参考文献/References:
[1] 张登奇, 杨慧银. 信号的频谱分析及MATLAB 实现[J].湖南理工学院学报(自然科学版), 2010, 23(3): 29-33.
ZHANG Dengqi, YANG Huiyin. Analysis of signal spectrum and realization based on MATLAB [J] Journal of Hunan Institute of Science and Technology(Natural Sciences
Edition), 2010, 23(3): 29-33.
[2] 赵明阶, 吴德伦. 工程岩体的超声波分类及强度预测[J].岩石力学与工程学报, 2000,19(1): 89-92.
ZHAO Mingjie, WU Delun. Engineering rock mass ultrasonic classification and prediction of strength[J]. Chinese Journal of Rock Mechanics and Engineering, 2000,19(1): 89-92.
[3] 邓华锋, 原先凡, 李建林.饱水度对砂岩纵波波速及强度影响的试验研究[J].岩石力学与工程学报, 2013,32(8):1625-1631.
DENG Huafeng, YUAN Xianfan, LI Jianlin. Experimental research on influence of saturation degree on sandstone longitudinal wave velocity and strength[J].Chinese Journal of Rock Mechanics and Engineering,2013, 32(8): 1625-1631.
[4] 郭印同, 杨春和.川东北砂岩单三轴压缩过程中应力-波速变化规律的试验研究[J].矿业研究与开发, 2009,29(3): 17-20.
GUO Yintong, YANG Chunhe. Experimental study on the change law between stress and velocity of longitudinal wave for the sandstone from northeastern Sichuan in
uniaxial and triaxial compression[J]. Mining Research and Development, 2009, 29(3):17-20
[5] ZHOU Wenge, XIE Hongsen, ZHAO Zhidan, et al. Compressional wave velocity and phase transformation for a trachybasalt at 2.0GPa and up to 1 623K[J].Progress in Natural Science, 1999, 9(4):279-285.
[6] 岳兰秀, 谢鸿森, 刘丛强, 等. 2.0 GPa 室温至1 200 ℃条件下斜长角闪岩的纵波速度及其衰减[J].高压物理学报, 2002,16(3):176-182.
YUE Lanxiu, XIE Hongsen, LIU Congqiang, et al. Plagioclase amphibolite compressional wave velocity and attenuation under conditions of 2.0 GPa room temperature to 1 200 ℃[J].Chinese Journal of High Press Physics, 2002, 16(3):176-182.
[7] 蒋玺, 周文戈, 刘丛强, 等. 1.0GPa 和常温至1 100 ℃条件下角闪石斜长片麻岩的纵波波速变化实验测量与理论计算[J].岩石学报, 2008, 24(10):2441-2446.
JIANG Xi, ZHOU Wenge, LIU Congqiang, et al. Compressional wave velocity for hornblende plagioclase at 1.0 Gpa and up to 1 100 ℃: Measured and calculated results[J].Acta Petrologica Sinica, 2008, 24(10): 2441-2446.
[8] 霍润科, 李宁, 张浩博. 酸性环境下类砂岩材料物理性质的试验研究[J].岩土力学, 2006, 27(9): 1541-1545.
HUO Runke, LI Ning, ZHANG Haobo. Experimental study on physical characteristics of mortar subjected to hydrochloric acid attack[J].Rock and Soil Mechanics 2006,27(9): 1541-1545.
[9] 霍润科. 酸性环境下砂浆、砂岩材料的受酸腐蚀过程及其基本特性劣化规律的试验研究[J]. 岩石力学与工程学报, 2007, 26(3): 647-651.
HUO Runke. Experimental research on progressive and deteriorative characteristics of sandstone and mortar subjected to hydrochloric acid corrosion[J]. Chinese Journal of Rock Mechanics and Engineering, 2007, 26(3): 647-651.
[10] 张慧, 黄真萍, 洪儒宝. 超声波检测桩身混凝土缺陷的信号频谱分析研究[J].福州大学学报(自然科学版),2007,35(5): 731-737.
ZHANG Hui, HUANG Zhenping, HONG Rubao. Study on frequency spectrum analysis of ultrasonic wave in the defect of concrete pile[J]. Journal of Fuzhou University (Natural Science Edition), 2007, 35(5): 731-737.
相似文献/References:
[1]霍润科,韩飞,李曙光,等.受酸腐蚀砂岩物理化学及力学性质的试验研究[J].西安建筑科技大学学报:自然版,2019,51(01):21.[doi:10.15986/j.1006-7930.2019.01.004]
HUO Runke,HAN Fei,LI Shuguang,et al.Experimental study on physicochemical and mechanical properties of acid-corroded sandstone[J].J.Xi’an Univ. of Arch. & Tech.:Natural Science Edition,2019,51(01):21.[doi:10.15986/j.1006-7930.2019.01.004]