[1] 国家自然科学基金, 基于岩石动态本构的轴扭复合冲击作用下PDC单齿破岩机理研究, 2020-2022, 结题, 主持. [2] 中国博士后科学基金, 轴扭复合冲击作用下PDC钻头破岩机理数值模拟研究, 2019-2020, 结题, 主持. [3] 省级工程研究中心开放基金, 改建储气库的油田老井套管柱完整性研究, 2023-2024, 在研, 主持. [4] 企业委托项目, 油气钻井装备产学研联合研发中心, 2024-2027, 在研, 主持. [5] 企业委托项目, 高压气井环空压力诊断设备开发, 2024-2027, 在研, 主持. [6] 企业委托项目, 油田输油管道带压堵漏技术的研究与应用服务, 2023-2024, 结题, 主持. [7] 企业委托项目, 页岩岩心冷冻取样技术研发, 2022-2023, 结题, 主持. [8] 企业委托项目, 油气钻井箭形止回阀失效分析, 2022-2025, 在研, 主持. [9] 企业委托项目, 一体化流量计高级孔板阀密封分析, 2022-2024, 结题, 主持. [10] 企业委托项目, 非常规结构新型PDC钻头研究及取心工具理论研究, 2021-2023, 结题, 主持. [11] 科技部高端外国专家引进项目, 深水海洋钻采平台失效评估与延寿技术研究, 2019-2019, 结题, 主持. [12] 皇家永利重点研发项目, 用于提高页岩气水平井钻井效率的高频扭转冲击技术研究及装备开发, 2017-2018, 结题, 主持. [13] 机械传动国家重点实验室开放基金, 凸轮式扭转冲击传动系统动力学特性研究, 2016-2018, 结题, 主持. [14] 油气藏地质及开发工程国家重点实验室开放基金, 高频扭转冲击提高页岩气水平井钻井效率机理研究, 2017-2018, 结题, 主持. [15] 流体及动力机械教育部重点实验室开放基金, 钻井液对钻柱粘滑振动与涡动耦合的影响研究, 2016-2018, 在研, 主持. [16] 皇家永利高校重点实验室开放基金, 钻井废液随钻处理装置结构研究, 2016-2018, 结题, 主持. [17] 中石化工程院技术开发项目, 可变径稳定器研制, 2016-2017, 结题, 技术主持. [18] 西南石油大学科研启航计划, 高频扭转冲击抑制钻柱粘滑振动机理研究, 2016-2018, 结题, 主持. [19] 皇家永利科技厅项目, 深部地层钻头粘滑振动特性研究及振动监测装置设计, 2014-2014, 结题, 主持. |
[1] Haipeng Wang, Liping Tang*, Xiang Zhong, et al. Coupling analysis of multi-annular temperature and pressure gradients in oil and gas wells considering fluid thermodynamic properties[J]. Geoenergy Science and Engineering, 2024, 242, 213262. [2] 曹敏, 汤历平*, 王锡军. 长输油气管道环向表面裂纹扩展特性研究[J]. 石油机械, 2024, 52(12): 125-133. [3] Liping Tang*, Jiaxin Zou, Kenan Song, et al. Parameter sensitivity analysis of the axial stability for a marine flexible pipe[J]. Petroleum, 2024, 10: 548-556. [4] 汤历平*. 室内随钻冷却岩心取样装置研发[C]. 北京: 2024高端油气装备技术论坛, 2024-11.(分会场邀请报告) [5] Liping Tang*. Development of an automatic frozen coring equipment for shale oil[C]. 南昌: 3rd International Conference on Mechatronics Technology and Aerospace Engineering, 2023-09.(大会特邀报告) [6] 汤历平. 岩心室内冷冻取样装置研发[C]. 荆州: 第四届复杂油气工程科技创新论坛, 2023-06.(分会场邀请报告) [7] 汤历平*, 刘宸希, 张磊, 等. 直井测斜泥浆脉冲发生器阀头参数优化研究[J]. 机械强度, 2023, 45(05): 1130-1140. [8] 汤历平*, 周翔宇, 李金和, 等. 基于环空流场特性的变径稳定器参数优化研究[J]. 石油机械, 2023, 51(12): 8-16. [9] Liping Tang, Baolin Guo, Marcin Kapitaniak, et al. Finite element analysis of drill pipe-slip system [J]. Journal of Petroleum Science and Engineering, 2023, 220: 111163. [10] 汤历平*, 余岱林, 董仕明, 等. GQX121型小井眼取心工具研制[J]. 石油矿场机械, 2022, 51(3): 45-51. [11] 汤历平*, 姚红, 罗衡, 等. 轴向拉伸下非粘结柔性管抗拉铠装层力学响应[J]. 石油机械, 2022, 50(4): 72-79. [12] Liping Tang*, Hong Yao, Chengtao Wang. Development of remotely operated adjustable stabilizer to improve drilling efficiency [J]. Journal of Natural Gas Science and Engineering, 2021, 95: 104174. [13] Liping Tang*, Hong Yao, Zeming Huang, et al. How wavelike bumps mitigate the vortex-induced vibration of a drilling riser [J]. Journal of Applied and Computational Mechanics, 2021, 7(3): 1413-1424. [14] Liping Tang, Baolin Guo, Xiaohua Zhu. Finite element modeling of slip insert geometric grip optimization for oil well drill pipes [J]. Mathematical Problems in Engineering, 2020, Article ID: 5426739, 20 pages. [15] Liping Tang, Baolin Guo, Xiaohua Zhu, et al. Stick-slip vibrations in oil well drillstring: a review [J]. Journal of Low Frequency Noise, Vibration and Active Control, 2020, 39(4): 885-907. [16] Liping Tang and Xiaohua Zhu. Effects of drill string length on stick-slip oscillation of the oilwell drill string [J]. Iranian Journal of Science and Technology, Transaction of Mechanical Engineering, 2020, 44: 497-506. [17] Liping Tang, Wei He, Xiaohua Zhu, Yunlai Zhou. Sealing performance analysis of marine unbonded flexible pipe end fitting under pressure penetration [J]. Journal of Applied and Computational Mechanics, 2020, 6(3): 543-553. [18] Liping Tang, Wei He, and Xiaohua Zhu. The effect of high-frequency torsional impacts on the dynamic response of a drill string in a stick state [J]. Advances in Mechanical Engineering, 2019, 11(3): 1-12. [19] Liping Tang, Wei He, and Xiaohua Zhu. Parameter sensitivity analysis on the buckling failure modes of tensile armor layers of flexible pipe [J]. Engineering Failure Analysis, 2019, 104: 784-795. [20] Liping Tang, Wei He, Xiaohua Zhu, et al. Sealing performance analysis of an end fitting for marine unbounded flexible pipes based on hydraulic-thermal finite element modeling [J]. Energies, 2019, 12: 2198. [21] Liping Tang, Xiaohua Zhu, and Hongzhi Lin. Effects of axial impact load on the dynamics of an oilwell drillstring [J]. Advances in Mechanical Engineering, 2019, 11(3): 1-8. [22] Liping Tang, Xiaohua Zhu, and Jinhe Li. Effects of the synchronous variation of the static and the kinetic friction coefficients on stick-slip vibration of drillstring [J]. Iranian Journal of Science and Technology, Transaction of Mechanical Engineering, 2019, 43: 275-283. [23] Liping Tang, Wei He, Xiaohua Zhu, et al. Mechanical analysis of un-bonded flexible pipe tensile armor under combined loads [J]. International Journal of Pressure Vessels and Piping, 2019, 171: 217-223. [24] Liping Tang, Zemin Huang, Xiaohua Zhu, et al. Investigation of the mechanical response of a deep-water drilling riser to ocean currents and waves [J]. Advances in Mechanical Engineering, 2019, 11(1): 1-11. [25] Liping Tang and Xiaohua Zhu. Development of an adjustable stabilizer for controlling the borehole trajectory [J]. Journal of Advanced Mechanical Design, System, and Manufacturing, 2018, 12(1): 1-14. [26] Liping Tang and Xiaohua Zhu. On the development of high-frequency torsional impact drilling techniques for hard formation drilling [J]. Advances in Mechanical Engineering, 2018, 10(6): 1-15. [27] Liping Tang, Xiaohua Zhu, Xudong Qian, et al. Effects of weight on bit on torsional stick-slip vibration of oilwell drill string [J]. Journal of Mechanical Science and Technology, 2017, 31(10): 4589-4597. [28] Liping Tang, Xiaohua Zhu and Changshuai Shi. Effects of high-frequency torsional impacts on mitigation of stick-slip vibration in drilling system [J]. Journal of Vibration Engineering & Technologies, 2017, 5(1): 111-122. [29] 汤历平, 祝效华, 石昌帅, 等. 钻柱系统黏滑振动的自激振动特性研究[J]. 西南石油大学学报(自然科学版), 2017, 39(4): 168-175. [30] Liping Tang, Xiaohua Zhu, Changshuai Shi, et al. Investigation of the damping effect on stick-slip vibration of oil and gas drilling system [J]. Journal of Vibration Engineering & Technologies, 2016, 4(1): 79-88. [31] Liping Tang, Xiaohua Zhu, Jinhe Li, et al. Optimization analysis on the effects of slip insert design on drill pipe damage [J]. Journal of Failure Analysis and Prevention, 2016, 16: 384-390. [32] Liping Tang and Xiaohua Zhu. Effects of the difference between the static and the kinetic friction coefficients on a drill string vibration linear approach [J]. Arabian Journal for Science and Engineering, 2015, 40(12): 3723-3729. [33] Liping Tang, Xiaohua Zhu, Changshuai Shi, et al. Study of the influence of rotary speed on stick-slip vibration of the drilling system [J]. Petroleum, 2015, 1(4): 382-387. [34] Xiaohua Zhu, Liping Tang and Hua Tong. Effects of high-frequency torsional impacts on rock drilling [J]. Rock Mechanics and Rock Engineering, 2014, 47(4): 1345-1354. [35] Xiaohua Zh and Liping Tang. Development of a high-frequency torsional impact generator for improving drilling efficiency [J]. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2014, 228(11): 1968-1977. [36] Xiaohua Zhu, Liping Tang and Qiming Yang. A literature review of approaches for stick-slip vibration suppression in oilwell drillstring [J]. Advances in Mechanical Engineering, 2014, 6(8): 967952, 16 pages. [37] Xiaohua Zhu and Liping Tang. On the formation of limit cycle of the friction-induced stick-slip vibration in oilwell drillstring [J]. Petroleum, 2015, 1(1): 62-67. [38] 祝效华, 汤历平, 童华. 高频扭转冲击钻进的减振与提速机理研究[J]. 振动与冲击, 2012, 31(20):75-79. [39] 祝效华, 汤历平, 吴华, 等. 扭转冲击钻具设计与室内试验[J]. 石油机械, 2012, 39(5):27-30. (中文核心) [40] 祝效华, 汤历平, 孟苹苹, 等. PDC钻头粘滑振动机理分析[J]. 石油矿场机械, 2012, 41(4): 13-16. [41] 祝效华, 汤历平. 浅谈直井中钻柱的粘滑振动[C]. 中国力学大会, 2015.08.15-18, 上海, 分会场报告. [42] 祝效华, 汤历平. 高频扭转冲击作用下硬地层破岩机理研究[C]. 第十届全国振动理论学术会议, 2011.10.27-29, 南京, 分会场报告. |
[1] 汤历平, 傅天. 一种油气井井下事故处理装置与方法: ZL 202310723807.7[P]. 2025-01-21. [2] 汤历平, 张艺怀. 一种油气钻井取心工具与方法: ZL 202311595932.0[P]. 2025-01-21. [3] 汤历平, 姚力萍. 一种油气钻井的井下震击装置与方法: ZL 202311583426.X[P]. 2024-12-03. [4] 汤历平, 梁育鹏. 一种随钻测量井下供电装置与方法: ZL 202410136905.5[P]. 2024-12-03. [5] 汤历平, 杨自豪. 一种遥控可变径稳定器: ZL 201911341658.8[P]. 2024-09-24. [6] 汤历平, 阳杰. 一种油气钻井的井下减振装置: ZL 202210852306.4[P]. 2024-08-13. [7] 汤历平, 邹嘉鑫. 一种用于产生液力脉冲的钻井装置: ZL 202210317837.3[P]. 2024-08-09. [8] 汤历平, 刘宸希. 一种用于井眼轨迹控制的可变径稳定器: ZL 202210220644.3[P]. 2024-06-18. [9] 汤历平, 周翔宇. 一种水泥堵漏钻塞一体化井下装置: ZL 202210206778.2[P]. 2024-06-18. [10] 汤历平, 汪海鹏. 一种海洋管道铺设装置与方法: ZL 202311234157.6[P]. 2024-05-07. [11] 汤历平, 姚力萍. 一种油气井井眼轨迹控制装置与方法: ZL 202311234158.0[P]. 2024-04-30. [12] 范佳锐, 丁俊, 汤历平. 一种油气井随钻测径装置与方法: ZL 202311244670.3[P]. 2024-03-12. [13] 汤历平, 张开强. 一种油气井随钻扩眼器: ZL 202210220965.6[P]. 2024-01-09. [14] 汤历平, 阳杰. 一种提高井完整性的钻井事故处理装置: ZL 202210220959.0[P]. 2023-06-02. [15] 刘宸希, 丁俊, 汤历平. 油气井遥控多次开关旁边通装置与方法: ZL 202210935825.7[P]. 2023-06-20. [16] 汤历平, 余岱林. 一种PDC钻头脉动冲击装置与方法: ZL 202110365644.0[P]. 2022-03-11. [17] 汤历平, 王成涛. 一种液控型井下打捞工具: ZL 201811055525.X[P]. 2022-06-21. [18] 汤历平,王成涛. 一种棘齿型井下打捞装置:ZL 201810866622.0[P]. 2020-07-02 [19] 汤历平,祝效华. 高频扭转冲击钻具冲击参数测试装置及方法: ZL 201710944653.9[P]. 2020-03-10. [20] 汤历平,郭宝林. 一种液力脉动冲击钻井装置: ZL 201810804677.9[P]. 2019-12-24. [21] 汤历平, 王成涛. 一种钻井遥控可变径稳定器: ZL 201810803873.4[P]. 2019-10-01. [22] 汤历平,王成涛. 一种偏心式扭转冲击钻具: ZL 201810304742.1[P]. 2019-09-03. [23] 汤历平, 黄泽民. 一种管柱卡瓦极限承载能力测试装置: ZL 201610859700.5[P]. 2019-07-02. [24] 汤历平, 祝效华. 一种输流管道压力波动频率测量装置与方法: ZL 201710488292.1[P]. 2019-04-26. [25] 汤历平, 王成涛. 一种连续油管清蜡装置: ZL 201710486583.7[P]. 2019-04-02. [26] 汤历平, 黄泽民. 一种绳索取芯工具及方法: ZL 201710558000.7[P]. 2019-04-02. [27] 汤历平, 何为等. 一种海洋柔性管保护装置: ZL 201711084792.5[P]. 2019-02-15. [28] 汤历平, 祝效华. 一种管道流体泄漏检测装置: ZL 201611067523.3[P]. 2019-02-15. [29] 汤历平, 黄泽民. 一种深井取芯装置及其操作方法: ZL 201611180239.7[P]. 2018-12-04. [30] 汤历平, 黄泽民, 祝效华. 一种液力脉冲发生装置及其操作方法: ZL 201610981559.6[P]. 2018-09-07. [31] 汤历平, 祝效华. 一种可变径管道清理装置: ZL 201610285052.7[P]. 2018-06-09. [32] 汤历平, 祝效华. 油井采出液处理系统: ZL 201610207389.6[P]. 2018-04-24. [33] 汤历平, 祝效华. 一种油气放喷处理装置及方法: ZL 201610126170.3[P]. 2018-02-16. [34] 汤历平, 祝效华. 一种用于回收事故井中钻柱的装置与方法: ZL 201510605016.X[P]. 2017-10-10. [35] 汤历平, 祝效华. 一种高速旋转喷射装置: ZL 201510645449.8[P]. 2017-08-22. [36] 汤历平, 祝效华. 一种遥控可变径稳定器: ZL 201510705899.1[P]. 2017-06-09. [37] 汤历平, 祝效华. 实验测定钻柱粘滑振动的装置与方法: ZL 201510367064.X[P]. 2017-05-10. [38] 汤历平, 祝效华. 一种产生扭矩脉冲的装置及方法: ZL 201510346900.6[P]. 2017-04-05. [39] 汤历平, 祝效华. 一种冲击发生器及其操作方法: ZL 201510346874.7[P]. 2017-01-25. |