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SCI论文: (1)Xinxin Zhang,Zhang, Shaohe,Jianming Peng(*),Dongyu Wu,A fluidic oscillator with concave attachment walls and shorter splitter distance for fluidic DTH hammers. Sensors & Actuators A Physical,2018,270:127-135.(通讯作者,SCI三区,IF:2.499) (2)Dongyu Wu,Jianming Peng(*),Jingqing Cheng,Yangliang Li,XinxinZhang.A numerical and laboratory study of ice layer growth and freezing characteristics in the vicinity of a vertical ice valve. Applied Thermal Engineering,2017,123:1214-1222. (通讯作者,SCI二区,IF:3.444) (3)Xinxin Zhang,Jianming Peng(*),Mingze Sun,Kun Bo,Kun Yin,Dongyu Wu.The effect of actuator parameters on the performance of a liquid-jet hammer associated with its jet behavior. Proceedings of the Institution of Mechanical Engineers Part C-Journal of Mechanical Engineering Science, 2016, 231(14):2610-2620. (通讯作者,SCI四区,IF:0.939) (4)Xinxin Zhang,Jianming Peng(*),Mingze Sun,Qing Gao,Dongyu Wu. Development of applicable ice valves for ice-valve-based pressure corer employed in offshore pressure coring of gas hydrate-bearing sediments. Chemical Engineering Research & Design,2016, 111:117-126. (通讯作者,SCI二区,IF:2.538) (5)Xinxin Zhang,Jianming Peng(*),Kun Yin,Qilei Yin,Dongyu Wu. A high-energy Liquid-Jet Hammer with Specially Designed Backward Stroke End Buffer Structure.Journal of Vibroengineering,2016,18(8):4935-4948. (通讯作者,SCI四区,IF:0.398) (6)Dongyu Wu,Jianming Peng(*),Mingze Suna,Qing Gao,Xinxin Zhang,Sun Qiang,Kun Bo. Experimental study on a pressure-coring technology based on a freeze-core valve for marine hydrate-bearing sediment sampling. Journal of Natural Gas Science and Engineering,2016,33:135-142. (通讯作者,SCI三区,IF:2.718) (7)Xinxin Zhang,Jianming Peng(*),Dong Ge,Kun Bo,Kun Yin,Dongyu Wu. Performance Study of a Fluidic Hammer Controlled by an Output-Fed Bistable Fluidic Oscillator. Applied Sciences-Basel, 2016,6(10),305. (通讯作者,SCI三区,IF:1.679) (8)Yongjiang Luo,Jianming Peng(*),Lijia Li,Jiangfu He,Xin Gan,KunYin,Zhiqiang Zhao. Development of a specially designed drill bit for down-the-hole air hammer to reduce dust production in the drilling process.Journal of Cleaner Production,2016,112(1):1040-1048. (通讯作者,SCI二区,IF:5.715) (9)Lijia Li,Jianming Peng(*),Qing Gao,Mingze Sun,Yan Liu,Ming Li,Baoyi Chen,Kun Bo. Pressure retaining method based on phase change for coring of gas hydrate-bearing sediments in offshore drilling. Applied Thermal Engineering,2016,107:633-641. (通讯作者,SCI二区,IF:3.444) (10)Jiang-fu He,Kun Yin,Jian-ming Peng(*),Xin-xin Zhang,He Liu,XinGan. Design and feasibility analysis of a fluidic jet oscillator with application to horizontal directional well drilling. Journal of Natural Gas Science and Engineering,2015,27(3):1723-1731. (通讯作者,SCI三区,IF:2.718) (11)Yongjiang Luo,Lijia Li,Jianming Peng(*),Peng Li,Xin Gan,Letao Zhao,Wei Su. Detection of Multilayer Cavity using RC-DTH Air Hammer system and Cavity Auto Scanning Laser System,Archives of mining sciences,2015,60(4):1041-1052. (通讯作者,SCI四区,IF:0.550) (12)Yongjiang Luo,Jianming Peng(*),Mingze Sun,Qiang Sun,Tiankun. An ice-valve-based pressure-coring system for sampling natural hydrate-bearing sediments proof-of-concept laboratory studies.Journal of Natural Gas Science and Engineering,2015,27(3):1462-1469. (通讯作者,SCI三区,IF:2.718) (13)Yongjiang Luo,Jianming Peng(*),Peng Li,Jiangfu He,Lijia Li. Influence of heterogeneous hydrate distribution on the compressional wave velocity of hydrate-bearing sediment specimens. Journal of Natural Gas Science and Engineering,2015,22:90-97. (通讯作者,SCI三区,IF:2.718) (14)Qilei Yin,Jianming Peng(*),Kun Bo,Jiangfu He,Yanlong Kui,Xin Gan. Study on dust control performance of a hammer drill bit.INTERNATIONAL JOURNAL OF MINING RECLAMATION AND ENVIRONMENT,2013,27(6):393-406. (通讯作者,SCI四区,IF:1.078) (15)Jian-Ming Peng(*),Qiang Zhang,Guo-lin Li,Jia-Wang Chen,Xin Gan.Effect of geometric parameters of the bistable fluidic amplifier in the liquid-jet hammer on itsthreshold flow velocity.Computers &Fluids,2013,82(8):38-49. (通讯作者,SCI三区,IF:2.313) (16)Jian-Ming Peng(*),Qi-Lei Yin,Guo-lin Li,He Liu,Wei Wang.The effect of actuator parameters on the critical flow velocity of a fluidic amplifier.Applied Mathematical Modelling,2013,37(14-15):7741-7751. (通讯作者,SCI一区,IF:2.350) EI论文和其它论文: (1)张鑫鑫,彭枧明(*),孙铭泽,罗永江. 冰阀式保压取样器中冰阀形成的数值模拟与试验研究[J].哈尔滨工业大学学报,2017,49(4):162-166.(EI) (2)张鑫鑫,彭枧明(*),孙铭泽,吴冬宇.基于CFD的高能射流式液动冲击器活塞与缸体密封特性研究[J].吉林大学学报 (地球科学版)2017,02(47),534- 541 (3)吴冬宇,罗永江,彭枧明(*),张鑫鑫.微波加热辅助多孔介质水合物制样方法与装置[J]. 国防科技大学学报,2016,(2) :165-170.(EI) (4)吴冬宇,彭枧明(*),殷琨,张鑫鑫.基于Ls-dyna的射流式冲击器冲锤结构[J].东北大学学报,2016,(10) :1441-1445.(EI) (5)张鑫鑫,彭枧明(*),杨冬冬,吴冬宇,孙强. 冲锤处流体阻力对高能射流式液动锤性能影响[J].振动、测试与诊断,2016,36(5): 998-1002.(EI) (6)吴冬宇,彭枧明(*),孙强等.碟簧对射流式冲击器密封影响研究[J].振动与冲击,2016,35(22):221-225.(EI) (7)王福平,李鹏,李国琳,彭枧明等.基于LS-Dyna的高能射流式液动冲击器活塞杆回程应力分析[J].吉林大学学报(地球科学版),2016,46(5):1482-1489 (8)甘心,殷琨,彭枧明,殷其雷,何将福.可切换式反循环潜孔锤钻头设计及优化[J].中南大学学报(自然科学版),2016,47(02):508-514.(EI) (9)杨冬冬,殷琨,彭枧明(*)等.基于LS-DYNA的大容腔潜孔锤钻头结构研究[J].探矿工程(岩土钻掘工程),2016,43(9):26-29. (10)孙铭泽,彭枧明(*),张鑫鑫.高能射流式液动锤低阻高效冲锤结构研究[J].探矿工程(岩土钻掘工程),2016,43(9):34-37. (11)孙强,杨冬冬,彭枧明(*)等.高能射流式液动锤在花岗岩中的钻进研究[J].探矿工程(岩土钻掘工程),2016,43(8):39-43. (12)纪天坤,孙强,杨冬冬,彭枧明(*)等.新型射流式元件结构设计与试验研究[J].探矿工程(岩土钻掘工程),2016,43(6):52-55. (13)杨冬冬,李国琳,纪天坤,孙强,彭枧明(*)等基于LS-DYNA的射流式液动锤活塞回程缓冲结构的研究[J].探矿工程(岩土钻掘工程),2016,43(5):37-40. (14)李鹏,殷琨,彭枧明,罗永江,李丽佳.基于LS-DYNA的贯通式潜孔锤反循环钻头强度的优化分析[J].探矿工程(岩土钻掘工程),2015,03(42),44-47. (15) Yongjiang Luo, Lijia Li, Jianming Peng(*),etal.Influence of out-of-Flatness on the Performance of Liquid-Jet Hammer[J].International Journal of Earth Sciences and Engineering,2015(EI) (16) Jiangfu He, Jianming Peng(*), Yongjiang Luo et., Acoustic Velocity of Gas Hydrate Core Sample with Various Vessels, Saturations and Pressure, International Journal of Earth Sciences and Engineering, Vol. 08, No. 01, 2015 (EI) (17)王维,彭枧明,王红岩,陈晨,王馨靓,付伟根.天然气水合物地层PCS取样扰动有限元仿真分析[J].中南大学学报(自然科学版)2014,04(45),1183-1189.(EI) (18)彭枧明,王维,柳鹤,殷其雷.活塞冲锤主要参数对射流元件临界流速的影响[J].吉林大学学报(地球科学版),2011,41(增刊):237—241.(EI) (19)彭枧明,王维,殷其雷等.分流孔直径对射流式液动锤性能的影响[J].北京工业大学学报(自然科学版),2011,37(2):19—24.(EI) (20)彭枧明,殷其雷,赵志强等.低速射流元件控制的高能液动锤研究[J].石油机械,2010,38(3):1—4. (21)张永光,彭枧明(*),柳鹤等.射流式液动锤活塞回程缓冲机构[J].吉林大学学报(地球科学版),2010,40(6):1415—1418.(EI) (22)李国琳,彭枧明(*),柳鹤等.液动锤射流元件喷嘴临界流速预测与验证[J].吉林大学学报(地球科学版),2010,40(1):159—163.(EI) (23)彭枧明,柳鹤,赵志强等.YSC178A型液动锤射流元件底盖板外壁冲蚀机理[J].吉林大学学报(地球科学版),2010,40(5):1140—1144.(EI) (24)Chen Jiawang,Yin Kun,Peng Jianming, etal. Numerical simulation of the performance of the SC—89 jet impact system[J]. Proceedings of the ASME Dynamic Systems and Control Conference 2009, DSCC2009, n PART B,p 913—920, 2010, Proceedings of the ASME Dynamic Systems and Control Conference 2009, DSCC2009.(EI) (25)陈家旺,彭枧明,殷其雷等.液压卡紧对射流式液动锤性能的影响[J].石油大学学报(自然科学版),2009,33(5):72—75.(EI) (26)王如生,彭枧明,殷琨,陈宝义,王文龙,殷其雷.地面跟踪导航系统在KCM-130Ⅱ型可控冲击矛中应用的初步研究[J].探矿工程(岩土钻掘工程),2009, A1(1):338-341. (27)陈尘,殷琨,彭枧明. 超音速多喷嘴引射器式反循环钻头研究[J] .应用能源技术,2009(03):1-3. (28)刘建林,殷琨,彭枧明,郑俊华.海底取样钻头优化设计有限元分析[J].地质装备,2009,10(01):20-23. (29)李国琳,彭枧明.射流式液动锤冲击功非接触测量系统的改进[J].石油机械,2008(07):56-58+71+90. (30)王清岩,殷琨,彭枧明,陈家旺.液动射流冲击器计算机仿真技术的发展与应用[J].石油钻探技术,2008(01):45-49. (31)殷其雷,彭枧明.运动副配合间隙对射流式液动锤性能的影响[J].石油机械,2008(08):4-6+15+102. (32)彭枧明,殷琨,陈家旺,周占江.新一代大直径气动潜孔锤钻进系统的研制与应用[J].工程机械,2007(02):36-38+2. (33)曹品鲁,殷琨,李世民,彭枧明.潜孔锤冲击作用下土体变形的有限元分析[J].石油钻采工艺,2007(02):24-26+118-119. (34)陈家旺,殷琨,彭枧明,周占江.大直径潜孔锤在海底嵌岩锚链灌注桩工程中的应用[J].施工技术,2007(01):86-88. (35)郑治川,殷琨,王清岩,彭枧明,苏继军.QFGZ型潜孔锤反循环跟管钻头的研制[J].吉林大学学报(地球科学版),2007(05):1052-1054. (36)彭枧明,吴忠杰,韦建荣.射流式液动锤冲击功非接触测量系统[J].石油矿场机械,2006(01):48-51. (37)吴忠杰,林君,彭枧明,韦建荣,朱虹.液动射流式冲击器冲击功测量方法及仪器研制[J].仪器仪表学报,2006(09):1037-1040. (38)彭枧明,殷琨,王清岩,李国琳.射流式液动锤高压腔内液体压力的数学模型[J].石油大学学报(自然科学版),2005(06):50-52+68. (EI) (39)李国琳,彭枧明,殷琨,刘建林.应用音频工具软件测量冲击器的冲击频率[J].凿岩机械气动工具,2004(04):38-40. (40)陈家旺,殷琨,彭枧明.贯通式风动潜孔锤反循环钻头结构流场的分析与结构优化[J].探矿工程(岩土钻掘工程),2004(04):35-37. (41)陈家旺,彭枧明,殷琨.贯通式气动潜孔锤钻头反循环结构的计算机辅助设计[J].凿岩机械气动工具,2003(04):14-18. (42) 殷琨,王茂森,彭枧明,周占江.水文水井潜孔锤反循环钻进技术[J].探矿工程(岩土钻掘工程),2003(S1):236-240. (43) 熊青山,殷琨,祁宏军,彭枧明.可视化无阀式风动潜孔锤仿真电算软件设计[J].吉林大学学报(地球科学版),2003(04):571-574. (44) 蒋荣庆,殷琨,王茂森,彭枧明.HC型环状组合式潜孔锤及取心方法试验研究[J].探矿工程(岩土钻掘工程),2003(03):26-29. (45)殷琨,张五钊,王茂森,彭枧明. 油压垂直夯管设备的研制及应用[A]. 中国地质学会.探矿工程(岩土钻掘工程)技术与可持续发展研讨会论文集[C].中国地质学会:,2003:3. (46)彭枧明,殷琨,蒋荣庆,白文翔.KCM130型可控冲击矛的研制[J].工程机械,2002(10):20-22. (47) 彭枧明,殷琨,蒋荣庆,王茂森,詹军,熊青山.KCM130型可控气动冲击矛及附件的研制[J].建筑机械,2002(07):40-42.