rock impacted by a pulsed water jet. Powder Technology 320, 179–190 (2017). [14] Chen G, Zhao Y, Xue Y*, Huang K, Zeng T. Numerical investigation on performance of protective layer around large-scale chemical storage tank against impact by projectile. Journal of Loss Prevention in the Process Industries 69, 104351 (2021). [15] Liu J, Zhu Y, Xue Y*, Sun Hao. Fragmentation pattern and removal mechanism of concrete subjected to abrasive water jet impact. Advances in Materials Science and Engineering. 2021, 2021: 1-10. [16] Liu J, Du S, Xue Y*. Study on the breaking process and damage characteristics of abrasive water jet impacting concrete based on acoustic emission[J]. Construction & Building Materials 262:120085 (2020). [17] Chen J, Shen X, Zhou L, Zhang L, Xue Y*, Gao M. Dependence of the Temperature on the Fatigue Properties of Sandstones Under Graded Cyclic Loading and Unloading of the Intermediate Principal Stress. Rock Mech Rock Eng (2026). [18] 薛永志, 李俊, 丁亮亮, 等. 超临界CO2直旋混合射流破岩机理及喷嘴结构影响规律[J]. 振动与冲击, 2025,44(01):232-242. [19] 钟银, 薛永志*, 姚麟, 等. 旋转射流除垢作用机理的数值模拟研究[J]. 石油机械, 2025,53(07):112-121. [20] 司鹄, 薛永志*, 周维. 自激振荡脉冲射流破岩效率数值模拟[J]. 振动与冲击, 2016,35(20):149-153. [21] 司鹄, 薛永志*. 基于SPH算法的脉冲射流破岩应力波效应数值分析[J]. 振动与冲击, 2016,35(05):146-152. 【课题经历】 [1] 国家科技重大专项:多介质协同气驱注采井井筒完整性评价及防护技术,主持; [2] 国家科技重大专项:超高温特高压试油完井关键工具研制,主持; [3] 中国博士后科学基金:冰粒磨料射流作用下煤岩热-流-固耦合致损机,主持; [4] 南充市科技局项目:超临界CO2直旋混合射流作用下煤岩损伤热流固耦合作用机理,主持; [5] 西南石油大学启航计划:多重致裂因子耦合下液氮冰粒射流破碎干热岩机理研究,主持; [6] 中石化项目:高压厚壁管及测试流程各类短节破坏性实验,主持; [7] 中石油项目:冀东油田复杂断块油田的井完整性分级风险评价方法与老井风险预警研究,技术负责人; [8] 中石化项目:射孔爆轰和动态负压瞬态预测方法研究,技术负责人; [9] 中石化项目:射孔爆轰效应发生机理及管柱力学研究,技术负责人; [10] 中石油项目:高压深井试油管柱内压力场预测与控制技术研究,技术负责人; [11] 中石油项目:超深层气井调峰期间油管柱力学行为评价,技术负责人; [12] 中海油项目:基于特斯拉流道的井下控水机理与工具研究,技术负责人; [13] 国家重点研发计划课题:典型空间内爆炸灾害时空演化规律,参与; [14] 国家重点研发计划课题:煤矿典型动力灾害风险判识及监控预警技术研究,参与; [15] 国家自然科学基金:高压水射流作用下煤岩细观动力损伤演化机理研究,参与; [16] 国家自然科学基金:多灾种耦合作用下化工园区多米诺效应事故动态风险演化机理与防控原理,参与。 【荣誉奖励】 中国安全生产协会科技进步奖二等奖:深部低渗煤层高压水力“割-压-润”协同改造防灾机理与关键技术, 2023. 【备注其他】 课题组科研氛围活跃,自主性强,师生沟通融洽,研究生多在研一/研二期间已发表SCI论文,有深造意愿的学生会全力推荐至985高校攻读博士,欢迎勤于思考、乐于实践的同学加入! |