1. 近期第一/通讯作者SCI期刊论文(40篇)
[1] TAN Da-peng, LI Lin, YIN Zi-chao, LI Dai-feng, ZHU Yin-long, ZHENG Shuai. Ekman boundary layer mass transfer mechanism of free sink vortex [J]. International Journal of Heat and Mass Transfer, 2020, 150: 119250 (ESI高被引论文, 中科院SCI工程技术大类第一分区TOP期刊, IF: 5.58; 代表作-01)
[2] LI Lin, TAN Da-peng*, WANG Tong, YIN Zi-chao, FAN Xing-hua, WANG Rong-hui. Multiphase coupling mechanism of free surface vortex and the vibration-based sensing method. Energy, 2021, 216: 119136 (中科院SCI工程技术大类第一分区TOP期刊, IF: 7.15; 代表作-02)
[3] TAN Da-peng, LI Lin, ZHU Yin-long, ZHENG Shuai, RUAN Huan-jie, JIANG Xiao-yu. An embedded cloud database service method for distributed industry monitoring [J]. IEEE Transactions on Industrial Informatics, 2018, 14(7): 2881–2893 (ESI高被引论文, 中科院SCI工程技术大类第一分区TOP期刊, IF: 10.22; 代表作-03)
[4] TAN Da-peng, Zhang Li-bin. A WP-based nonlinear vibration sensing method for invisible liquid steel slag detection[J]. Sensors and Actuators B, 2014, 202: 1257–1269 (中科院SCI工程技术大类第一分区TOP期刊, IF: 7.46; 代表作-04)
[5] TAN Da-peng, LI Pei-yu, JI Yi-xuan, WEN Dong-hui, LI Chen. SA-ANN-based slag carry-over detection method and the embedded WME platform[J]. IEEE Transactions on Industrial Electronics, 2013, 60(10): 4702–4713 (中科院SCI工程技术大类第一分区TOP刊, IF: 8.24; 代表作-05)
[6] ZHENG Shui-hua, YU Yan-kun, QIU Mian-zhen, WANG Liu-ming, TAN Da-peng*. A modal analysis of vibration response of a cracked fluid-filled cylindrical shell. Applied Mathematical Modelling, 2021, 91: 934-958 (中科院SCI数学大类第一分区TOP期刊, IF: 5.13)
[7] WANG Yang-yu, ZHANG Yong-le, TAN Da-peng*, ZHANG Yong-chao. Key technologies and development trends in advanced intelligent sawing equipments. Chinese Journal of Mechanical Engineering, In Press, 2021, DOI: 10.1186/s10033-021-00547-6 (特邀综述, 卓越计划重点期刊, IF: 1.94)
[8] GE Man, JI Shi-ming, TAN Da-peng*. Erosion analysis and experimental research of gas-liquid-solid soft abrasive flow polishing based on cavitation effects. International Journal of Advanced Manufacturing Technology, In Press, 2021, DOI: 10.1016/j.jamt.2021.09.045 (ESI-Q1区期刊, IF: 3.23)
[9] WANG Jia-xing, GAO Si-bin, TANG Zhe-jun, TAN Da-peng*, CAO Bin, FAN Jing. A context-aware recommendation system for improving manufacturing process modeling. Journal of Intelligent Manufacturing, In Press, 2021, DOI: 10.1007/s10823-033-1277-3 (中科院SCI工程技术大类第二分区期刊, IF: 6.49)
[10] FAN Xing-hua, TAN Da-peng*, LI Lin, YIN Zi-chao, WANG Tong. Hybrid modeling and solution method of gas-liquid-solid three-phase particle flow [J]. Acta Physica Sinica, In Press, 2021, DOI: 10.7498/aps.70.20211785 (ESI-Q1区期刊, IF: 0.82)
[11] LI Lin, QI Huan, YIN Zi-chao, LI Dai-feng, ZHU Zhi-liang, VIBOON Tangwarodomnukun, TAN Dapeng*. Investigation on the multiphase sink vortex Ekman pumping effects by CFD-DEM coupling method[J]. Powder Technology, 2020, 360: 462-480 (ESI热点/高被引论文, 中科院SCI工程技术大类第二分区TOP期刊, IF: 5.13)
[12] PAN Ye, JI Shi-ming, TAN Da-peng*. Cavitation based soft abrasive flow processing method [J]. International Journal of Advanced Manufacturing Technology, 2020, 109(9): 2587-2602 (ESI高被引论文, ESI-Q1区期刊, IF: 3.23)
[13] WANG Jia-xing, TAN Da-peng*, CAO Bin, FAN Jing, DEEP Samundra. An independent path-based process recommendation algorithm for improving biomedical process modeling[J]. Electronics Letters, 2020, 56(11): 531-533 (ESI-Q1区期刊/ZJU-TOP期刊, IF: 1.31)
[14] LI Lin, LU Jian-fei, FANG Hui, YIN Zi-chao, WANG Tong, WANG Rong-hui, FAN Xing-hua, ZHAO Lin-jie, TAN Da-peng*, WAN Yue-hua. Lattice Boltzmann method for fluid-thermal systems: status, hotspots, trends and outlook. IEEE Access, 2020, 8: 27649–27675. (中科院SCI工程技术大类第二分区期刊, IF: 3.37)
[15] HU Xiong-xin, XU Fang, TAN Da-peng. A synchronous sampling-based direct current estimation method for self-sensing active magnetic bearings[J]. Journal of Zhejiang University-SCIENCE A, 2020, 21(5): 401-405 (ESI-Q2区期刊, IF: 2.26)
[16] HU Xiong-xin, XU Fang, WANG Rong-hui, TAN Da-peng. Synchronous sampling-based direct current estimation method for self-sensing active magnetic bearings[J]. Sensors, 2020, 20(12): 3497 (中科院SCI工程技术大类第二分区TOP期刊, IF: 3.58)
[17] LU Jian-fei, WANG Tong*, LI Lin, YIN Zi-chao, WANG Rong-hui, FAN Xing-hua Fan, TAN Da-peng*. Dynamic characteristics and wall effects of bubble bursting in gas-liquid-solid three-phase particle flow [J]. Processes, 2020, 8: 760 (JCR-Q2区期刊, IF: 2.85)
[18] YIN Zi-chao, LU Jian-fei*, LI Lin, WANG Tong, WANG Rong-hui, FAN Xing-hua, LIN Hou-kai, HUANG Yuan-shun, TAN Da-peng*. Optimized scheme for accelerating the slagging reaction and slag–metal–gas emulsification in a basic oxygen furnace [J]. Applied Sciences, 2020, 10(15): 5101 (JCR-Q2区期刊, IF: 2.68)
[19] TAN Da-peng, ZHANG Li-bin, AI Qing-lin. An embedded self-adapting network service framework for networked manufacturing system[J]. Journal of Intelligent Manufacturing, 2019, 30(2): 539–556 (ESI高被引论文, 中科院SCI工程技术大类第二分区期刊, IF: 6.49)
[20] TAN Da-peng, LI Lin, ZHU Yin-long, ZHENG Shuai, YIN Zi-chao, LI Dai-feng. Critical penetration condition and Ekman suction-extraction mechanism of sink vortex [J]. Journal of Zhejiang University-SCIENCE A, 2019, 20(1): 61-72 (ESI高被引论文, ESI-Q2区期刊, IF: 2.26)
[21] WANG Yang-yu, NI Peng-cheng, WEN Dong-hui, LIN Qiong, WANG De-jie, MA Chang-qing, RAO Yan-jin, WANG Han-peng, TAN Da-peng*. Dynamic performance optimization of circular sawing machine gearbox[J]. Applied Sciences, 2019, 9(20): 10.3390/app9204458 (JCR-Q2区期刊, IF: 2.68)
[22] ZHANG Li-bin, LV Huan-pei, TAN Da-peng*, XU Fang, CHEN Jiao-liao, BAO Guan-jun, CAI Shi-bo. An adaptive quantum genetic algorithm for task sequence planning of complex assembly systems[J]. Electronics Letters, 2018, 54(14): 870-871 (ESI-Q1区期刊/ZJU-TOP期刊, IF: 1.31)
[23] ZHANG Li, YUAN Zhi-min, TAN Da-peng*, HUANG Yi. An Improved abrasive flow processing method for complex geometric surfaces of titanium alloy artificial joints[J]. Applied Sciences, 2018, 28(7): 1037 (JCR-Q2区期刊, IF: 2.68)
[24] TAN Da-peng, CHEN Shu-ting, BAO Guan-jun, ZHANG Li-bin. An embedded lightweight GUI component library and the ergonomics optimization method for industry process monitoring[J]. Frontiers of Information Technology & Electronic Engineering, 2018, 19(5): 604-625 (ESI高被引论文, 中国工程院院刊, IF: 2.16)
[25] GE Jiang-qin, JI Shi-ming, TAN Da-peng*. A gas-liquid-solid three-phase abrasive flow processing method based on bubble collapsing[J]. International Journal of Advanced Manufacturing Technology, 2018, 95(1-4): 1069–1085 (ESI-Q1区期刊, IF: 3.23)
[26] CHEN Shu-ting, TAN Da-peng*. A SA-ANN-based modeling method for human cognition mechanism and the PSACO cognition algorithm[J]. Complexity, 2018, 2018: 6264124 (ESI高被引论文, 中科院工程技术大类第二分区TOP期刊, IF: 2.83)
[27] JI Shi-ming, GE Jiang-qin, TAN Da-peng*. Wall contact effects of particle-wall collision process in two-phase particle fluid[J]. Journal of Zhejiang University-SCIENCE A, 2017, 18(12): 958-973 (ESI-Q2区期刊, IF: 2.26)
[28] ZHANG Li, WANG Jin-shun, TAN Da-peng*, YUAN Zhi-min. Gas compensation based abrasive flow processing method for complex titanium alloy surfaces[J]. International Journal of Advanced Manufacturing Technology, 2017, 92(9-12): 3385–3397 (ESI-Q1区期刊, IF: 3.23)
[29] TAN Da-peng, NI Ye-sha, ZHANG Li-bin. Two-phase sink vortex suction mechanism and penetration dynamic characteristics in ladle teeming process. Journal of Iron and Steel Research, International, 2017, 24(7): 669–677 (ESI-Q2区期刊, IF: 1.26)
[30] LI Jun, JI Shi-ming, TAN Da-peng*. Improved soft abrasive flow finishing method based on turbulent kinetic energy enhancing. Chinese Journal of Mechanical Engineering, 2017, 30(2): 301–309 (卓越计划重点期刊, IF: 1.94)
[31] TAN Da-peng, JI Shi-ming, FU You-zhi. An improved soft abrasive flow finishing method based on fluid collision theory[J]. International Journal of Advanced Manufacturing Technology, 2016, 85(5): 1261–1274 (ESI-Q1区期刊, IF: 3.23)
[32] TAN Da-peng, YANG Tao, ZHAO Jun, JI Shi-ming. Free sink vortex Ekman suction-extraction evolution mechanism[J]. Acta Physica Sinica, 2016, 65(5): 054701 (ESI-Q1区期刊, IF: 0.82)
[33] CHEN Jiao-liao,XU Fang, TAN Da-peng*. A control method for agricultural greenhouse heating based on computational fluid dynamics and energy prediction model[J]. Applied Energy, 2015, 141: 106-118 (中科院SCI工程技术大类第一分区TOP期刊, IF: 9.75)
[34] TAN Da-peng, JI Shi-ming, JIN Ming-sheng. Intelligent computer-aided instruction modeling and a method to optimize study strategies for parallel robot instruction[J]. IEEE Transactions on Education, 2013, 56(3): 268–273 (教学研究论文, 中科院SCI工程技术大类第二分区刊, IF: 2.12)
[35] LI Chen, JI Shi-ming, TAN Da-peng*. Multiple-loop digital control method for 400Hz inverter system based on phase feedback[J]. IEEE Transactions on Power Electronics, 2013, 28(1): 408–417 (中科院SCI工程技术大类第一分区TOP期刊, IF: 6.15)
[36] LI Chen, JI Shi-ming, TAN Da-peng*. Softness abrasive flow method oriented to tiny scale mold structural surface[J]. International Journal of Advanced Manufacturing Technology, 2012, 61(9-12): 975–987 (ESI-Q1区期刊, IF: 3.23)
[37] JI Shi-ming, WENG Xiao-xing, TAN Da-peng *. Analytical method of softness abrasive two-phase flow field based on 2D model of LSM[J]. Acta Physica Sinica, 2012, 61(1): 010205 (ESI-Q1区期刊, IF: 0.82)
[38] JI Shi-ming, XIAO Feng-qing, TAN Da-peng*. Analytical method for softness abrasive flow field based on discrete phase model[J]. Science China - Technological Sciences, 2010, 53(10): 2867–2877 (中科院SCI工程技术大类第二分区期刊, IF: 3.57)
[39] TAN Da-peng, JI Shi-ming, LI Pei-yu, PAN Xiao-hong. Development of vibration style ladle slag detection method and the key technologies[J]. Science China - Technological Sciences, 2010, 53(9): 2378–2387 (中科院SCI工程技术大类第二分区期刊, IF: 3.57)
[40] TAN Da-peng, LI Pei-yu, PAN Xiao-hong. Application of improved HMM algorithm in slag detection system[J]. Journal of Iron and Steel Research, International, 2009, 16(1): 1–6 (ESI-Q2区期刊, IF: 1.26)
2. 近期第一/联系发明人授权发明专利(30件)
[1] 谭大鹏, 倪耶莎, 蔡世波. 一种薄壳流固耦合振动检测系统及其控制方法. 专利申请号: 201710403030.0, 2017.6.1 / 专利授权号: ZL 2017 1 0403030.0, 2019.5.31
[2] 谭大鹏, 鲍官军, 倪耶莎. 一种嵌入式智能化机电设备状态监测系统. 专利申请号: 201610832997.6, 2016.9.20 / 专利授权号: ZL 2016 1 0832997.6, 2018.9.21
[3] 谭大鹏, 张立彬, 艾青林. 一种基于可协作Petri网的可容错柔性小件装配控制方法. 专利申请号: 201610210985.X, 2016.4.6 / 专利授权号: ZL 2016 1 0210985.X, 2018.9.7
[4] 谭大鹏, 陈教料, 胥芳. 一种微小尺寸装配推送装置及方法. 专利申请号: 201610833160.3, 2016.9.20 / 专利授权号: ZL 2016 1 0833160.3, 2018.9.7
[5] 谭大鹏, 倪耶莎, 杨涛. 一种自由汇流旋涡冲击监测系统. 专利申请号: 201610196812.7, 2016.8.17 / 专利授权号: ZL 2016 1 0196812.7, 2018.9.18
[6] 谭大鹏, 杨涛, 倪耶莎. 一种汇流旋涡冲击振动识别方法. 专利申请号: 201610195899.6, 2016.3.31 / 专利授权号: ZL 2016 1 0195899.6, 2018.9.18
[7] 谭大鹏, 杨涛, 倪耶莎. 一种汇流旋涡抽吸形成机理观测实验平台. 专利申请号: 201610200912.2, 2016.3.31 / 专利授权号: ZL 2016 1 0200912.2, 2018.6.1
[8] 谭大鹏, 计时鸣, 应申舜. 一种面向振动式钢包下渣检测的嵌入式数据采集系统. 专利申请号: 201010279782.9, 2010.9.14 / 专利授权号: ZL 2010 1 0279782.9, 2013.1.16
[9] 谭大鹏, 张立彬, 张洪涛. 一种嵌入式巡检仪器控制平台. 专利申请号: 201110411467.1, 2011.12.13 / 专利授权号: ZL 2011 1 0411467.1, 2013.11.13
[10] 谭大鹏, 袁巧玲, 计时鸣. 一种模具微细结构表面流体精密加工观测方法及装置. 专利申请号: 201110355675.9, 2011.11.10 / 专利授权号: ZL 2011 1 0355675.9, 2014.6.11
[11] 谭大鹏, 胥芳, 潘国兵. 一种工业监控网络数据采集结点. 专利申请号: 201110354684.1, 2011.11.10 / 专利授权号: ZL 2011 1 0354684.1, 2014.7.2
[12] 谭大鹏, 张立彬, 艾青林. 一种智能工业网络监控系统. 专利申请号: 201110354682.2, 2011.11.10 / 专利授权号: ZL 2011 1 0354682.2, 2013.11.6
[13] 谭大鹏, 计时鸣, 李志鑫. 一种钢包下渣检测水模型实验平台. 专利申请号: 201010279649.3, 2010.9.13 / 专利授权号: ZL 2010 1 0279649.3, 2012.1.25
[14] 谭大鹏, 计时鸣, 金明生. 一种钢包卷渣过程识别方法. 专利申请号: 201010280194.7, 2010.9.14 /专利授权号: ZL 2010 1 0280194.7, 2012.1.25
[15] 谭大鹏, 计时鸣, 李研彪. 嵌入式通用即插即用设备状态监控自适应网络构架实现方法及其系统. 专利申请号: 201010178992.9, 2010.5.21 /专利授权号: ZL 2010 1 0178992.9, 2012.5.30
[16] 谭大鹏, 计时鸣, 王忠飞. 嵌入式通用即插即用工业监控网络数据库服务系统. 专利申请号: 201010178587.7, 2010.5.21 /专利授权号: ZL 2010 1 0178587.7, 2012.11.14
[17] 吕迅, 袁巨龙, 谭大鹏*. 大型平面的超精密自动化加工装置及其加工方法. 专利申请号: 201110129539.3, 2011.5.18 / 专利授权号: ZL 2011 1 0129539.3, 2013.6.
[18] 陈尚俭, 郑俊, 谭大鹏*. 一种基于激光超声融合扫描的无线定位平整度检测系统. 专利申请号: 201210527614.6, 2012.12.5 / 专利授权号: ZL 2012 1 0527614.6, 2015.08.19
[19] 陈尚俭, 郑俊, 谭大鹏. 一种激光平整度测量误差补偿方法. 专利申请号: 201310194842.0, 2013.5.21 / 专利授权号: ZL 2013 1 0194842.0, 2017.12.12
[20] 计时鸣, 唐波, 谭大鹏*. 基于流体体积模型模具微细流道磨料流精密加工控制方法. 专利申请号: 201010159341.5, 2010.4.29 /专利授权号: ZL 2010 1 0159341.5, 2013.1.16
[21]计时鸣, 李琛, 谭大鹏*. 一种软性磨粒流自动搅拌系统. 专利申请号: 201010122313.6, 2010.3.11 / 专利授权号: ZL 2010 1 0122313.6, 2011.8.10
[22]计时鸣, 付有志, 谭大鹏*, 袁巧玲, 章定. 一种能有效增强软性磨粒流湍流的方法及其专用流道装置. 专利申请号: 201010280195.1, 2010.9.14 / 专利授权号: ZL 2010 1 0280195.1, 2012.2.22
[23]计时鸣, 王迎春, 谭大鹏*, 张利, 袁巧玲, 章定, 钟佳奇, 兰信鸿. 一种基于人工智能的软性磨粒两相湍流流型识别方法. 专利申请号: 201010522868.X, 2010.10.28 / 专利授权号: ZL 2010 1 0522868.X, 2012.1.25
[24]计时鸣, 翁晓星, 谭大鹏*. 基于水平集的软性磨粒流流场测试方法. 专利申请号: 201010122684.4, 2010.4.29 / 专利授权号: ZL 2010 1 0122684.4, 2012.2.22
[25]计时鸣, 谭云峰, 谭大鹏, 葛江勤. 一种气液固三相磨粒流超光滑表面流体抛光装置. 专利申请号: 201510056741.6, 2015.2.3 / 专利授权号: ZL 2015 1 0056741.6, 2017.3.15
[26]计时鸣, 韩帅非, 谭大鹏. 一种涡轮旋转多相流抛光自动化设备. 专利申请号: 201610279129.X, 2016.4.28 / 专利授权号: ZL 2016 1 0279129.X, 2018.1.5
[27]计时鸣, 周龙兵, 谭大鹏*. 一种基于模糊控制的软性磨粒流加工方法及其装置. 专利申请号: 201210260275.X, 2012.7.25 / 专利授权号: ZL 2012 1 0260275.X, 2015.4.22
[28]固液两相流中磨粒在不同位置碰撞壁面的概率分布测试装置. 专利申请号: 201210100406.8, 2012.8.1 / 专利授权号: ZL 2012 1 0100406.8, 2014.8.27
[29]计时鸣, 钟佳奇, 谭大鹏*, 李琛. 软性磨粒流磨粒群分布观测装置. 专利申请号: 201110052191.2, 2011.3.4 /专利授权号: ZL 2011 1 0052191.2, 2012.7.25
[30]计时鸣, 池永为, 谭大鹏*, 袁巧玲. 软性磨粒流逐层加工装置. 专利申请号: 201110052187.6, 2011.3.4 /专利授权号: ZL 2011 1 0052187.6, 2012.12.12
3. 近期相关科研奖励(15项)
[1]谭大鹏, 卢建飞, 王扬渝, 汪德杰, 吕伟仁, 吕伟民, 计时鸣, 文东辉, 卢建华, 齐欢. 高性能锯切嵌入式智能控制与云服务关键技术及应用, “吴文俊人工智能科技进步奖”二等奖, 中国人工智能学会, 2019.
[2]谭大鹏. 大型机电液系统流固耦合建模及调控, 浙江省青年数字经济“鸿鹄奖”,共青团浙江省委, 2019.
[3] 谭大鹏. 液固耦合条件下的薄壁管壳振动响应, “陆增祺FPTC高科技奖”二等奖, 陆增祺高科技奖励基金评审委员会, 2012.
[4] 谭大鹏. 考虑旋涡冲击的有限长薄壁管壳振动响应及其检测方法, “陆增祺FPTC高科技奖”开放基金优秀奖, 陆增祺高科技奖励基金评审委员会, 2014.
[5] 谭大鹏. 两相汇流旋涡抽吸演化机理及其非线性冲击振动检测方法, 国家自然科学基金优秀项目, 国家自然科学基金委员会, 2018.
[6] 葛江勤, 计时鸣, 谭大鹏*. A gas-liquid-solid three-phase abrasive flow processing method based on bubble collapsing, 约翰—戴维斯最佳论文奖(B. John Davies Prize for The Best Paper), 施普林格出版社(Springer-Verlag Group), 2019.
[7] 李军, 计时鸣, 谭大鹏*. Improved soft abrasive flow finishing method based on turbulent kinetic energy enhancing, 第三届《机械工程学报》高影响力论文奖, 中国机械工程学会, 2019.
[8] 谭大鹏, 倪耶莎, 张立彬. Two-phase sink vortex suction mechanism and penetration dynamic characteristics in ladle teeming process, 《钢铁研究学报(英文版)》优秀论文奖, 中国钢研集团, 2020.
[9] 谭大鹏. 一种可并行存取汽车停放系统, “第八届全国大学生机械设计创新大赛”一等奖(指导教师), 教育部高等教育司, 2018.
[10] 谭大鹏. 小水果包装机, “第七届全国大学生机械设计创新大赛”二等奖(指导教师), 教育部高等教育司, 2016.
[11] 谭大鹏. 妙笔生花凸轮实验教具, “第六届全国大学生机械设计创新大赛”一等奖(指导教师), 教育部高等教育司, 2014.
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