热带海洋学报 ›› 2021, Vol. 40 ›› Issue (1): 133-141.doi: 10.11978/2020015CSTR: 32234.14.2020015
田雨杭1,2,3(), 陈忠1,3(
), 黄蔚霞1,3, 侯正瑜1,3, 颜文1,2,3, 王雪松1,2,3
收稿日期:
2020-02-03
修回日期:
2020-04-07
出版日期:
2021-01-10
发布日期:
2020-04-09
通讯作者:
陈忠
作者简介:
田雨杭(1987—), 男, 黑龙江齐齐哈尔市人, 博士研究生, 主要从事海洋沉积声学研究。email: 基金资助:
TIAN Yuhang1,2,3(), CHEN Zhong1,3(
), HUANG Weixia1,3, HOU Zhengyu1,3, YAN Wen1,2,3, WANG Xuesong1,2,3
Received:
2020-02-03
Revised:
2020-04-07
Online:
2021-01-10
Published:
2020-04-09
Contact:
CHEN Zhong
Supported by:
摘要:
珊瑚礁灰岩是孔隙结构复杂、密度变化较大的一类岩石, 但过去对珊瑚礁灰岩纵波波速与孔隙结构的关系及其影响因素研究不够深入。本文测定和分析了南沙海区某岛礁钻孔中珊瑚礁灰岩的纵波波速、孔隙度以及密度特征, 结果显示礁灰岩的纵波波速变化范围为5104~5958m·s-1, 孔隙度变化范围为1.47%~17.7%, 密度变化范围为2.07~ 2.72g·cm-3。这些特征表明, 埋藏后的压实作用和重结晶作用, 对珊瑚礁灰岩的孔隙度和密度产生影响。珊瑚礁灰岩弹性波速主要受孔隙度和孔隙结构类型的影响, 礁灰岩横、纵波速比值能有效地确定岩体的结构和稳定性, 因此礁灰岩的声学特性研究成果可为珊瑚岛礁工程建设的稳定性评估提供可靠的数据支撑。
中图分类号:
田雨杭, 陈忠, 黄蔚霞, 侯正瑜, 颜文, 王雪松. 南沙海区珊瑚礁灰岩纵波波速特征及其影响因素 *[J]. 热带海洋学报, 2021, 40(1): 133-141.
TIAN Yuhang, CHEN Zhong, HUANG Weixia, HOU Zhengyu, YAN Wen, WANG Xuesong. P-wave velocity properties and its influencing factors of coral reef limestone in Nansha area[J]. Journal of Tropical Oceanography, 2021, 40(1): 133-141.
表1
礁灰岩样品的纵波、横波波速与孔隙度、密度测试结果"
样品 编号 | 孔深/m | 横波波速/ (m·s-1) | 纵波波速/ (m·s-1) | 孔隙度/% | 密度/ (g·cm-3) |
---|---|---|---|---|---|
1 | 51.41 | 2533 | 5289 | 9.89 | 2.29 |
2 | 303.63 | 3884 | 5958 | 1.47 | 2.72 |
3 | 304.53 | 2822 | 5104 | 17.70 | 2.07 |
4 | 371.03 | 3474 | 5770 | 3.01 | 2.67 |
5 | 741.03 | 3273 | 5151 | 8.24 | 2.48 |
6 | 777.15 | 3317 | 5170 | 6.13 | 2.50 |
7 | 823.25 | 2531 | 5268 | 9.17 | 2.21 |
8 | 849.95 | 3298 | 5185 | 6.68 | 2.48 |
9 | 864.95 | 3300 | 5441 | 5.77 | 2.36 |
10 | 886.45 | 3464 | 5411 | 3.28 | 2.45 |
表1
礁灰岩样品的纵波、横波波速与孔隙度、密度测试结果"
样品 编号 | 孔深/m | 横波波速/ (m·s-1) | 纵波波速/ (m·s-1) | 孔隙度/% | 密度/ (g·cm-3) |
---|---|---|---|---|---|
1 | 51.41 | 2533 | 5289 | 9.89 | 2.29 |
2 | 303.63 | 3884 | 5958 | 1.47 | 2.72 |
3 | 304.53 | 2822 | 5104 | 17.70 | 2.07 |
4 | 371.03 | 3474 | 5770 | 3.01 | 2.67 |
5 | 741.03 | 3273 | 5151 | 8.24 | 2.48 |
6 | 777.15 | 3317 | 5170 | 6.13 | 2.50 |
7 | 823.25 | 2531 | 5268 | 9.17 | 2.21 |
8 | 849.95 | 3298 | 5185 | 6.68 | 2.48 |
9 | 864.95 | 3300 | 5441 | 5.77 | 2.36 |
10 | 886.45 | 3464 | 5411 | 3.28 | 2.45 |
[1] | J.H.舍恩, 2016. 岩石物理特性手册[M].魏新善, 曹青, 程国建, 等译. 北京: 石油工业出版社. |
SCHÖN J H, 2016. Peysical properties of rocks a workbook[M]. WEI XINSHAN, CAO QING, CHENG GUOJIAN, et al., trans. Beijing: Petroleum Industry Press (in Chinese). | |
[2] | 曹晓初, 常少英, 李立胜, 等, 2019. 碳酸盐岩多孔介质等效孔隙结构参数反演及应用[J]. 海洋工程装备与技术, 6(S1):276-282. |
CAO XIAOCHU, CHANG SHAOYING, LI LISHENG, et al., 2019. Inversion and application of equivalent pore aspect in carbonate porous media[J]. Ocean Engineering Equipment and Technology, 6(S1):276-282 (in Chinese with English abstract). | |
[3] | 范超, 2018. 珊瑚礁灰岩的动态力学性能试验研究[D]. 南宁: 广西大学. |
FAN CHAO, 2018. Experimental study on dynamic mechanical properties of coral reef limestone[D]. Nanning: Guangxi University (in Chinese with English abstract). | |
[4] | 李晨安, 李承峰, 刘昌岭, 等, 2017. CT图像法计算Berea砂岩孔隙度[J]. 核电子学与探测技术, 37(5):482-487. |
LI CHEN’AN, LI CHENGFENG, LIU CHANGLING, et al., 2017. A method to calculate the porosity of Berea sandstone based on CT digital images[J]. Nuclear Electronics & Detection Technology, 37(5):482-487 (in Chinese with English abstract). | |
[5] | 李赶先, 卢博, 2001. 珊瑚礁岩心声速垂向跃变及其指相意义[J]. 台湾海峡, 20(3):308-313. |
LI GANXIAN, LU BO, 2001. A study on sound velocity vertical variety in coral reef core and its indicating facies significance[J]. Journal of Oceanography in Taiwan Strait, 20(3):308-313 (in Chinese with English abstract). | |
[6] | 李月, 2007. 层状岩体声学特性研究[D]. 成都: 西华大学. |
LI YUE, 2007. Study on the acoustics characteristic of layer rocks[D]. Chengdu: Xihua University (in Chinese with English abstract). | |
[7] | 孟庆山, 汪稔, 2005. 碳酸盐岩的声波特性研究及其应用[J]. 中国岩溶, 24(4):344-348. |
MENG QINGSHAN, WANG REN, 2005. Study and application of sonic wave properties of carbonate rock[J]. Carsologica Sinica, 24(4):344-348 (in Chinese with English abstract). | |
[8] | 孙宗勋, 卢博, 1999. 南沙群岛珊瑚礁灰岩弹性波性质的研究[J]. 工程地质学报, 7(2):175-180. |
SUN ZONGXUN, LU BO, 1999. Elastic wave properties of coral reef rock in Nansha Islands[J]. Journal of Engineering Geology, 7(2):175-180 (in Chinese with English abstract). | |
[9] | 唐郑元, 2019. 塔东古城地区碳酸盐岩岩石物理特征实验研究[D]. 成都: 成都理工大学. |
TANG ZHENGYUAN, 2019. Experimental study on the petrophysical properties and seismic rock phyhsics properties of carbonate rocks in Gucheng Area of eastern Tarim Basin[D]. Chengdu: Chengdu University of Technology (in Chinese with English abstract). | |
[10] | 王瑞, 余克服, 王英辉, 等, 2017. 珊瑚礁的成岩作用[J]. 地球科学进展, 32(3): 221-233. |
WANG RUI, YU KEFU, WANG YINGHUI, et al., 2017. The diagenesis of coral reefs[J]. Advances in Earth Science, 32(3):221-233 (in Chinese with English abstract). | |
[11] | 王新志, 2008. 南沙群岛珊瑚礁工程地质特性及大型工程建设可行性研究[D]. 武汉: 中国科学院研究生院(武汉岩土力学研究所). |
WANG XINZHI, 2008. Study on engineering geological properties of coral reefs and feasibility of large project construction on Nansha Islands[D]. Wuhan: Institute of Rock and Soil Mechanics, Chinese Academy of Sciences (in Chinese with English abstract). | |
[12] | 王新志, 汪稔, 孟庆山, 等, 2008. 南沙群岛珊瑚礁礁灰岩力学特性研究[J]. 岩石力学与工程学报, 27(11):2221-2226. |
WANG XINZHI, WANG REN, MENG QINGSHAN, et al., 2008. Research on characteristics of coral reef calcareous rock in Nansha Islands[J]. Chinese Journal of Rock Mechanics and Engineering, 27(11):2221-2226 (in Chinese with English abstract). | |
[13] | 王子振, 2016. 碳酸盐岩孔隙结构对其弹性波特性的影响规律研究[D]. 青岛: 中国石油大学(华东). |
WANG ZIZHEN, 2016. Research on the effects of pore structure on the elastic wave properties in carbonate rocks[D]. Qingdao: China University of Petroleum (East China)(in Chinese with English abstract). | |
[14] | 焉力文, 2018. 缝洞型碳酸盐岩储层声学特性实验研究[D]. 北京: 中国地质大学(北京). |
YAN LIWEN, 2018. Experimental study on acoustic characteristics of fractured and holes carbonate reservoirs[D]. Beijing: China University of Geosciences (Beijing)(in Chinese with English abstract). | |
[15] | 杨永康, 丁学武, 冯春燕, 等, 2016. 西沙群岛珊瑚礁灰岩物理力学特性试验研究[J]. 广州大学学报(自然科学版), 15(5):78-83. |
YANG YONGKANG, DING XUEWU, FENG CHUNYAN, et al., 2016. Experimental research on physics mechanics characteristics of coral reefs calcareous rock in Xisha Islands[J]. Journal of Guangzhou University (Natural Science Edition), 15(5):78-83 (in Chinese with English abstract). | |
YANG YONGKANG, DING XUEWU, FENG CHUNYAN, et al., 2016. Experimental research on physics mechanics characteristics of coral reefs calcareous rock in Xisha Islands[J]. Journal of Guangzhou University (Natural Science Edition), 15(5):78-83 (in Chinese with English abstract). | |
[16] | 余克服, 2018. 珊瑚礁科学概论[M]. 北京: 科学出版社. |
余克服, 2018. 珊瑚礁科学概论[M]. 北京: 科学出版社. | |
YU KEFU, 2018. Introduction to the science of coral reefs[M]. Beijing: Science Press (in Chinese). | |
YU KEFU, 2018. Introduction to the science of coral reefs[M]. Beijing: Science Press (in Chinese). | |
[17] | 张小莉, 查明, 杨懿, 2007. 惠民凹陷沙河街组三段岩性油藏储层孔隙结构特征及油气意义[J]. 石油与天然气地质, 28(2):287-292. |
张小莉, 查明, 杨懿, 2007. 惠民凹陷沙河街组三段岩性油藏储层孔隙结构特征及油气意义[J]. 石油与天然气地质, 28(2):287-292. | |
ZHANG XIAOLI, ZHA MING, YANG YI, 2007. Pore structure features of lithologic reservoirs in the third member of Shahejie Formation in Huimin Sag and their significance in petroleum exploration[J]. Oil & Gas Geology, 28(2):287-292 (in Chinese with English abstract). | |
ZHANG XIAOLI, ZHA MING, YANG YI, 2007. Pore structure features of lithologic reservoirs in the third member of Shahejie Formation in Huimin Sag and their significance in petroleum exploration[J]. Oil & Gas Geology, 28(2):287-292 (in Chinese with English abstract). | |
[18] | 赵焕庭, 王丽荣, 宋朝景, 2014. 南海珊瑚礁地貌模型研究[J]. 海洋学报, 36(9):112-120. |
赵焕庭, 王丽荣, 宋朝景, 2014. 南海珊瑚礁地貌模型研究[J]. 海洋学报, 36(9):112-120. | |
ZHAO HUANTING, WANG LIRONG, SONG CHAOJING, 2014. Geomorphological model of coral reefs in the South China Sea[J]. Acta Oceanologica Sinica, 36(9):112-120 (in Chinese with English abstract). | |
ZHAO HUANTING, WANG LIRONG, SONG CHAOJING, 2014. Geomorphological model of coral reefs in the South China Sea[J]. Acta Oceanologica Sinica, 36(9):112-120 (in Chinese with English abstract). | |
[19] | 赵明阶, 吴德伦, 2000. 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, 19(1):89-92. |
赵明阶, 吴德伦, 2000. 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, 19(1):89-92. | |
ZHAO MINGJIE, WU DELUN, 2000. The ultrasonic identification of rock mass classification and rock mass strength prediction[J]. Chinese Journal of Rock Mechanics and Engineering, 19(1):89-92 (in Chinese with English abstract). | |
ZHAO MINGJIE, WU DELUN, 2000. The ultrasonic identification of rock mass classification and rock mass strength prediction[J]. Chinese Journal of Rock Mechanics and Engineering, 19(1):89-92 (in Chinese with English abstract). | |
[20] | 郑坤, 孟庆山, 汪稔, 等, 2019. 不同结构类型珊瑚礁灰岩弹性波特性研究[J]. 岩土力学, 40(8):3081-3089. |
郑坤, 孟庆山, 汪稔, 等, 2019. 不同结构类型珊瑚礁灰岩弹性波特性研究[J]. 岩土力学, 40(8):3081-3089. | |
ZHENG KUN, MENG QINGSHAN, WANG REN, et al., 2019a. Elastic wave properties of coral reef limestone with different structural types[J]. Rock and Soil Mechanics, 40(8):3081-3089 (in Chinese with English abstract). | |
ZHENG KUN, MENG QINGSHAN, WANG REN, et al., 2019a. Elastic wave properties of coral reef limestone with different structural types[J]. Rock and Soil Mechanics, 40(8):3081-3089 (in Chinese with English abstract). | |
[21] | 中国科学院南沙综合科学考察队, 1992. 南沙群岛永暑礁第四纪珊瑚礁地质[M]. 北京: 海洋出版社. |
中国科学院南沙综合科学考察队, 1992. 南沙群岛永暑礁第四纪珊瑚礁地质[M]. 北京: 海洋出版社. | |
Nansha Comprehensive Scientific Investigation Team of Chinese Academy of Sciences, 1992. Quaternary coral reef geology of Yongshu reef, Nansha islands[M]. Beijing: Ocean Press (in Chinese). | |
Nansha Comprehensive Scientific Investigation Team of Chinese Academy of Sciences, 1992. Quaternary coral reef geology of Yongshu reef, Nansha islands[M]. Beijing: Ocean Press (in Chinese). | |
[22] | 中国科学院南沙综合科学考察队, 1997a. 南沙群岛永暑礁新生代珊瑚礁地质[M]. 北京: 海洋出版社. |
中国科学院南沙综合科学考察队, 1997a. 南沙群岛永暑礁新生代珊瑚礁地质[M]. 北京: 海洋出版社. | |
Nansha Comprehensive Scientific Investigation Team of Chinese Academy of Sciences, 1997a. Cenozoic coral reef geology of Yongshu reef, Nansha islands[M]. Beijing: Ocean Press (in Chinese). | |
Nansha Comprehensive Scientific Investigation Team of Chinese Academy of Sciences, 1997a. Cenozoic coral reef geology of Yongshu reef, Nansha islands[M]. Beijing: Ocean Press (in Chinese). | |
[23] | 中国科学院南沙综合科学考察队, 1997b. 南沙群岛珊瑚礁工程地质[M]. 北京: 科学出版社. |
中国科学院南沙综合科学考察队, 1997b. 南沙群岛珊瑚礁工程地质[M]. 北京: 科学出版社. | |
Nansha Comprehensive Scientific Investigation Team of Chinese Academy of Sciences, 1997b. Coral reef engineering geology of Nansha Islands[M]. Beijing: Science Industry Press (in Chinese). | |
Nansha Comprehensive Scientific Investigation Team of Chinese Academy of Sciences, 1997b. Coral reef engineering geology of Nansha Islands[M]. Beijing: Science Industry Press (in Chinese). | |
[24] | ANSELMETTI F S, EBERLI G P, 1993. Controls on sonic velocity in carbonates[J]. Pure and Applied Geophysics, 141(2-4):287-323. |
ANSELMETTI F S, EBERLI G P, 1993. Controls on sonic velocity in carbonates[J]. Pure and Applied Geophysics, 141(2-4):287-323. | |
[25] | ANSELMETTI F S, VON SALIS G A, CUNNINGHAM K J, et al., 1997. Acoustic properties of Neogene carbonates and siliciclastics from the subsurface of the Florida Keys: implications for seismic reflectivity[J]. Marine Geology, 144(1-3):9-31. |
ANSELMETTI F S, VON SALIS G A, CUNNINGHAM K J, et al., 1997. Acoustic properties of Neogene carbonates and siliciclastics from the subsurface of the Florida Keys: implications for seismic reflectivity[J]. Marine Geology, 144(1-3):9-31. | |
[26] | ASSEFA S, MCCANN C, SOTHCOTT J, 2003. Velocities of compressional and shear waves in limestones[J]. Geophysical Prospecting, 51(1):1-13. |
ASSEFA S, MCCANN C, SOTHCOTT J, 2003. Velocities of compressional and shear waves in limestones[J]. Geophysical Prospecting, 51(1):1-13. | |
[27] | BAECHLE G, COLPAERT A, EBERLI G, 2009. Micro-porosity effect on sonic velocity in carbonate rocks[C]// Proceedings of the 71st EAGE conference and exhibition-workshops and fieldtrips. European Association of Geoscientists & Engineers: cp-129-00053. |
BAECHLE G, COLPAERT A, EBERLI G, 2009. Micro-porosity effect on sonic velocity in carbonate rocks[C]// Proceedings of the 71st EAGE conference and exhibition-workshops and fieldtrips. European Association of Geoscientists & Engineers: cp-129-00053. | |
[28] | BAECHLE G T, WEGER R, EBERLI G P, et al., 2004. The role of macroporosity and microporosity in constraining uncertainties and in relating velocity to permeability in carbonate rocks[C]// 2004 SEG annual meeting. Denver, Colorado: Society of Exploration Geophysicists: 1662-1665. |
BAECHLE G T, WEGER R, EBERLI G P, et al., 2004. The role of macroporosity and microporosity in constraining uncertainties and in relating velocity to permeability in carbonate rocks[C]// 2004 SEG annual meeting. Denver, Colorado: Society of Exploration Geophysicists: 1662-1665. | |
[29] | BAECHLE G T, WEGER R, EBERLI G, et al., 2005. Pore structure effects on elastic moduli-porosity relationships in carbonate rocks[C]// AGU spring meeting 2005. American Geophysical Union: 357-366. |
BAECHLE G T, WEGER R, EBERLI G, et al., 2005. Pore structure effects on elastic moduli-porosity relationships in carbonate rocks[C]// AGU spring meeting 2005. American Geophysical Union: 357-366. | |
[30] | BATHURST R G C, 1987. Diagenetically enhanced bedding in argillaceous platform limestones: stratified cementation and selective compaction[J]. Sedimentology, 34(5):749-778. |
BATHURST R G C, 1987. Diagenetically enhanced bedding in argillaceous platform limestones: stratified cementation and selective compaction[J]. Sedimentology, 34(5):749-778. | |
[31] | BATHURST R G C, 1993. Microfabrics in carbonate diagenesis: a critical look at forty years in research[M]// REZAK R, LAVOIE D L. Carbonate microfabrics. New York: Springer. |
BATHURST R G C, 1993. Microfabrics in carbonate diagenesis: a critical look at forty years in research[M]// REZAK R, LAVOIE D L. Carbonate microfabrics. New York: Springer. | |
[32] | CHENG WEI, BA JING, FU LIYUN, et al. 2019. Wave-velocity dispersion and rock microstructure[J]. Journal of Petroleum Science and Engineering, 183:106466. |
CHENG WEI, BA JING, FU LIYUN, et al. 2019. Wave-velocity dispersion and rock microstructure[J]. Journal of Petroleum Science and Engineering, 183:106466. | |
[33] | EBERLI G P, BAECHLE G T, ANSELMETTI F S, et al., 2003. Factors controlling elastic properties in carbonate sediments and rocks[J]. The Leading Edge, 22(7):654-660. |
EBERLI G P, BAECHLE G T, ANSELMETTI F S, et al., 2003. Factors controlling elastic properties in carbonate sediments and rocks[J]. The Leading Edge, 22(7):654-660. | |
[34] | HU YANGMING, ZHAO JIANGUO, SUN LANGQIU, et al., 2018. Digital rock physics based pore type effect analysis on acoustic properties of carbonate rocks[C]// Proceedings of the 80th EAGE annual conference and exhibition 2018. Copenhagen, Denmark: European Association of Geoscientists & Engineers. |
HU YANGMING, ZHAO JIANGUO, SUN LANGQIU, et al., 2018. Digital rock physics based pore type effect analysis on acoustic properties of carbonate rocks[C]// Proceedings of the 80th EAGE annual conference and exhibition 2018. Copenhagen, Denmark: European Association of Geoscientists & Engineers. | |
[35] | REGNET J B, ROBION P, DAVID C, et al., 2015. Acoustic and reservoir properties of microporous carbonate rocks: Implication of micrite particle size and morphology[J]. Journal of Geophysical Research: Solid Earth, 120(2):790-811. |
REGNET J B, ROBION P, DAVID C, et al., 2015. Acoustic and reservoir properties of microporous carbonate rocks: Implication of micrite particle size and morphology[J]. Journal of Geophysical Research: Solid Earth, 120(2):790-811. | |
[36] | REZAEI M, DAVOODI P K, NAJMODDINI I, 2019. Studying the correlation of rock properties with P-wave velocity index in dry and saturated conditions[J]. Journal of Applied Geophysics, 169:49-57. |
REZAEI M, DAVOODI P K, NAJMODDINI I, 2019. Studying the correlation of rock properties with P-wave velocity index in dry and saturated conditions[J]. Journal of Applied Geophysics, 169:49-57. | |
[37] | SILVA R A, CEIA M, MISSAGIA R, et al., 2019. Analysis of elastic velocities behavior and porosity in carbonates submitted to external pressure variation[J]. Journal of Applied Geophysics, 166:10-21. |
SILVA R A, CEIA M, MISSAGIA R, et al., 2019. Analysis of elastic velocities behavior and porosity in carbonates submitted to external pressure variation[J]. Journal of Applied Geophysics, 166:10-21. | |
[38] |
WANG ZIZHEN, WANG RUIHE, LI TIANYANG, et al., 2015a. Pore-scale modeling of pore structure effects on P-wave scattering attenuation in dry rocks[J]. PLoS One, 10(5):e0126941.
pmid: 25961729 |
WANG ZIZHEN, WANG RUIHE, LI TIANYANG, et al., 2015a. Pore-scale modeling of pore structure effects on P-wave scattering attenuation in dry rocks[J]. PLoS One, 10(5):e0126941.
pmid: 25961729 |
|
[39] | WANG ZIZHEN, WANG RUIHE, WEGER R J, et al., 2015b. Pore-scale modeling of elastic wave propagation in carbonate rocks[J]. Geophysics, 80(1):D51-D63. |
WANG ZIZHEN, WANG RUIHE, WEGER R J, et al., 2015b. Pore-scale modeling of elastic wave propagation in carbonate rocks[J]. Geophysics, 80(1):D51-D63. |
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