Nanochemo-mechanical signature of organic-rich shales: a coupled indentation-EDX analysis

被引:85
作者
Abedi, Sara [1 ,3 ]
Slim, Mirna [1 ]
Hofmann, Ronny [2 ]
Bryndzia, Taras [2 ]
Ulm, Franz-Josef [1 ]
机构
[1] MIT, Dept Civil & Environm Engn, 77 Massachusetts Ave, Cambridge, MA 02139 USA
[2] Shell Int Explorat & Prod Projects & Technol, Houston, TX USA
[3] Texas A&M Univ, Harold Vance Dept Petr Engn, College Stn, TX USA
关键词
Anisotropy; Cluster modeling; Ductility; Energy-dispersive X-ray spectroscopy; Nanoindentation; Organic-rich shale; Volume fraction; NANOGRANULAR NATURE; ELASTIC-ANISOTROPY; MODULUS; NANOINDENTATION; MINERALS; HARDNESS; CORE; BONE;
D O I
10.1007/s11440-015-0426-4
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The organic-inorganic nature of organic-rich source rocks poses several challenges for the development of functional relations that link mechanical properties with geochemical composition. With this focus in mind, we herein propose a method that enables chemo-mechanical characterization of this highly heterogeneous source rock at the micron and submicron length scale through a statistical analysis of a large array of energy-dispersive X-ray spectroscopy ( EDX) data coupled with nanoindentation data. The ability to include elemental composition to the indentation probe via EDX is shown to provide a means to identify pure material phases, mixture phases, and interfaces between different phases. Employed over a large array, the statistical clustering of this set of chemo-mechanical data provides access to the properties of the fundamental building blocks of clay-dominated organic-rich source rocks. The versatility of the approach is illustrated through the application to a large number of source rocks of different origin, chemical composition, and organic content. We find that the identified properties exhibit a unique scaling relation between stiffness and hardness. This suggests that organic-rich shale properties can be reduced to their elementary constituents, with several implications for the development of predictive functional relations between chemical composition and mechanical properties of organic-rich source rocks such as the intimate interplay between clay-packing, organic maturity, and mechanical properties of porous clay/organic phase.
引用
收藏
页码:559 / 572
页数:14
相关论文
共 61 条
  • [31] Nano-scale texture and porosity of organic matter and clay minerals in organic-rich mudrocks
    Kuila, Utpalendu
    McCarty, Douglas K.
    Derkowski, Arkadiusz
    Fischer, Timothy B.
    Topor, Tomasz
    Prasad, Manika
    [J]. FUEL, 2014, 135 : 359 - 373
  • [32] Preferred orientation and elastic anisotropy in shales
    Lonardelli, Ivan
    Wenk, Hans-Rudolf
    Ren, Y.
    [J]. GEOPHYSICS, 2007, 72 (02) : D33 - D40
  • [33] Spectrum of pore types and networks in mudrocks and a descriptive classification for matrix-related mudrock pores
    Loucks, Robert G.
    Reed, Robert M.
    Ruppel, Stephen C.
    Hammes, Ursula
    [J]. AAPG BULLETIN, 2012, 96 (06) : 1071 - 1098
  • [34] Luffel D.L., 1989, CORE ANAL RESULTS CO
  • [35] EVALUATION OF DEVONIAN SHALE WITH NEW CORE AND LOG ANALYSIS-METHODS
    LUFFEL, DL
    GUIDRY, FK
    CURTIS, JB
    [J]. JOURNAL OF PETROLEUM TECHNOLOGY, 1992, 44 (11): : 1192 - 1197
  • [36] NEW CORE ANALYSIS-METHODS FOR MEASURING RESERVOIR ROCK PROPERTIES OF DEVONIAN SHALE
    LUFFEL, DL
    GUIDRY, FK
    [J]. JOURNAL OF PETROLEUM TECHNOLOGY, 1992, 44 (11): : 1184 - 1190
  • [37] Mavko G., 2020, The Rock Physics Handbook, DOI 0.1017/9781108333016
  • [38] Mba K, 2010, SPE ANN TECHN C EXH, DOI [10.2118/135569-MS, DOI 10.2118/135569-MS]
  • [39] McGee JJ, 2001, MICROSC MICROANAL, V7, P200
  • [40] Mitchell J.K., 2005, FUNDAMENTAL SOIL BEH, V3rd