Page 185 - 《爆炸与冲击》2026年第3期
P. 185

第 46 卷              曾启富,等: 多孔冲击下超临界CO 2 相变破岩半径计算模型                              第 3 期

               [20]   王明宇. 液态二氧化碳相变爆破裂纹扩展规律研究及应用 [D]. 江苏 徐州: 中国矿业大学, 2018: 36–54.
                    WANG  M  Y.  Study  on  crack  propagation  law  of  liquid  carbon  dioxide  phase  transition  blasting  and  its  application  [D].
                    Xuzhou, Jiangsu, China: University of Mining and Technology, 2018: 36–54.
               [21]   孙可明, 辛利伟, 吴迪, 等. 初应力条件下超临界        CO 2 气爆致裂规律模拟研究 [J]. 振动与冲击, 2018, 37(12): 232–238.
                    DOI: 10.13465/j.cnki.jvs.2018.12.035.
                    SUN K M, XIN L W, WU D, et al. Simulation of fracture law of supercritical CO 2  explosion under initial stress condition [J].
                    Journal of Vibration and Shock, 2018, 37(12): 232–238. DOI: 10.13465/j.cnki.jvs.2018.12.035.
               [22]   孙可明, 王金彧, 辛利伟. 不同应力差条件下超临界         CO 2 气爆煤岩体气楔作用次生裂纹扩展规律研究 [J]. 应用力学学报,
                    2019, 36(2): 466–472. DOI: 10.11776/cjam.36.02.B130.
                    SUN K M, WANG J Y, XIN L W. Research on the law of secondary cracks propagation in coal and rock caused by gas
                    wedging  during  supercritical  CO 2   explosion  under  different  stress  differences  [J].  Chinese  Journal  of  Applied  Mechanics,
                    2019, 36(2): 466–472. DOI: 10.11776/cjam.36.02.B130.
               [23]   孙可明, 辛利伟, 吴迪, 等. 初应力条件下超临界       CO 2 气爆致裂规律研究 [J]. 固体力学学报, 2017, 38(5): 473–482. DOI:
                    10.19636/j.cnki.cjsm42-1250/o3.2017.05.011.
                    SUN K M, XIN L W, WU D, et al. Mechanism of fracture caused by supercritical CO 2  explosion under the impact of initial
                    stress [J]. Chinese Journal of Solid Mechanics, 2017, 38(5): 473–482. DOI: 10.19636/j.cnki.cjsm42-1250/o3.2017.05.011.
               [24]   赵博, 邵东亮, 曹先锋, 等. 水平圆管超临界二氧化碳摩阻试验研究 [J]. 科学技术与工程, 2016, 16(25): 75–78. DOI: 1671-
                    1815 2016 025-0075-04.
                    ZHAO B, SHAO D L, CAO X F, et al. An experimental study of supercritical carbon dioxide pressure drop in a horizontal
                    tube [J]. Science Technology and Engineering, 2016, 16(25): 75–78. DOI: 1671-1815 2016 025-0075-04.
               [25]   JOHLITZ M, DIERCKS N, LION A. Thermo-oxidative ageing of elastomers: a modelling approach based on a finite strain
                    theory [J]. International Journal of Plasticity, 2014, 63: 138–151. DOI: 10.1016/j.ijplas.2014.01.012.
               [26]   VOISIN C. Bloch’s conjecture for Catanese and Barlow surfaces [J]. Journal of Differential Geometry, 2014, 97(1): 149–175.
                    DOI: 10.4310/jdg/1404912107.
               [27]   CHEN Z F, LI X Y, WANG W, et al. Dynamic burst pressure analysis of cylindrical shells based on average shear stress yield
                    criterion [J]. Thin-Walled Structures, 2020, 148: 106498. DOI: 10.1016/j.tws.2019.106498.
               [28]   YAO Y P, HU J, ZHOU A N, et al. Unified strength criterion for soils, gravels, rocks, and concretes [J]. Acta Geotechnica,
                    2015, 10(6): 749–759. DOI: 10.1007/s11440-015-0404-x.
               [29]   BAI  M,  ELSWORTH  D.  Coupled  processes  in  subsurface  deformation,  flow,  and  transport  [M].  Reston,  VA:  American
                    Society of Civil Engineers, 2000.
               [30]   韦汉. 隧道工程聚能爆破破岩机理及参数优化研究 [D]. 南宁: 广西大学, 2021: 45–58. DOI: 10.27034/d.cnki.ggxiu.
                    2021.000859.
                    WEI H. Study on rock fragmentation mechanism and parameter optimization of shaped charge blasting in tunnel engineering [J].
                    Nanning: Guangxi University, 2021: 45–58. DOI: 10.27034/d.cnki.ggxiu.2021.000859.
               [31]   费鸿禄, 苏强, 蒋安俊, 等. 爆破载荷下隧道围岩破坏裂隙范围研究 [J]. 爆破器材, 2019, 48(2): 51–56. DOI: 10.3969/j.
                    issn.1001-8352.2019.02.010.
                    FEI  H  L,  SU  Q,  JIANG  A  J,  et  al.  Damage  fracture  range  of  tunnel  surrounding  rock  under  blasting  load  [J].  Explosive
                    Materials, 2019, 48(2): 51–56. DOI: 10.3969/j.issn.1001-8352.2019.02.010.
               [32]   肖思友, 姜元俊, 刘志祥, 等. 高地应力下硬岩爆破破岩特性及能量分布研究 [J]. 振动与冲击, 2018, 37(15): 143–149.
                    DOI: 10.13465/j.cnki.jvs.2018.15.020.
                    XIAO S Y, JIANG Y J, LIU Z X, et al. Hard rock blasting energy distribution and fragmentation characteristics under high
                    earth stress [J]. Journal of Vibration and Shock, 2018, 37(15): 143–149. DOI: 10.13465/j.cnki.jvs.2018.15.020.
               [33]   高维廷, 朱哲明, 朱伟, 等. 动荷载下岩石裂纹动态扩展行为实验研究综述 [J]. 爆炸与冲击, 2023, 43(8): 081101. DOI:
                    10.11883/bzycj-2022-0526.
                    GAO W Y, ZHU Z M, ZHU W, et al. Experimental studies on crack propagation behaviors of rock materials under dynamic
                    loads: a review [J]. Explosion and Shock Waves, 2023, 43(8): 081101. DOI: 10.11883/bzycj-2022-0526.


                                                         034201-16
   180   181   182   183   184   185   186   187   188   189   190