1.论文
(1)Ma,P., Yahong Zhao, Zhanping Song, Hideki Shimada, Hao Zhou, Baosong Ma. “Experimental Study and Performance Comparison of Different Jacking Pipes under the Effects of Concentrated Loads.” Journal of Pipeline Systems Engineering and Practice(2025). DOI: 10.1061/JPSEA2.PSENG-1692.
(2)Zhao, Yahong, Peng Ma(通讯), Yang Chen, Xuefeng Yan, Baosong Ma, and Fuming Wang. "Stability Assessment of CIPP Liners under Varied Boundary Conditions: A Theoretical and Simulation Study." Results in Engineering (2024): 102187.
(3)Ma P., Zhao Y, Shimada H, et al. Effectiveness analysis of a novel rectangular tunnel boring machine with planetary transmission for box jacking[J]. Scientific Reports, 2024, 14(1): 27059.
(4)Ma, P., Hideki Shimada, Dyson. Moses, Sheng Huang, Baosong Ma. "Transition of the pipe jacking technology in Japan and investigation of its application status." Tunnelling and Underground Space Technology 139 (2023): 105212.
(5)Ma, P., Hideki Shimada, Takashi Sasaoka, Dyson N. Moses, Fumihiko Matsumoto, and Xuehua Chen. "Investigation on the engineering effects of the geometrical configuration of the jacking rectangular pipe." Tunnelling and Underground Space Technology 119 (2022): 104239.
(6)Ma, P., Shimada, H., Sasaoka, T., Hamanaka, A., Moses, D. N., Dintwe, T. K., ... & Huang, S. (2022). A new method for predicting the friction resistance in rectangular pipe-jacking. Tunnelling and Underground Space Technology, 123, 104338.
(7)马鹏,岛田英树,马保松,黄胜,周浩.矩形顶管关键技术研究现状及发展趋势探讨[J].隧道建设(中英文),2022,42(10):1677-1692.
(8)Ma, P., Shimada, H., Sasaoka, T., Hamanaka, A., Dintwe, T.K. and Pan, D., 2021. Investigation on the Performance of Pipe Roof Method Adjacent to the Underground Construction. Geotechnical and Geological Engineering, pp.1-11.
(9)Ma P., Hideki Shimada, Baosong Ma, Takashi Sasaoka, Akihiro Hamanaka, Fumihiko Matsumoto, and Tomo Morita. Simulation investigation on the engineering effects of geometric parameters in rectangular pipe jacking. International No-Dig 2022 38th International Conference and Exhibition.
(10)Ma, P., Qian, D., Zhang, N., Shimada, H., Pan, D. and Huang, K., 2020. Application of Bolter Miner Rapid Excavation Technology in Deep Underground Roadway in Inner Mongolia: A Case Study. Sustainability, 12(7), p.2588.
2.专利
(1)马鹏,钱德雨,张农,岛田英树,朴春德:一种大断面矩形顶管机,ZL202010063647.4
(2)马鹏,朴春德,王档良,于永涛,李玉泉,王磊:一种岩体小断面通道的顶管管节,ZL201910099631.6
(3)马鹏;钱德雨;张农;岛田英树;朴春德:一种大断面矩形顶管机,ZL2020201334848
(4)马鹏;陈雪华;周丽红;钱德雨;潘东江:一种低阻力挤压扩孔式矩形顶管机及其施工工法,ZL2021205267705
(5)马鹏;马保松;赵雅宏;黄胜;周浩:一种矩形顶管注浆减阻管节装置及其施工方法,ZL2024103498652
(6)马鹏;马保松;赵雅宏;黄胜;周浩:一种用于复杂岩土层的曲线顶管注浆系统,ZL2024103498633
(7)马鹏;陈雪华;周丽红;钱德雨;潘东江:一种低阻力挤压扩孔式矩形顶管机及其施工工法,ZL2021102731321
(8)马鹏;赵雅宏;周浩:一种顶管管节及制作方法,ZL202410363210.0
3.获奖
(1)马鹏(4/13); 车行隧道大断面超长矩形顶管关键技术创新与应用,上海市科学技术委员会,上海市科技进步奖(二等奖),2024.
(2)马鹏(5/12);大断面矩形交通隧道掘进及风险控制技术;河南省教育厅,河南省教育厅教育成果奖(一等奖),2023.
(3)马鹏(5/12); 车行隧道大断面超长矩形顶管关键技术创新与应用,河南省政府,河南省科学技,术进步奖(三等奖),2023.
(4)马鹏 (1/5);日本矩形掘进机技术现状及发展趋势,国际非开挖技术研讨会2020年度青年工程师论坛青年之星,省部级,2020.
(5)马鹏 (1/6);矩形顶管断面设计及其工程环境效应,2022年度亚洲土木工程最佳研究,2022.
(6)马鹏 (1/5);矩形顶管关键技术研究现状及发展趋势探讨,2023年度《隧道建设》最具影响力论文,2024.