发表论文
[1]Wang Y, Wang Z*, Yao X, et al. Effect of Lode angle in predicting the behaviour of stiffened 921A steel target plates in ballistic impact by truncated ogive projectiles[J]. International Journal of Impact Engineering, 2024, 185: 104841.
[2]Wang Y, Wang Z*, Liang S, et al. Experimental and numerical study on the failure modes of ship stiffened plate structure under projectile perforation[J]. International Journal of Impact Engineering, 2023, 178: 104590.
[3]Wang Y, Wang Z*, Yao X, et al. Material similarity law of blunt projectiles penetrating scaled steel target plates[J]. International Journal of Impact Engineering, 2023, 178: 104603.
[4]Wei Q, Wang Z*, Shi D, et al. Method based on the membrane theory for equivalence between arbitrarily shaped pressure pulse applied on circular plate and rectangular pressure pulse[J]. International Journal of Impact Engineering, 2023: 104658.
[5]Wang Y, Yao X, Wang Z*, et al. Compensation model for truncated ogive projectiles penetrating ship stiffened plates made from different materials[J]. Ocean Engineering, 2023, 286: 115604.
[6]Wang Y, Wang Z*, Zhang W, et al. A new similarity law for penetration of steel plates by blunt projectiles[J]. Ships and Offshore Structures, 2022: 1–10.
[7]Qin Y, Yao X, Wang Z*, et al. Experimental investigation on damage features of stiffened cabin structures subjected to internal blast loading[J]. Ocean Engineering, 2022, 265: 112639.
[8]Qin Y, Wang Y, Wang Z*, et al. Investigation on similarity laws of cabin structure for the material distortion correction under internal blast loading[J]. Thin-Walled Structures, 2022, 177: 109371.
[9]Qin Y, Wang Y, Wang Z*, et al. Investigation on similarity laws of cabin structure under internal blast loading[J]. Ocean Engineering, 2022, 260: 111998.
[10]Wang Z, Hu H*. Moment tensors of a dislocation in a porous medium[J]. Pure and Applied Geophysics, 2016, 173(6): 2033-2045.
[11]Wang Z, Hu H*, Yang Y. Reciprocity relations for the elastodynamic fields generated by multipole sources in a fluid–solid configuration[J]. Geophysical Journal International, 2015, 203(2): 883-892.
[12]Guan W, Hu H*, Wang Z. Permeability inversion from low‐frequency seismoelectric logs in fluid‐saturated porous formations[J]. Geophysical Prospecting, 2013, 61(1): 120-133.
[13]Wang Z, Hu H*, Guan W. Three-dimensional finite-difference time-domain computation of the seismoelectric field generated by a slipping fault[C]//Poromechanics V: Proceedings of the Fifth Biot Conference on Poromechanics. 2013: 2032-2041.
[14]Wang Z, Guan W, Gao Y, et al. 2-D FDTD computation of seismoelectric fields excited by an underground double couple in a horizontally layered formation[J]. Proceedings of the EGU General Assembly 2012, 2012: 6792.
[15]王逸南,张建伟,王治*,姚熊亮,杨娜娜.基于板厚补偿的921A钢与Q345钢靶板在截卵形弹体侵彻下的等效方法[J].兵工学报,2021,42(11):2465-2475.
[16]姚熊亮,王治*,叶墡君,王志凯.舰船靶标设计中的材料等效方法[J].哈尔滨工程大学学报,2021,42(08):1110-1116.
[17]姚熊亮,王治*,叶墡君,吴子奇,王志凯.球头弹体侵彻舰船板架加强筋时的攻角变化简化理论模型[J].爆炸与冲击,2021,41(03):130-141.
[18]秦业志,姚熊亮,王治*,王莹,王志凯,吕林梅.基于物质点法的动能弹丸毁伤效应研究[J].中国造船,2020,61(02):103-116.
[19]姚熊亮,吴子奇,王治*,徐振桓.战斗部对舰船靶标侵彻毁伤效能研究[J].哈尔滨工程大学学报,2019,40(01):141-145.
[20]吴子奇,王治*,史冬岩,王青山,姚熊亮.任意边界条件下变厚度中厚矩形板的静动态特性分析[J].船舶力学,2018,22(11):1407-1420.
[21]王治, 胡恒山*, 关威, 等. 孔隙地层震电测井波场分波分析[J]. 物理学报, 2012, 61(5): 264-273.