第一作者论文
(1) 屠世浩, 郝定溢, 苗凯军, 刘迅, 李文龙.深部采选充一体化矿井复杂系统协同开采.中国矿业大学学报,2021,50(3):431-441.
(2) 屠世浩, 郝定溢, 李文龙, 刘迅, 苗凯军, 杨振乾, 班建光.“采选充+X”一体化矿井选择性开采理论与技术体系构建.采矿与安全工程学报,2020,37(1):81-92.
(3) 屠世浩, 张村, 杨冠宇, 白庆升, 闫瑞龙.采空区渗透率演化规律及卸压开采效果研究.采矿与安全工程学报,2016,33(4):571-577.
(4) Tu, S., Li, Z.,Ye, Z., Zhang, C., & Zhang, L.The Complex Function Method Roadway Section Design of the Soft Coal Seam.Mathematical Problems in Engineering, 2016, (2016),1-12.
(5) Tu, S., Tu, H.*, Yuan, Y., Wang, C., & Bai, Q. Optimization of Layout Modes of Mining Roadways of a Working Face in Single and Thick High Gas Outburst Seam. DISASTER ADVANCES, 2013,(6), 55-65
(6) 屠世浩, 白庆升, 屠洪盛. 浅埋煤层综采面护巷煤柱尺寸和布置方案优化.采矿与安全工程学报, 2011, 28(4):505-510.
(7) 屠世浩, 窦凤金, 万志军, 王方田, 袁永. 浅埋房柱式采空区下近距离煤层综采顶板控制技术. 2011,煤炭学报(3), 366-370.
(8) 屠世浩, 王方田, 窦凤金, 袁永, 鲁岩. 上层煤柱下综放沿空回采巷道矿压规律研究. 中国矿业大学学报, 2010,39(1), 1-5.
(9) Tu, S., Yuan, Y., Li N, Dou F., Wang, F. Hydraulic support stability control of fully mechanized top coal caving face with steep coal seams based on instable critical angle. 2008,Journal of Coal Science & Engineering, 14(3), 382-385.
(10) 屠世浩, 张琳, 饶志强. "三软"煤层回采巷道支护数值模拟研究. 矿山压力与顶板管理, 2005, 22(4), 9-11.
(11) 屠世浩, 郝明奎, 谢耀社. 孤岛煤柱综采工作面旋转开采关键技术. 中国矿业大学学报, 2004, 33(5):520-523.
(12) 屠世浩, 邹喜正, 陈宜先. 厚煤层全煤巷采区巷道布置关键技术研究. 中国矿业大学学报, 2004, 33(2):174-177.
(13) 屠世浩, 张先尘. 高产高效矿井煤流采运系统分析.中国矿业大学学报, 1997(1):39-42.
通讯作者论文
(1) 李文龙,屠世浩, 郝定溢,刘迅,苗凯军.推采速度和充实率对深井充填面厚硬顶板聚能与释能的影响.中国矿业大学学报,2021,50(3):498-506.
(2) 苗凯军,屠世浩,刘迅, 纪欣卓.深部厚硬顶板下充填面留巷大变形分析及控制.煤炭学报,2021,46(4):1232-1241.
(3) Hao, D., Tu, S. *, & Zhang, C. (2020). Experimental Study on the Effect of Moisture Content on Bituminous Coal Porosity Based on 3D Reconstruction of Computerized Tomography,Natural Resources Research, 29(3),1657-1673.
(4) Liu, X., Tu, S. *, Hao, D., Lu, Y., Miao, K.,& Li, W.(2021).Deformation Law and Control Measures of Gob-Side Entry Filled with Gangue in Deep Gobs: A Case Study,Advances in Materials Science and Engineering, 2021.
(5) Hao, D., Tu, S. *, Zhang, C., & Tu, H. (2020). Quantitative characterization and three-dimensional reconstruction of bituminous coal fracture development under rock mechanics testing, Fuel, 267(2020).
(6) Bai, Q., & Tu, S. *. (2020). Numerical observations of the failure of a laminated and jointed roof and the effective of different support schemes: a case study, Environmental Earth Sciences, 79(10):202.
(7) Bai, Q., & Tu, S. *. (2019). A General Review on Longwall Mining-Induced Fractures in Near-Face Regions, Geofluids, 2019, 1-22.
(8) Tu, H., Tu, S. *, Zhu, D., Hao, D., & Miao, K. (2019). Force-Fracture Characteristics of the Roof above Goaf in a Steep Coal Seam: A Case Study of Xintie Coal Mine, Geofluids, 2019, 1-11.
(9) Zhu, D., Tu, S.*, Tu, H., & Yang, Z. (2018). Mechanisms of support failure and prevention measures under double-layer room mining gobs – A case study: Shigetai coal mine. International Journal of Mining Science and Technologys, 29(6), 955-962.
(10) Zhu, D., & Tu, S.*. (2017). Mechanisms of support failure induced by repeated mining under gobs created by two-seam room mining and prevention measures. Engineering Failure Analysis, 82(2017), 161-178.
(11) Zhang, C., Tu, S.*, Zhang, L., Bai, Q., Yuan, Y., & Wang, F. (2016). A methodology for determining the evolution law of gob permeability and its distributions in longwall coal mines. Journal of Geophysics and Engineering, 13(2), 181-193.
(12) Wang, C., & Tu, S. *, Chen, M.,& Yuan, Y. (2016). Optimal Selection of a Longwall Mining Method for a Thin Coal SeamWorking Face.Arabian Journal of Geosciences, 41 (2016), 3771-3781.
(13) Wang, C., & Tu, S. *, Zhang, L., Yang, L., & Tu, H. (2015). Auxiliary transportation mode in a fully-mechanized face in a nearly horizontal thin coal seam.International Journal of Mining Science and Technology, 25 (2015), 963–968
(14) Zhang, C., `Tu, S.*, Bai, Q., Yang, G., Zhang, L. Evaluating pressure-relief mining performances based on surface gas venthole extraction data in longwall coal mines. Journal of Natural Gas Science & Engineering, 2015. 24, 431-440.
(15) Tu, H., Tu, S. *, Yuan, Y., Wang, F., & Bai, Q. (2015). Present situation of fully mechanized mining technology for steeply inclined coal seams in china. Arabian Journal of Geosciences, 8(7), 4485-4494.
(16) Yong, Y., Shihao, T. *, Xiaogang, Z., & Bo, L. (2015). Dynamic effect and control of key strata break of immediate roof in fully mechanized mining with large mining height. Shock & Vibration, 2015, 1-11.
(17) Wang, C., & Tu, S. * (2015). Selection of an Appropriate Mechanized Mining Technical Process for Thin Coal Seam Mining. Mathematical Problems in Engineering, 2015.
(18) Bai, Q. S., Tu, S. H. *, Wang, F. T., Zhang, X. G., Tu, H. S., & Yuan, Y. (2014). Observation and numerical analysis of the scope of fractured zones around gateroads under longwall influence. Rock Mechanics and Rock Engineering, 47(5), 1939.
(19) Bai, Q. S., Tu, S. H. *, Zhang, X. G., Zhang, C., & Yuan, Y. (2014). Numerical modeling on brittle failure of coal wall in longwall face—a case study. Arabian Journal of Geosciences, 7(12), 5067-5080.
(20) Liu, A., Tu, S. *, Wang, F., Yuan, Y., Zhang, C., & Zhang, Y. (2013). Numerical Simulation of Pressure Relief Rule of Upper and Lower Protected Coal-seam in Thin-protective-seam Mining. DISASTER ADVANCES, 6, 16-25.
(21) Wang, F., Tu, S. *, Yuan, Y., Feng, Y., Chen, F., & Tu, H. (2013). Deep-hole pre-split blasting mechanism and its application for controlled roof caving in shallow depth seams. International Journal of Rock Mechanics & Mining Sciences, 64(6), 112-121.
(22) Yuan, Y., Tu, S. *, Zhang, X., & Liu, A. (2013). Mechanism and control technique of rib spalling disaster in fully-mechanized mining with large mining height in soft coal seam face. Disaster Advances, 6, 92-98.
(23) Wang, F., Ren, T., Tu, S. *, Hungerford, F., & Aziz, N. (2012). Implementation of underground longhole directional drilling technology for greenhouse gas mitigation in chinese coal mines. International Journal of Greenhouse Gas Control, 11(6), 290-303.
(24) Wang, F., Tu, S. *, & Bai, Q. (2012). Practice and prospects of fully mechanized mining technology for thin coal seams in china. Journal- South African Institute of Mining and Metallurgy, 112(112), 161-170.