Search

Article

x

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Viscoelastic relaxation attenuation property for saturated sandstones and corresponding investigation of micro-scale mechanism

Xi Dao-Ying Xu Song-Lin Liu Yong-Gui Du Yun

Citation:

Viscoelastic relaxation attenuation property for saturated sandstones and corresponding investigation of micro-scale mechanism

Xi Dao-Ying, Xu Song-Lin, Liu Yong-Gui, Du Yun
PDF
Get Citation

(PLEASE TRANSLATE TO ENGLISH

BY GOOGLE TRANSLATE IF NEEDED.)

  • Attenuation experiments are performed by Metravib dynamic mechanical analyzer with sine wave loading style to study the viscoelastic relaxation property of pump-oil saturated and glycerol saturated Pengshan sandstone and Zigong arkoses with three kinds of porosities. Based on the thermal relaxation regularities, the activation energies and the atomic vibration frequencies of relaxation attenuation peaks for three kinds of saturated sandstones are evaluated. The results show that activation energies and atomic vibrations frequencies of sandstone samples are lower than those of interstitial atoms. The overall vibration behavior of atomic cluster with defects can be used to explain why vibration frequencies are low in samples. Besides the solid atoms, the gas and liquid atoms filled in defects contribute greatly to overall vibration of sample. Saturated sandstone, cemented by a combination of mineral crystals, is a polycrystalline, multiphase solid with internal complex structure and widespread defects, and it easily takes on thermal relaxation property under sine wave loading. Such flaws and defects as point defects, dislocation and grain boundary in samples and their interaction interaction can produce relaxation attenuation peak. To explain the relaxation mechanism by saturated liquid and internal structure of the sandstone, it is natural to relate the attenuation characteristics to its macro-meso-structure. It is notable that when taking the defects, multiple phase boundary into consideration, a new interesting phenomenon appears, there produces multi relaxation with broader peak and more widely distributed parameter. This investigation is helpful to study theoretical model and seismic data interpretation.
    • Funds: Project supported by the National Natural Science Foundation of China (Grant No. 40874093).
    [1]

    Winkler K W, Nur A 1982 Geophysics 47 1

    [2]

    Jones T D 1986 Geophysics 51 1939

    [3]

    Jones T, Nur A 1983 Geophys. Res. Lett. 10 140

    [4]

    Xi D Y, Liu X Y, Zhang C Y 2007 Pure. Appl. Geophys. 164 2157

    [5]

    Guyer R A, TenCate J, Johnson P 1999 Phys. Rev. Lett. 82 3280

    [6]

    Johnson P A, McCall K R 1994 Geophys. Res. Lett. 21 97

    [7]

    Xi D Y, Chen Y P, Tao Y Z, Liu Y C 2006 Chinese J. Rock Mech. Engng. 25 1086 (in Chinese) [席道瑛, 陈运平, 陶月赞, 刘亚晨 2006 岩石力学与工程学报 25 1086]

    [8]

    Xi D Y, Xu S L, Xi J, Yi L K, Du Y 2011 Chinese J. Geophys. 54 2302 (in Chinese) [席道瑛, 徐松林, 席军, 易良坤, 杜赟 2011 地球物理学报 54 2302]

    [9]

    Tutuncu A N, Podio A L, Gregory A R 1998 Geophysics 63 195

    [10]

    McCall K R, Guyer R A 1994 J. Geophys. Res. 99 23887

    [11]

    van Den Abeele K E A, Carmeliet J, Johnson P A, Zinszner B 2002 J. Geophys. Res. 107 2121

    [12]

    Carmeliet J, van Den Abeele K E A 2001 Fourth International Conference on Fracture Mechanics of Concrete and Concrete Structures Cachan, France, 28 May 2011 pp11-18

    [13]

    Carmeliet J, Koen E A, van Den Abeele K E A 2002 Geophys. Res. Lett. 29 1144

    [14]

    Xi D Y, Du Y, Yi L K, Wan X L 2009 Chinese J. Rock Mech. Engng. 28 687 (in Chinese) [席道瑛, 杜赟, 易良坤, 宛新林 2009 岩石力学与工程学报 28 687]

    [15]

    Pennington W D 1997 The Leading EDGE 16 241

    [16]

    Mavko G M, Nur A 1979 Geophysics 44 161

    [17]

    O'Connell R J 1983 Am. Inst. Phys. Conference on Physics and Chemistry of Porous Media, Schlumberger-Doll Research, Johnson D L, Sen P N (Ed.) Am. Inst. Phys: pp166-176

    [18]

    Xi D Y, Yi L K, Tian X Y 2003 Chinese J. Geophysics 46 814

    [19]

    Xi D Y, Xu S L, Du Y, Yi L K 2011 J. Appl. Geophys. 71 289

    [20]

    Du Y, Xi D Y, Xu S L 2009 Chinese J. Geophys. 52 3051 (in Chinese) [杜赟, 席道瑛, 徐松林 2009 地球物理学报 52 3051]

    [21]

    Zinszner B, Johnson P A, Rasolofosaon P N J 1997 J. Geophys. Res. 101 8105

    [22]

    Xi D Y, Liu B, Yi L K 2000 Chinese J. Geophys. 43 873

    [23]

    Xi D Y, Liu B, Tian X Y 2002 Chinese J. Geophys. 45 101

    [24]

    Vo-Thanh D 1995 Geophys. J. Int. 121 737

    [25]

    Batzle M L, Han D H, Hofmann R 2006 Geophysics 71 N1

    [26]

    Batzle M, Han D, Castagna J 1996 Soc. Expl. Geoph. Expanded Abstracts 1687

    [27]

    O'Doherty R F, Anstey N A 1971 Geophys. Prospecting 19 430

    [28]

    Huang K 1979 Solid Physics (Beijing: People's Education Press) pp66-67 (in Chinese) [黄昆 1979 固体物理学 (北京:人民教育出版社) 第66—67页]

  • [1]

    Winkler K W, Nur A 1982 Geophysics 47 1

    [2]

    Jones T D 1986 Geophysics 51 1939

    [3]

    Jones T, Nur A 1983 Geophys. Res. Lett. 10 140

    [4]

    Xi D Y, Liu X Y, Zhang C Y 2007 Pure. Appl. Geophys. 164 2157

    [5]

    Guyer R A, TenCate J, Johnson P 1999 Phys. Rev. Lett. 82 3280

    [6]

    Johnson P A, McCall K R 1994 Geophys. Res. Lett. 21 97

    [7]

    Xi D Y, Chen Y P, Tao Y Z, Liu Y C 2006 Chinese J. Rock Mech. Engng. 25 1086 (in Chinese) [席道瑛, 陈运平, 陶月赞, 刘亚晨 2006 岩石力学与工程学报 25 1086]

    [8]

    Xi D Y, Xu S L, Xi J, Yi L K, Du Y 2011 Chinese J. Geophys. 54 2302 (in Chinese) [席道瑛, 徐松林, 席军, 易良坤, 杜赟 2011 地球物理学报 54 2302]

    [9]

    Tutuncu A N, Podio A L, Gregory A R 1998 Geophysics 63 195

    [10]

    McCall K R, Guyer R A 1994 J. Geophys. Res. 99 23887

    [11]

    van Den Abeele K E A, Carmeliet J, Johnson P A, Zinszner B 2002 J. Geophys. Res. 107 2121

    [12]

    Carmeliet J, van Den Abeele K E A 2001 Fourth International Conference on Fracture Mechanics of Concrete and Concrete Structures Cachan, France, 28 May 2011 pp11-18

    [13]

    Carmeliet J, Koen E A, van Den Abeele K E A 2002 Geophys. Res. Lett. 29 1144

    [14]

    Xi D Y, Du Y, Yi L K, Wan X L 2009 Chinese J. Rock Mech. Engng. 28 687 (in Chinese) [席道瑛, 杜赟, 易良坤, 宛新林 2009 岩石力学与工程学报 28 687]

    [15]

    Pennington W D 1997 The Leading EDGE 16 241

    [16]

    Mavko G M, Nur A 1979 Geophysics 44 161

    [17]

    O'Connell R J 1983 Am. Inst. Phys. Conference on Physics and Chemistry of Porous Media, Schlumberger-Doll Research, Johnson D L, Sen P N (Ed.) Am. Inst. Phys: pp166-176

    [18]

    Xi D Y, Yi L K, Tian X Y 2003 Chinese J. Geophysics 46 814

    [19]

    Xi D Y, Xu S L, Du Y, Yi L K 2011 J. Appl. Geophys. 71 289

    [20]

    Du Y, Xi D Y, Xu S L 2009 Chinese J. Geophys. 52 3051 (in Chinese) [杜赟, 席道瑛, 徐松林 2009 地球物理学报 52 3051]

    [21]

    Zinszner B, Johnson P A, Rasolofosaon P N J 1997 J. Geophys. Res. 101 8105

    [22]

    Xi D Y, Liu B, Yi L K 2000 Chinese J. Geophys. 43 873

    [23]

    Xi D Y, Liu B, Tian X Y 2002 Chinese J. Geophys. 45 101

    [24]

    Vo-Thanh D 1995 Geophys. J. Int. 121 737

    [25]

    Batzle M L, Han D H, Hofmann R 2006 Geophysics 71 N1

    [26]

    Batzle M, Han D, Castagna J 1996 Soc. Expl. Geoph. Expanded Abstracts 1687

    [27]

    O'Doherty R F, Anstey N A 1971 Geophys. Prospecting 19 430

    [28]

    Huang K 1979 Solid Physics (Beijing: People's Education Press) pp66-67 (in Chinese) [黄昆 1979 固体物理学 (北京:人民教育出版社) 第66—67页]

  • [1] Huang Jian-Bang, Nan Hu, Zhang Feng, Zhang Jia-Le, Liu Lai-Jun, Wang Da-Wei. Diffuse phase transition and thermal hysteresis in relaxor ferroelectrics from modified Ising model. Acta Physica Sinica, 2021, 70(11): 110501. doi: 10.7498/aps.70.20202019
    [2] Wang Ting, Cui Zhi-Wen, Liu Jin-Xia, Wang Ke-Xie. Propagation of elastic waves in saturated porous medium containing a small amount of bubbly fluid. Acta Physica Sinica, 2018, 67(11): 114301. doi: 10.7498/aps.67.20180209
    [3] Yang Rui-Ke, Li Qian-Qian, Yao Rong-Hui. Multiple scattering and attenuation for electromagnetic wave propagation in sand and dust atmosphere. Acta Physica Sinica, 2016, 65(9): 094205. doi: 10.7498/aps.65.094205
    [4] Jin Xin-Xin, Jin Feng, Liu Ning, Sun Qi-Cheng. Analysis of elastic energy relaxation process for granular materials at quasi-static state. Acta Physica Sinica, 2016, 65(9): 096102. doi: 10.7498/aps.65.096102
    [5] Feng Xiao-Wei, Li Jun-Cheng, Wang Hong-Bo, Chang Jing-Zhen. Mesomechanism of elastic precursor decay in alumina under plate impact loading. Acta Physica Sinica, 2016, 65(16): 166201. doi: 10.7498/aps.65.166201
    [6] Sun Qi-Cheng, Liu Chuan-Qi, Gordon G D Zhou. Relaxation of granular elasticity. Acta Physica Sinica, 2015, 64(23): 236101. doi: 10.7498/aps.64.236101
    [7] Cheng Peng-Fei, Wang Hui, Li Sheng-Tao. Dielectric property and relaxation mechanism of CaCu3Ti4O12 ceramic. Acta Physica Sinica, 2013, 62(5): 057701. doi: 10.7498/aps.62.057701
    [8] Zheng Zong-Wen, Xu Ting-Dong, Wang Kai, Shao Chong. Progress in the theory of grain boundary anelastic relaxation. Acta Physica Sinica, 2012, 61(24): 246202. doi: 10.7498/aps.61.246202
    [9] Xi Dao-Ying, Xu Song-Lin, Du Yun. Experimental research on viscoelastic behavior for pump-oil saturated sandstones. Acta Physica Sinica, 2012, 61(11): 119102. doi: 10.7498/aps.61.119102
    [10] Yang Hong-Dong, Yu Qi, Wang Xiang-Zhan, Li Jing-Chun, Ning Ning, Yang Mo-Hua. Strain relaxation mechanism of pseudomorphic SiGe using low-temperature technology. Acta Physica Sinica, 2010, 59(8): 5743-5748. doi: 10.7498/aps.59.5743
    [11] He Qing, Yang Chun-Li, Wu Xiu-Sheng, Chen Zhi-Jun, Chen Chu-Sheng, Liu Wei. Anelastic relaxation and phase transition internal friction properties of La2-x NdxCuO4+δ(0.1≤x≤1.2) compounds. Acta Physica Sinica, 2010, 59(11): 7979-7985. doi: 10.7498/aps.59.7979
    [12] Xu Feng, Liu Tang-Yan, Huang Yong-Ren. Theoretical computation and numerical simulation of the relaxation of sphere-capillary model saturated with oil and water. Acta Physica Sinica, 2008, 57(1): 550-555. doi: 10.7498/aps.57.550
    [13] Yan Shu, Wang Shu. Reconstruction algorithm of relaxation attenuation spectrum in polyatomic gas. Acta Physica Sinica, 2008, 57(7): 4282-4291. doi: 10.7498/aps.57.4282
    [14] Liu Wei, Zhang Yan-Min, Wu Xiu-Sheng, Zhang Hua-Li, Chen Chu-Sheng. Anelastic relaxation of excess oxygen in GdBaCo2O5+δ system studied by low -frequency internal friction. Acta Physica Sinica, 2006, 55(11): 5996-6000. doi: 10.7498/aps.55.5996
    [15] SHUI JIA-PENG, LIU YONG-SONG. INTERNAL FRICTION BEHAVIOR OF THE STANDARD ANELASTIC SOLIDS IN LOW FREQUENCY INTERNAL FRICTION MEASUREMENT. Acta Physica Sinica, 1999, 48(4): 692-698. doi: 10.7498/aps.48.692
    [16] DING YI, YU WEN-HAI, WU KUN-YU. ANELASTIC RELAXATION WITH INFRARED DIVERGENCE SUPERIONIC GLASSES. Acta Physica Sinica, 1989, 38(1): 134-139. doi: 10.7498/aps.38.134
    [17] WANG YANG-PU, JIN QI-SMU. AMANY-BODY UNIVERSAL APPROACH TO THERMALLY ACTIVATED MAGNETOELASTIC RELAXATION IN FERROMAGNETIC ALLOYS. Acta Physica Sinica, 1988, 37(9): 1401-1405. doi: 10.7498/aps.37.1401
    [18] WANG QING-JI, XIE CHUAN. THE PERTURBATION SOLUTION OF OPTICAL BLOCH EQUATION WITH RELAXATION TERMS IN SATURATED SPECTROSCOPY. Acta Physica Sinica, 1986, 35(7): 855-863. doi: 10.7498/aps.35.855
    [19] LI JING-DE. THE PYROELECTRIC RELAXATION EFFECT. Acta Physica Sinica, 1984, 33(11): 1563-1568. doi: 10.7498/aps.33.1563
    [20] MA BEN-KUN. SPIN-LATTICE RELAXATION. Acta Physica Sinica, 1965, 21(7): 1419-1436. doi: 10.7498/aps.21.1419
Metrics
  • Abstract views:  5387
  • PDF Downloads:  590
  • Cited By: 0
Publishing process
  • Received Date:  06 November 2011
  • Accepted Date:  09 December 2011
  • Published Online:  05 July 2012

/

返回文章
返回