Page 162 - 《应用声学》2025年第2期
P. 162
422 2025 年 3 月
America, 1980, 68(5): 1341–1350. Zou Dapeng, Wu Zhilin, Sun Han, et al. Basic geoa-
[16] Holland C W, Brunson B A. The Biot-Stoll sediment coustic structure and geoacoustic model for seafloor sed-
model: an experimental assessment[J]. The Journal of the iments[J]. Acta Oceanologica Sinica, 2022, 44(9):
Acoustical Society of America, 1988, 84(4): 1437–1443. 145—155.
[17] Hamilton E L. Sound velocity and related properties of [29] GB/T 50123–1999: 土工试验方法标准 [S].
marine sediments, North Pacific[J]. Journal of Geophysi- [30] 同济大学数学系. 高等数学上册 [M]. . 第六版. 北京: 高等教
cal Research, 1970, 75(23): 4423–4446. 育出版社, 2007: 139–145.
[18] Anderson R S. Statistical correlation of physical properties [31] Orsi T H, Dunn D A. Sound velocity and related physi-
and sound velocity in sediments[M]//Physics of Sound in cal properties of fine-grained abyssal sediments from the
Marine Sediments, 1, Hampton L, Ed. New York: Plenum Brazil Basin (South Atlantic Ocean)[J]. The Journal of the
Press, 1974: 48l–5l8. Acoustical Society of America, 1990, 88(3): 1536–1543.
[19] Bachman R T. Acoustic and physical property relation- [32] 唐永禄. 海底沉积物孔隙度与声速的关系 [J]. 海洋学报,
ships in marine sediment[J]. The Journal of the Acoustical 1998, 20(6): 39–43.
Society of America, 1985, 78(2): 616–621. Tang Yonglu. Relationship between sound velocity
[20] Lu B, Li G X, Liu Q, et al. Sea floor sediment and its and porosity of seafloor sediments[J]. Acta Oceanologica
acouso-physical properties in the southeast open sea area Sinica, 1998, 20(6): 39–43.
of Hainan Laiand in China[J]. Marine Georesources and [33] 卢博, 李赶先, 孙东怀, 等. 中国东南近海海底沉积物声学物
Geotechnology, 2008, 26(3): 129–144. 理性质及其相关关系 [J]. 热带海洋学报, 2006, 25(2): 12–17.
[21] 卢良鑫, 雷雄, 刘学伟. 中国南海北部陆坡孔隙度的求取 [J]. Lu Bo, Li Ganxian, Sun Donghuai, et al. Acoustic phys-
地球物理学报, 2013, 56(2): 601–607. ical properties of seafloor sediments in the southeastern
Lu Liangxin, Lei Xiong, Liu Xuewei. Prediction of poros- coast of China and their correlations[J]. Journal of Trop-
ity in the North Margin of the South China Sea[J]. Chinese ical Oceanography, 2006, 25(2): 12–17.
Journal of Geophysics, 2013, 56(2): 601–607. [34] Hamilton E L, Bachman R T. Sound velocity and re-
[22] Helgerud M B, Dvorkin J, Nur A, et al. Elastic-wave ve- lated properties of marine sediments[J]. The Journal of the
locity in marine sediments with gas hydrates: Effective Acoustical Society of America, 1982, 72(6): 1891–1904.
medium modeling[J]. Geophysical Research Letters, 1999, [35] Hamilton E L. Prediction of deep-sea sediment properties:
26(13): 2021–2024. State-of-the-art[M]//Deep-Sea Sediments, 2, Marine Sci-
[23] Zou D P, Zeng Z W, Kan G M, et al. Influence of ence, Antonl Inderbitzen, Ed.: Springer US, 1974: 1–43.
environmental conditions on the sound velocity ratio of [36] 龙建军, 李赶先. 海底沉积物声速与物理性质的理论关系 [J].
seafloor surficial sediment[J]. Journal of Ocean University 声学学报, 2015, 40(3): 462–468.
of China, 2021, 20(3): 573–580. Long Jianjun, Li Ganxian. Theoretical relationship be-
[24] Lu B, Li G X. Physical and mechanical characteristics tween sound velocity and physical properties of seabed
of seabed sediment microstructure in the northern shelf sediments[J]. Acta Acustica, 2015, 40(3): 462–468.
of the South China Sea[J]. Marine Georesources and [37] Hamilton E L, Bachman R T. Sound velocity and re-
Geotechnology, 2003, 21(1): 1–13. lated properties of marine sediments[J]. The Journal of the
[25] 梁元博, 卢博. 海底沉积物力学性质影响声速的物理机制 [J]. Acoustical Society of America, 1982, 72(6): l891–1904.
海洋学报, 1985, 7(1): 111–119, 130. [38] Buckingham M J. Compressional and shear wave prop-
Liang Yuanbo, Lu Bo. The physical mechanism of the erties of marine sediments: Comparisons between the-
mechanical properties of seafloor sediments affecting the ory and data[J]. The Journal of the Acoustical Society
speed of sound[J]. Acta Oceanologica Sinica, 1985, 7(1): of America, 2005, 117(1): 137–152.
111–119, 130. [39] 卢博, 李赶先, 黄韶健. 南海海底钙质土声学物理性质及其工
[26] 龙建军, 李赶先, 邹大鹏. 海底沉积物纵波波速与物理 -力学性 程地质意义 [J]. 中国科学: 地球科学, 1998, 28(6): 518–522.
质的理论关系和比较 [J]. 海洋学报, 2014, 36(7): 111–117. Lu Bo, Li Ganxian, Huang Shaojian. The acoustic physi-
Long Jianjun, Li Ganxian, Zou Dapeng. Theoretical re- cal properties of seabed calcareous soil in the South China
lationship and comparison between longitudinal wave ve- Sea and its engineering geological significance[J]. Scientia
locity and physical-mechanical properties of seafloor sedi- Sinica, 1998, 28(6): 518–522.
ments[J]. Acta Oceanologica Sinica, 2014, 36(7): 111–117. [40] 卢博, 李赶先, 黄韶健. 用声学三参数判别海底沉积物性质 [J].
[27] GB/T 12763.8–2007: 海洋调查规范第 8 部分: 海洋地质地球 声学技术, 2007, 26(1): 6–14.
物理调查 [S]. Lu Bo, Li Ganxian, Huang Shaojian. Using the three
[28] 邹大鹏, 伍智林, 孙晗, 等. 海底沉积物的基本地声结构与地 acoustic parameters to determine the properties of seabed
声模型 [J]. 海洋学报, 2022, 44(9): 145–155. sediments[J]. Technical Acoustics, 2007, 26(1): 6–14.