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Artykuły w czasopismach na temat "Interaction sol-structure"
Guéguen, Philippe, Jean-François Semblat i Pierre-Yves Bard. "Interaction sismique sol-structure-sol en milieu urbain". Revue Française de Génie Civil 4, nr 1 (styczeń 2000): 9–33. http://dx.doi.org/10.1080/12795119.2000.9692272.
Pełny tekst źródłaLoganina, Valentina Ivanovna, Svetlana Nikolaevna Kislitsyna i Yerkebulan Bisengalievich Mazhitov. "Structure and Properties of the Modified Binding for Silicate Paints". Materials Science Forum 931 (wrzesień 2018): 469–74. http://dx.doi.org/10.4028/www.scientific.net/msf.931.469.
Pełny tekst źródłaTakayama, Rina, Moe Ishizawa, Miyuki Yamada, Yutaka Inoue i Ikuo Kanamoto. "Characterization of Soluplus/ASC-DP Nanoparticles Encapsulated with Minoxidil for Skin Targeting". ChemEngineering 5, nr 3 (2.08.2021): 44. http://dx.doi.org/10.3390/chemengineering5030044.
Pełny tekst źródłaSchauer, Michael, Jing Jiang i Martin W. Hahn. "Recurrent Seasonal Variations in Abundance and Composition of Filamentous SOL Cluster Bacteria (Saprospiraceae, Bacteroidetes) in Oligomesotrophic Lake Mondsee (Austria)". Applied and Environmental Microbiology 72, nr 7 (lipiec 2006): 4704–12. http://dx.doi.org/10.1128/aem.02935-05.
Pełny tekst źródłaKundu, T. K., i D. Chakravorty. "Synthesis and characterization of nonconventional nickel-titania glasses by sol-gel route". Journal of Materials Research 14, nr 3 (marzec 1999): 1069–73. http://dx.doi.org/10.1557/jmr.1999.0142.
Pełny tekst źródłaV.I, Loganina, i Mazhitov E.B. "Research of inter-phase interaction in ZOL-silicate paints". International Journal of Engineering & Technology 7, nr 4.5 (22.09.2018): 605. http://dx.doi.org/10.14419/ijet.v7i4.5.21167.
Pełny tekst źródłaЛоганина, В. И., Valentina Loganina, Еркебулан Мажитов i Erkebulan Mazhitov. "THE RESEARCH OF INTER-PHASE INTERACTION IN SOL-SILICATE PAINTS". Bulletin of Belgorod State Technological University named after. V. G. Shukhov 3, nr 3 (25.03.2018): 13–17. http://dx.doi.org/10.12737/article_5abfc9b826b8c4.02971523.
Pełny tekst źródłaPAN, QINGYI, YAN HUANG, YAN LI, ZHIXUAN CHENG i XIAOWEN DONG. "STUDY ON STABILITY AND RHEOLOGY OF PEG6000/NANO-Ni(OH)2 SOL". International Journal of Nanoscience 05, nr 06 (grudzień 2006): 943–49. http://dx.doi.org/10.1142/s0219581x06005406.
Pełny tekst źródłaSkipper, L. J., F. E. Sowrey, D. M. Pickup, R. J. Newport, K. O. Drake, Z. H. Lin, M. E. Smith, Priya Saravanapavan i Larry L. Hench. "The Atomic-Scale Interaction of Bioactive Glasses with Simulated Body Fluid". Materials Science Forum 480-481 (marzec 2005): 21–26. http://dx.doi.org/10.4028/www.scientific.net/msf.480-481.21.
Pełny tekst źródłaKuznetsova, S. A., O. S. Khalipova i A. N. Shamsutdinova. "Strong spherical V2O5/TiO2–SiO2 composites obtained by template combined with sol-gel method". Žurnal neorganičeskoj himii 69, nr 4 (19.10.2024): 546–56. http://dx.doi.org/10.31857/s0044457x24040101.
Pełny tekst źródłaRozprawy doktorskie na temat "Interaction sol-structure"
Saez, Robert Esteban. "Interaction dynamique non-linéaire sol-structure". Phd thesis, Ecole Centrale Paris, 2009. http://tel.archives-ouvertes.fr/tel-00453297.
Pełny tekst źródłaToubalem, Franck. "Interaction sol-structure en milieu stochastique". Ecully, Ecole centrale de Lyon, 1996. http://bibli.ec-lyon.fr/exl-doc/TH_T1669_ftoubalem.pdf.
Pełny tekst źródłaSaez, Robert Esteban Modaressi Arézou. "Interaction dynamique non-linéaire sol-structure". S. l. : Ecole centrale de Paris, 2009. http://theses.abes.fr/2009ECAP0012.
Pełny tekst źródłaAnselmucci, Floriana. "Interaction sol-racines : effets sur la micro-structure du sol". Thesis, Université Grenoble Alpes, 2020. http://www.theses.fr/2020GRALI064.
Pełny tekst źródłaThis PhD thesis presents an innovative experimental investigation on the mechanical response of sand to plant root growth.Root-soil interaction is investigated for two different root systems -- Maize and Chickpea -- and two different gradings of Hostun sand with two initial porosities.An original protocol is developed aiming to create samples with repetitive initial nominal properties and representative of the natural interaction.Two experimental campaigns were run on a series of samples with different sands and plants.A 4D (3D+time) analysis of the interaction is carried out by using x-ray Computed Tomography.For each sample, an average of 7 x-rays scans is performed, from the day of the seed sowing up to 7-days-old root system.An image processing technique has been developed and it is applied to the 3D images resulting from the reconstruction of the x-ray scans. Through this image processing, the root system is identified, together with the sand grains and the water present in the system. Finally, a four-phased volume representative of the soil-root system can be defined for each state of the observed samples.Besides, from the 3D greyscale images of the samples, measurements of the kinematics of the system are obtained through local and discrete approaches of image correlation.Local sand porosity and deformations resulting from the four-phased volumes and the image correlations are detailed for one sample of each root-sand configuration.Regarding the impact of the initial sand state on the root system development, the comparison of the different configurations shows, among other things, that the sand density plays a key role on the expansion of the root system, for both plant species.Concerning the sand response to the root growth, the strain tensor computed with image correlation shows that a root shears the soil while growing and the sheared zone is wider when the initial bulk density is lower.This work focuses also on the determination of the sand volumetric response to root growth in the sheared zone and its dependency on the soil density.Sand response is purely dilatant for denser initial states, while the looser sand exhibits a contractant behaviour far from the root surface. Such a response is obtained in the case of both maize and chickpea. Moreover, the contractant behaviour induced by the shearing away from the root is confirmed also for both sand granulometries in a looser state
phelipot, Annabelle. "Interaction sol-structure lors d'opérations de microtunnelage". Phd thesis, INSA de Lyon, 2000. http://tel.archives-ouvertes.fr/tel-00003398.
Pełny tekst źródłaCette étude essentiellement expérimentale concerne les problèmes liés au frottement à l'interface sol-canalisation, à la stabilité du front de taille, et enfin aux mouvements induits au sein du massif de sol traversé.
Une première phase d'observations de terrain, basée sur le suivi complet de chantiers de microtunnelage dans des conditions de sol diverses, comportait la caractérisation des terrains traversés ainsi que l'enregistrement des principaux paramètres de fonçage et de pilotage. L'interprétation de ces données a permis de mettre en évidence l'incidence de la nature des terrains, de la surcoupe, de la lubrification et des problèmes de guidage sur les frottements mobilisés, sans permettre toutefois de toujours faire la part de chacun de ces paramètres. Les problèmes de stabilité du front et leur incidence sur les mouvements du sol ont pu également être observés et analysés.
A partir de ces résultats, une étude complémentaire, dans des conditions bien contrôlées, a été entreprise dans une chambre de calibration adaptée à la modélisation du fonçage de canalisations. Les essais réalisés ont permis de cerner plus précisément l'incidence de la surcoupe et de l'injection de lubrifiant sur les frottements mobilisés et sur les mouvements engendrés dans le massif. L'incidence de la surcoupe a été modélisée à l'aide de simulations numériques bidimensionnelles en vue de l'extension aux conditions in situ.
Cevaer, Franck. "Interaction sol-structure. Modélisation des fonctions d'impédance". Nantes, 1993. http://www.theses.fr/1993NANT2009.
Pełny tekst źródłaPhelipot, Annabelle. "Interaction sol-structure lors d'opérations de micro-tunnelage". Lyon, INSA, 2000. http://theses.insa-lyon.fr/publication/2000ISAL0087/these.pdf.
Pełny tekst źródłaThis work comes within the scope of the « Microtunnels » French National Project. The micro-tunneling technique is a trenchless process for installing small diameter pipes. It consists in jacking pipe elements behind the boring machine performing excavation, spoil removal and steering operations. The main advantage of this recent method is a reduction in disturbances compared to traditional open-trench techniques. Therefore, it is especially useful and adapted in urban areas. This experimental study principally focuses on the main aspects of the technique:. / soil/pipe interface friction,. / face stability. / ground movements induced by microtunneling technique. In the first part, the complete monitoring at several microtunneling sites is reported. In particular, encountered soils are characterized (through in-situ and laboratory tests) and the main jacking and steering data are monitored. The in depth analysis of these data shows the great influence of ground nature, overcut, lubrication and pipe misalignments on mobilized friction. However, the respective contribution of each of the aforementioned parameters is not clearly identified. Face stability and ground \. 10vements are also observed and analyzed. Based on these in-situ results, a complementary experimentation has been designed and set up. Pipe jacking has been reproduced in a calibration chamber with a detailed and precise procedure and a full monitoring of ground displacements in the vicinity of the pipe and the pipe’s displacements and stresses. The influence of overcut, lubricant injection on the mobilized friction and the associated ground movements is precisely evaluated. In addition. The overcut effect has been simulated by numerical 2D calculations in order to use them to in-situ conditions
Roussillon, Pierre. "Interaction sol-structure et interaction site-ville : aspects fondamentaux et modélisation". Lyon, INSA, 2006. http://theses.insa-lyon.fr/publication/2006ISAL0008/these.pdf.
Pełny tekst źródłaWe present a dimensional and parametric analysis of soil structure interaction effects, using simple representative models of structure and closed form impedances of cone model. The effect of a dense urban environment on seismic motions is investigated thanks to macroscopic analytical models: as a first approach, the effect of buildings is described by a mean impedance on the soil-city interface. This enables to identify a mechanical soil-city coupling parameter which governs the magnitude of the interaction, and to determine a characteristic time of the soil-city response. A second more refined model based on approximated wave fields radiated by each building lead to introduce a boundary layer to describe the multiple interactions effect. This work highlights the main mechanisms and governing parameters of single and multiple interaction phenomenon
Roussillon, Pierre Boutin Claude. "Interaction sol-structure et interaction site-ville aspects fondamentaux et modélisation /". Villeurbanne : Doc'INSA, 2007. http://docinsa.insa-lyon.fr/these/pont.php?id=roussillon.
Pełny tekst źródłaChenaf, Nawel. "Interaction inertielle et interaction cinématique sol - pieu". Nantes, 2007. http://www.theses.fr/2007NANT2012.
Pełny tekst źródłaThe present work is first an experimental study of the inertial and the kinematic soil pile interaction of a single pile in a non-coherent soil through reduced scale model tests in the centrifuge. Then a numerical modelisation is built to compute the nonlinear dynamic response of the soil-pile system in the time domain. The experimental results make it possible to build a first generation of Winkler interface elements numerical models. Impacts experiments on a single pile with a pile cap provide an insight in the purely inertial interaction. Tests in the earthquake simulator embarked in the centrifuge give also experimental data about the purely kinematic interaction (without pile cap) and the combination of the two forms of interaction (with a pile cap). P-y loops (Soil reaction–Pile displacement) are established for the three different experimental conditions and reveal important differences. The numerical model is that of the 1D Winkler beam on nonlinear interface punctual elements. It implements the modified Newton algorithm and the Hilbert-Hugues-Taylor algorithm. The different interface elements based on physical parameters are chosen from the literature. They are fitted on the experimental data to reproduce the three forms of interactions. A separation of the inertial type interaction and the kinematic type has been experimentally observed for the first time in the present work
Książki na temat "Interaction sol-structure"
Nawawi, Chouw, i Pender Michael J, red. Soil-Foundation-Structure Interaction. Abingdon: CRC Press [Imprint], 2010.
Znajdź pełny tekst źródłaTheodoros, Triantafyllidis, red. Cyclic behaviour of soils and liquefaction phenomena: Proceedings of the International Conference on Cyclic Behaviour of Soils and Liquefaction Phenomena, 31 March-02 April 2004, Bochum, Germany. Leiden: A.A. Balkema Publishers, 2004.
Znajdź pełny tekst źródłaShen, Jie. Soil-machine interactions: A finite element perspective. New York: Marcel Dekker, 1998.
Znajdź pełny tekst źródłaShen, Jie. Soil-machine interactions: A finite element perspective. New York: Marcel Dekker, 1998.
Znajdź pełny tekst źródłaJonathan, Knappett, i Haigh Stuart, red. Design of pile foundations in liquefiable soils. London: Imperial College Press, 2010.
Znajdź pełny tekst źródłaMinna, Karstunen, i Leoni Martino, red. Geotechnics of soft soils: Focus on ground improvement : proceedings of the second International Workshop on Geotechnics of Soft Soils, Glasgow, Scotland, 3-5 September 2008. Leiden, Netherlands: CRC Press/Balkema, 2009.
Znajdź pełny tekst źródła1941-, Anderson L. R., red. Structural mechanics of buried pipes. Boca Raton, FL: CRC Press, 2000.
Znajdź pełny tekst źródłaOrense, Rolando P., Nawawi Chouw i Michael J. Pender. Soil-Foundation-Structure Interaction. Taylor & Francis Group, 2010.
Znajdź pełny tekst źródłaOrense, Rolando P., Nawawi Chouw i Michael J. Pender. Soil-Foundation-Structure Interaction. Taylor & Francis Group, 2010.
Znajdź pełny tekst źródłaOrense, Rolando P., Nawawi Chouw i Michael J. Pender. Soil-Foundation-Structure Interaction. Taylor & Francis Group, 2017.
Znajdź pełny tekst źródłaCzęści książek na temat "Interaction sol-structure"
Lambert S., Wehr W. i Bustamante M. "Interaction sol-structure: comparaison entre un renforcement de sol par Colonnes à Module Mixte CMM®et par Inclusions Rigides INSER®". W Proceedings of the 15th European Conference on Soil Mechanics and Geotechnical Engineering. IOS Press, 2011. https://doi.org/10.3233/978-1-60750-801-4-995.
Pełny tekst źródłaDoğukanlı, Çılga. "Generative Art and Media Translations". W Güzel Sanatlar Üzerine Güncel Konular ve Araştırmalar. Özgür Yayınları, 2023. http://dx.doi.org/10.58830/ozgur.pub291.c1162.
Pełny tekst źródłaPande, Vishal, Sachin Kothawade, Sharmila Kuskar, Sandesh Bole i Dinesh Chakole. "Fabrication of Mesoporous Silica Nanoparticles and Its Applications in Drug Delivery". W Nanotechnology and Nanomaterials. IntechOpen, 2023. http://dx.doi.org/10.5772/intechopen.112428.
Pełny tekst źródłaStreszczenia konferencji na temat "Interaction sol-structure"
Shin, Yun-Ha, Hong-Gyu Jeon, Jeong-Kuk Son, Ji-Man Kim, Tae-Sung Kim i Young Ze Lee. "Frictional Characteristics of Mesoporous SiO2 Thin Film Formed by Sol-Gel and Self-Assembly Method". W ASME/STLE 2007 International Joint Tribology Conference. ASMEDC, 2007. http://dx.doi.org/10.1115/ijtc2007-44046.
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