Academic literature on the topic 'Poromechanical behavior'

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Journal articles on the topic "Poromechanical behavior"

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Rafsanjani, Ahmad, Dominique Derome, and Jan Carmeliet. "Poromechanical modeling of moisture induced swelling anisotropy in cellular tissues of softwoods." RSC Advances 5, no. 5 (2015): 3560–66. http://dx.doi.org/10.1039/c4ra14074e.

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In cellular tissues of softwoods, the degree of swelling anisotropy in thin-walled earlywood cells is much larger than in bulky latewood cells. This behavior is simulated by means of a double porosity poromechanical model.
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Kim, Kiseok, and Roman Y. Makhnenko. "Evolution of poroviscoelastic properties of silica-rich rock after CO2 injection." E3S Web of Conferences 205 (2020): 08007. http://dx.doi.org/10.1051/e3sconf/202020508007.

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Injection of CO2 into the subsurface requires consideration of the poromechanical behavior of reservoir rock saturated with aqueous fluid. The material response is usually assumed to be elastic, to avoid consideration of induced seismicity, or viscoelastic, if long-term deformations are needed to be taken into the account. Both elastic and viscous behavior may be influenced by the chemical reactions that are caused by the acidic mixture formed as high-pressure CO2 enters the pore space saturated with aqueous fluid. In this study, we conduct laboratory experiments on a fluid-saturated porous ro
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Kim, Kiseok, and Roman Y. Makhnenko. "Coupling Between Poromechanical Behavior and Fluid Flow in Tight Rock." Transport in Porous Media 135, no. 2 (2020): 487–512. http://dx.doi.org/10.1007/s11242-020-01484-z.

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Abbasion, Saeed, Jan Carmeliet, Marjan Sedighi Gilani, Peter Vontobel, and Dominique Derome. "A hygrothermo-mechanical model for wood: part A. Poroelastic formulation and validation with neutron imaging." Holzforschung 69, no. 7 (2015): 825–37. http://dx.doi.org/10.1515/hf-2014-0189.

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Abstract The correct prediction of the behavior of wood components undergoing environmental loading or industrial process requires that the hygrothermal and mechanical (HTM) behavior of wood is considered in a coupled manner. A fully coupled poromechanical approach is proposed and validated with neutron imaging measurements of moist wood specimens exposed to high temperature. This paper demonstrates that a coupled HTM approach adequately captures the variations of temperature, moisture content, and dimensions that result in a moist wood sample exposed to one-side heating.
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Gmira, A. "Microscopic physical basis of the poromechanical behavior of cement-based materials." Materials and Structures 37, no. 265 (2003): 3–14. http://dx.doi.org/10.1617/14101.

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Zeng, Qiang, Teddy Fen-Chong, Patrick Dangla, and Kefei Li. "A study of freezing behavior of cementitious materials by poromechanical approach." International Journal of Solids and Structures 48, no. 22-23 (2011): 3267–73. http://dx.doi.org/10.1016/j.ijsolstr.2011.07.018.

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Hu, Da Wei, Fan Zhang, and Jian Fu Shao. "Experimental study of poromechanical behavior of saturated claystone under triaxial compression." Acta Geotechnica 9, no. 2 (2013): 207–14. http://dx.doi.org/10.1007/s11440-013-0259-y.

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Gmira, A., M. Zabat, R. J. M. Pellenq, and H. Van Damme. "Microscopic physical basis of the poromechanical behavior of cement-based materials." Materials and Structures 37, no. 1 (2004): 3–14. http://dx.doi.org/10.1007/bf02481622.

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Abbasion, Saeed, Peter Moonen, Jan Carmeliet, and Dominique Derome. "A hygrothermo-mechanical model for wood: Part B. Parametric studies and application to wood welding." Holzforschung 69, no. 7 (2015): 839–49. http://dx.doi.org/10.1515/hf-2014-0190.

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Abstract The correct prediction of the behavior of wood components undergoing environmental loading or industrial process requires that the hygric, thermal and mechanical (HTM) behavior of wood are considered in a coupled manner. A fully coupled poromechanical approach has been used to perform a parametric study on wood HTM behavior, and the results have been validated with neutron imaging measurements on a moist wood specimen exposed to high temperature. Further, HTM behavior of wood during welding has been simulated by the model. For such a simulation, proper material properties are needed,
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Loyola, Ana Carolina, Manoel Porfírio Cordão Neto, and Jean-Michel Pereira. "An open-source numerical laboratory to assess the poromechanical behavior of fractured rocks." Computers and Geotechnics 168 (April 2024): 106127. http://dx.doi.org/10.1016/j.compgeo.2024.106127.

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Dissertations / Theses on the topic "Poromechanical behavior"

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Hassanzadegan, Alireza [Verfasser], and Uwe [Akademischer Betreuer] Tröger. "Thermomechanical and poromechanical behavior of Flechtinger sandstone / Alireza Hassanzadegan. Betreuer: Uwe Tröger." Berlin : Universitätsbibliothek der Technischen Universität Berlin, 2013. http://d-nb.info/1033891371/34.

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Zeng, Qiang. "Poromechanical behavior of cement-based materials subjected to freeze-thaw actions with salts : modeling and experiments." Thesis, Paris Est, 2011. http://www.theses.fr/2011PEST1131/document.

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Les matériaux cimentaires peuvent se détériorer grandement lorsqu'ils sont soumis à des cycles de gel/dégel avec ou sans sels de déverglaçage. Ceci peut porter atteinte à la durabilité à long terme des bétons/mortiers dans les régions aux hivers froids. Laissant de côté les processus d'endommagement et de rupture mécanique à l'oeuvre dans de tels problèmes, ce mémoire de thèse est consacré aux phénomènes physiques et thermo-mécaniques accompagnant la solidification de l'eau dans des solides poreux cohésifs, avec une attention particulière aux «propriétés matériau» issues de l'hydratation du ci
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Zhang, Yuhao. "Etude expérimentale et modélisation du comportement poromécanique d'une roche argileuse." Electronic Thesis or Diss., Université de Lille (2022-....), 2023. https://pepite-depot.univ-lille.fr/ToutIDP/EDENGSYS/2023/2023ULILN061.pdf.

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Le présent travail est réalisé dans le cadre des études menées pour le stockage géologique des déchets radioactifs. L'objectif principal est de compléter les travaux précédents sur la caractérisation du comportement poromécanique de l'argilite Callovo-Oxfordien (COx), envisagée comme la barrière géologique en France. Le travail est composé de deux parties.Dans la première partie, une étude expérimentale est réalisée. Des essais sur échantillons saturés sont effectués pour l'estimation du coefficient de Biot sous compression hydrostatique d'une part, et de son évolution pendant le chargement dé
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Book chapters on the topic "Poromechanical behavior"

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Shao, Jian-Fu, and Albert Giraud. "Poromechanical Behavior of Saturated Cohesive Rocks." In Constitutive Modeling of Soils and Rocks. ISTE, 2013. http://dx.doi.org/10.1002/9780470611081.ch10.

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Vandamme, Matthieu, Patrick Dangla, Saeid Nikoosokhan, and Laurent Brochard. "Modeling the Poromechanical Behavior of Microporousand Mesoporous Solids: Application to Coal." In Nonlinear Elasticity and Hysteresis. Wiley-VCH Verlag GmbH & Co. KGaA, 2014. http://dx.doi.org/10.1002/9783527665068.ch5.

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Chikhaoui, Mohamed, and Ammar Nechnech. "Poromechanical Behavior Analysis of an Underground Cavity Below Runways Under the Dynamic Cyclic Action of Landing Gear on Complex Geotechnical Conditions." In Sustainable Civil Infrastructures. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-030-01884-9_6.

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Grgic, D., D. Hoxha, and F. Homand. "Poromechanical behavior of ferriferous rocks." In Poromechanics II. CRC Press, 2020. http://dx.doi.org/10.1201/9781003078807-32.

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Sheahan, T. C., and V. N. Kaliakin. "Integrating micromechanics in modeling relaxation behavior of cohesive soils." In Poromechanics. CRC Press, 2020. http://dx.doi.org/10.1201/9781003078487-26.

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Cividini, Annamaria, and Donatella Sterpi. "Two-phase behaviour of a saturated strain softening soil." In Poromechanics. CRC Press, 2020. http://dx.doi.org/10.1201/9781003078487-63.

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Dormieux, L., S. Maghous, D. Kondo, and J. F. Shao. "Macroscopic poroelastic behavior of a jointed rock." In Poromechanics II. CRC Press, 2020. http://dx.doi.org/10.1201/9781003078807-27.

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Hoxha, D., F. Homand, A. Giraud, C. Auvray, and K. Su. "Poromechanical behaviour of Meuse-Haute Marne argillite." In Eurock 2006: Multiphysics Coupling and Long Term Behaviour in Rock Mechanics. Taylor & Francis, 2006. http://dx.doi.org/10.1201/9781439833469.ch16.

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Chateau, X., and L. Dormieux. "A micromechanical approach to the behaviour of unsaturated porous media." In Poromechanics. CRC Press, 2020. http://dx.doi.org/10.1201/9781003078487-9.

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Guiducci, C., A. Pellegrino, J. P. Radu, F. Collin, and R. Charlier. "Hydro-mechanical behavior of fractures: 2D, F.E.M. modeling." In Poromechanics II. CRC Press, 2020. http://dx.doi.org/10.1201/9781003078807-33.

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Conference papers on the topic "Poromechanical behavior"

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Vincke, O., P. Longuemare, M. Bouteca, and J. P. Deflandre. "Investigation of the Poromechanical Behavior of Shales in the Elastic Domain." In SPE/ISRM Rock Mechanics in Petroleum Engineering. Society of Petroleum Engineers, 1998. http://dx.doi.org/10.2118/47589-ms.

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Derome, Dominique, Alessandra Patera, Ahmad Rafsanjani, Saeed Abbasion, and Jan Carmeliet. "The Role of Water in the Hygro-Thermo-Mechanical Behavior of Wood." In ASME 2013 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/imece2013-65101.

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Wood, due to its biological origin, has the capacity to interact with water. Sorption/desorption of moisture is accompanied with swelling/shrinkage and softening/hardening of its stiffness. The correct prediction of the behavior of wood components undergoing environmental loading or industrial process requires that the hygric, thermal and mechanical (HTM) behavior of wood are considered in a coupled manner. In addition, we propose a comprehensive framework using a fully coupled poromechanical approach, where its multiscale implementation provides the capacity to take into account, directly, th
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Kim, Kiseok, and D. Nicolas Espinoza. "Determination of Biot Coefficient for Low-Permeability Rocks Accounting for Undrained Loading." In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0694.

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ABSTRACT The determination of poroelastic properties for low-permeability porous media (k < 10−18 m2) is often elusive because of long periods required to dissipate or equilibrate pore pressure in tested samples. Poroelastic properties, such as the Biot coefficient, play a key role in determining the effective stresses in-situ and changes due to thermal, hydraulic and mechanical loadings. This paper presents a method to determine the Biot coefficient of low-permeability porous media accounting for undrained loading. We conducted experiments and numerical simulations to show the effectiv
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Jammoul, Mohamad, and Mary Wheeler. "A Phase-Field Based Approach for Modeling the Cementation and Shear Slip of Fracture Networks." In SPE Reservoir Simulation Conference. SPE, 2021. http://dx.doi.org/10.2118/203906-ms.

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Abstract Modeling the geomechanical deformations of fracture networks has become an integral part of designing enhanced geothermal systems and recovery mechanisms for unconventional reservoirs. Stress changes in the reservoir can cause large variations in the apertures of fractures resulting in drastic changes in their transmissivities. At the same time, sustained high injection pressures can induce shear slipping along existing fractures and faults and trigger seismic activity. In this work, a novel approach is introduced for the simulation of cementation and shear slip of fractures on very g
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Han, Z., and R. M. Younis. "Investigating the Influence of Pressure Distribution on Nucleation Size in Induced Seismic Events Using a Coupled Dynamic Reservoir Simulation with Adaptive Time-Step." In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0938.

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ABSTRACT Injection-induced seismicity poses a significant technical and socio-political risk to subsurface storage and resource engineering systems. A key challenge is to understand the nucleation process bridged between the dynamic rupture and flow-driven poromechanical deformation (quasi-static) and ensure the ability to capture the onset of ruptures. To address this challenge, a hybrid time-step controller was developed in this research. The controller integrates local discretization error and Coulomb friction and is capable of capturing pre-seismic triggering, co-seismic spontaneous ruptur
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Hettema, M. H. H., and C. J. de Pater. "The Poromechanical Behaviour of Felser Sandstone: Stress- and Temperature-Dependent." In SPE/ISRM Rock Mechanics in Petroleum Engineering. Society of Petroleum Engineers, 1998. http://dx.doi.org/10.2118/47270-ms.

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Ma, Boning, Balasingam Muhunthan, and Xinyu Xie. "Modeling Effects of Clay Structure on Consolidation Behavior." In Fifth Biot Conference on Poromechanics. American Society of Civil Engineers, 2013. http://dx.doi.org/10.1061/9780784412992.104.

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Chikhi, A., A. Belhamri, and P. Glouannec. "Hygro-Thermal Behavior of Cement Mortar and Polystyrene Concrete." In Sixth Biot Conference on Poromechanics. American Society of Civil Engineers, 2017. http://dx.doi.org/10.1061/9780784480779.079.

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Li, Weixin, Faysal Bousikhane, J. William Carey, and Gianluca Cusatis. "Computational Analysis of the Fracture-Permeability Behavior of Shale." In Sixth Biot Conference on Poromechanics. American Society of Civil Engineers, 2017. http://dx.doi.org/10.1061/9780784480779.149.

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Gilbert, R. P., A. Panchenko, and A. Vasilic. "Biphasic Acoustic Behavior of a Non-periodic Porous Medium." In Fifth Biot Conference on Poromechanics. American Society of Civil Engineers, 2013. http://dx.doi.org/10.1061/9780784412992.234.

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