Littérature scientifique sur le sujet « Geological storage stability »

Créez une référence correcte selon les styles APA, MLA, Chicago, Harvard et plusieurs autres

Choisissez une source :

Consultez les listes thématiques d’articles de revues, de livres, de thèses, de rapports de conférences et d’autres sources académiques sur le sujet « Geological storage stability ».

À côté de chaque source dans la liste de références il y a un bouton « Ajouter à la bibliographie ». Cliquez sur ce bouton, et nous générerons automatiquement la référence bibliographique pour la source choisie selon votre style de citation préféré : APA, MLA, Harvard, Vancouver, Chicago, etc.

Vous pouvez aussi télécharger le texte intégral de la publication scolaire au format pdf et consulter son résumé en ligne lorsque ces informations sont inclues dans les métadonnées.

Articles de revues sur le sujet "Geological storage stability"

1

Duan, Bao Fu, Meng Zhang, Yan Xin Lv, Cheng Bo Zhai, and Xian He Weng. "Stability Evaluation on High Rock Slope of Open-Pit for Ash Storage." Applied Mechanics and Materials 90-93 (September 2011): 342–46. http://dx.doi.org/10.4028/www.scientific.net/amm.90-93.342.

Texte intégral
Résumé :
Slopes of open-pit mine and ash storage are likely to occur the geological disasters of landslides, collapse, ground deforms and so on, due to geological structure, mining activity, etc. Lai Zhou Power plant is going to use the open-pit of Cang Shang gold mine as the ash storage field. Therefore, the long-term stability of the slope is of great significance. Through the geological investigation and analysis of open-pit mine slope, the conditions of geological and tectonic are summarized. On the basis of field monitoring, the stability of the slope is analyzed in detail. The estimated results c
Styles APA, Harvard, Vancouver, ISO, etc.
2

A, Miadonye. "Mobility Control Potential in Geological Sequestration of Anthropogenic Carbon Dioxide using Cheap Soluble Organics as Thickeners and Implications for Interfacial Stability." Petroleum & Petrochemical Engineering Journal 5, no. 4 (2021): 1–20. http://dx.doi.org/10.23880/ppej-16000290.

Texte intégral
Résumé :
Current levels of anthropogenic carbon dioxide in the atmosphere are responsible for global warming at scales not seen before. To mitigate this global warming trend, the Intergovernmental Panel on Climate Change (IPCC) has universally adopted the geological carbon storage option. The technical implication of geological carbon storage is that carbon dioxide with a very low dynamic viscosity will be injected to push formation brine with a high viscosity contrast. Consequently, problems of interfacial instability responsible for poor sweep efficiencies encountered in the petroleum industry’s impr
Styles APA, Harvard, Vancouver, ISO, etc.
3

Cyran, Katarzyna, and Michal Kowalski. "Shape Modelling and Volume Optimisation of Salt Caverns for Energy Storage." Applied Sciences 11, no. 1 (2021): 423. http://dx.doi.org/10.3390/app11010423.

Texte intégral
Résumé :
Salt caverns are an attractive solution to the growing energy demand in view of their large storage capacity, safety of storage operation and long operation time. The designing process of salt caverns is still considered a complex issue despite progress in geotechnical, construction and exploration methods. Finding the optimal shape and dimensions of a salt cavern in given geological conditions is a difficult engineering problem in view of safety and stability requirements. In this paper, the stability of typical cavern shapes (cylindrical, enlarged top, and enlarged bottom), with each of the
Styles APA, Harvard, Vancouver, ISO, etc.
4

DUDU, Alexandra, Constantin Stefan SAVA, Gabriel IORDACHE, et al. "Geophysical study of a salt body for energy storage." Geo-Eco-Marina No 23/2017 (December 31, 2017): 165–70. https://doi.org/10.5281/zenodo.1204929.

Texte intégral
Résumé :
In the context of global and national efforts to mitigate climate change, renewable energies from intermittent sources are starting to have considerable shares in the global and national energy mix. In order to maintain security and stability of energy networks, there is an increasing need for energy storage. Geological (underground) energy storage could be a solution for storing large amounts of energy and, at present, there are several technologies, at different levels of maturity. We decided to start the evaluation of geological energy storage possibilities in Romania with th
Styles APA, Harvard, Vancouver, ISO, etc.
5

Ciotta, Mariana, and Colombo Celso Gaeta Tassinari. "Clay minerals and their role in carbon capture and storage." REVISTA DELOS 17, no. 60 (2024): e2167. http://dx.doi.org/10.55905/rdelosv17.n60-050.

Texte intégral
Résumé :
This work addresses the role of clay minerals in carbon capture and storage (CCS), highlighting their importance in the context of climate change and the transition to a low-carbon economy. The need to develop effective solutions for CO2 sequestration in geological formations has been a constant challenge, with clay minerals being key components of these formations. The objective of this study is to analyze the physicochemical properties of clay minerals that make them suitable for underground CO2 storage. The research is based on relevant scientific literature and case studies demonstrating t
Styles APA, Harvard, Vancouver, ISO, etc.
6

Hoshino, Kazuo. "Construction of underground caverns for petroleum storage in orogenic areas: Geological stability." Engineering Geology 35, no. 3-4 (1993): 199–205. http://dx.doi.org/10.1016/0013-7952(93)90007-y.

Texte intégral
Styles APA, Harvard, Vancouver, ISO, etc.
7

Lincoln, D. L., and Terry Bennett. "Coupled Two Component Fluid Flow in Deformable Porous Media – Towards a Numerical Model for Geological Carbon Storage." Applied Mechanics and Materials 553 (May 2014): 393–400. http://dx.doi.org/10.4028/www.scientific.net/amm.553.393.

Texte intégral
Résumé :
Carbon Sequestration by CO2 storage into deep geological formations is a short to mid-term component for mitigatingclimate change while maintaining the stability of the world’s energy systems. This storage procedure will result in a seriesof coupled physical and chemical processes within the geological formation, which may critically affect its integrityas a storage medium. This work presents the development of a finite element model, which is to collaboratively aiddesign, monitoring and risk assessment. The current emphasis of the model development is on ensuring that the inducedgeomechanical
Styles APA, Harvard, Vancouver, ISO, etc.
8

Ping, Lihua, Huijun Wang, Yuchen Tian, et al. "Typical Case Studies and Classification with Evaluation of Carbon Dioxide Geological Sequestration in Saline Aquifers." Processes 12, no. 11 (2024): 2562. http://dx.doi.org/10.3390/pr12112562.

Texte intégral
Résumé :
To achieve carbon neutrality in China’s fossil energy sector, saline aquifer CO2 geological storage has become a critical strategy. As research into carbon reduction and storage potential evaluation advances across various geological scales, the need arises for consolidating key CO2 storage cases and establishing a standardized classification system and evaluation methodology. This paper provides a comprehensive review of notable CO2 storage projects in saline aquifers, covering aspects such as project overviews, structural and reservoir characteristics, caprock integrity, and seismic monitori
Styles APA, Harvard, Vancouver, ISO, etc.
9

Guo, Xu, Chuanxiang Zhang, Yuduo Wei, et al. "Analysis of Caprock Mechanical Stability for CO2 Geological Storage Based on the Fuzzy Analytic Hierarchy Process." Journal of Progress in Civil Engineering 6, no. 12 (2024): 25–29. https://doi.org/10.53469/jpce.2024.06(12).04.

Texte intégral
Résumé :
Carbon dioxide geological sequestration (CCS) technology is a key measure for addressing climate change, and its safety heavily depends on the mechanical stability of the caprock in the storage formation. This paper develops a comprehensive evaluation system based on the Fuzzy Analytic Hierarchy Process (FAHP) to assess the mechanical stability of the caprock after CO2 injection into saline aquifers. Compared to other quantitative evaluation methods, FAHP is more effective at handling the fuzziness and uncertainty inherent in the evaluation process. By utilizing a fuzzy judgment matrix, it acc
Styles APA, Harvard, Vancouver, ISO, etc.
10

Zou, Lin Lin, Lei Nie, and Zhan Dong Su. "Forecasting of Jiatanchang Bank Collapse in the Three Gorge Reservoir Area." Advanced Materials Research 487 (March 2012): 850–54. http://dx.doi.org/10.4028/www.scientific.net/amr.487.850.

Texte intégral
Résumé :
In the reservoir storage and operation process, the geological environment of reservoir bank will change significantly; the changes often cause some geological problems, such as landslide, reconstruction of reservoir bank etc. In this paper, Jiatanchang reservoir has been taken for example, under the premise of engineering geology and stability analysis, Kachugin Method was applied to forecast bank collapse; combining with urban planning and ecological protection, the corresponding protective proposal has been put forward.
Styles APA, Harvard, Vancouver, ISO, etc.
Plus de sources

Thèses sur le sujet "Geological storage stability"

1

Rytel, Alexander L. "Hydrous Mineral Stability in Earth’s Mantle: Implications for Water Storage and Cycling." The Ohio State University, 2016. http://rave.ohiolink.edu/etdc/view?acc_num=osu1452168411.

Texte intégral
Styles APA, Harvard, Vancouver, ISO, etc.

Chapitres de livres sur le sujet "Geological storage stability"

1

Voulgaridis Georgios. "Numerical analysis and Modeling of the Symbola Dam preliminary design study, Komotini, Northern Greece, and the study of instrumentation and Structural Health Monitoring application for damage prediction." In From Fundamentals to Applications in Geotechnics. IOS Press, 2015. https://doi.org/10.3233/978-1-61499-603-3-2303.

Texte intégral
Résumé :
Symvola village is located in Komotini, Capital of Rhodope Prefecture, Northern Greece. During 1988-1989, Municipality of komotini signed a contract for a preliminary design study of a Storage Dam for the Symvola village's water supply. The preliminary study was completed but no construction was made. Almost twenty years later, in 2010, the Municipality of Komotini signed again a contract for a second preliminary design study in the context of the Municipality's Board decision for the Dam's final study and its actual construction but again no plant was set up. The Geotechnical research for the
Styles APA, Harvard, Vancouver, ISO, etc.

Actes de conférences sur le sujet "Geological storage stability"

1

Yonebayashi, H., K. Takabayashi, Y. Miyagawa, and T. Watanabe. "Foam Stability Enhanced Technology For Mobility Control Of CO2 EOR." In Fifth CO2 Geological Storage Workshop. EAGE Publications BV, 2018. http://dx.doi.org/10.3997/2214-4609.201802982.

Texte intégral
Styles APA, Harvard, Vancouver, ISO, etc.
2

Aruffo, C. M., A. Henk, and P. R. G. PROTECT Research Group. "Fault Stability and Potential Fault Reactivation Analysis in Otway Basin, Australia." In Fourth EAGE CO2 Geological Storage Workshop. EAGE Publications BV, 2014. http://dx.doi.org/10.3997/2214-4609.20140072.

Texte intégral
Styles APA, Harvard, Vancouver, ISO, etc.
3

Nermoen, A., R. I. K. Korsnes, S. A. H. Aloysius Haug, A. H. Hiorth, and M. V. M. Madland. "The Dynamic Stability of Chalks During Flooding of Non-equilibrium Brines and CO2." In Fourth EAGE CO2 Geological Storage Workshop. EAGE Publications BV, 2014. http://dx.doi.org/10.3997/2214-4609.20140092.

Texte intégral
Styles APA, Harvard, Vancouver, ISO, etc.
4

Phan, V. C., T. Kuznetsova, and B. Kvamme. "Effect of Temperature and Calcite on Carbon Dioxide Transport and Hydrate Stability in Geological Formations." In Third EAGE CO2 Geological Storage Workshop. EAGE Publications BV, 2012. http://dx.doi.org/10.3997/2214-4609.20143840.

Texte intégral
Styles APA, Harvard, Vancouver, ISO, etc.
5

Yu, Enyi, Shilong Liu, Zongyang Li, Dong Zhang, Hui Wu, and Yuan Di. "Geomechanical Analysis of Caprock and Fault Stability in a Full 3D Field Model During CO2 Geological Storage." In 2024 Carbon Capture, Utilization, and Storage Conference. American Association of Petroleum Geologists, 2024. http://dx.doi.org/10.15530/ccus-2024-4011849.

Texte intégral
Styles APA, Harvard, Vancouver, ISO, etc.
6

Abreu, Julia Franco, Alvaro M. Costa, Pedro V. M. Costa, et al. "Large-Scale of Hydrogen Underground Storage in Salt Caverns: The Future of Sustainable Energy Storage." In International Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/igs-2023-0010.

Texte intégral
Résumé :
Abstract Hydrogen is taking a significant lead as a complementary energy carrier. One of the most significant structural challenges in the hydrogen supply chain is storing large volumes to ensure stability between generation, delivery, and utilization. In this context, geological storage in salt caverns stands out as the most promising technology. Salt caverns mined by leaching have unique physicochemical characteristics such as negligible permeability under high gas pressures (avoiding leakage), self-healing, higher levels of stability, and stress safety shield due to the creep phenomenon. Al
Styles APA, Harvard, Vancouver, ISO, etc.
7

Jianan, Wu, Zheng Dewen, Ding Guosheng, et al. "Stability Evaluation of the Constructed Salt Cavities of Jintan Gas Storage in China." In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0907.

Texte intégral
Résumé :
ABSTRACT Learning from the operation experience of built salt cavern gas storages is necessary for new cavity construction. Jintan Gas Storage is the first salt cavern underground gas storage in China and Asia. Since the pilot experiment in 2003, it has been put into operation for about 20 years, with over 29 caverns built and a working gas volume of 800 million cubic meters formed. Due to the complexity of geological conditions and lack of building experience, the shape of some constructed salt cavities is irregular or even deformed, facing stability risks. Based on the geological information
Styles APA, Harvard, Vancouver, ISO, etc.
8

He, Yuting, Yuetian Liu, Jingru Wang, et al. "Stability Study of Tight Sandstone Reservoirs During CO2 Dynamic Storage Process." In 58th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2024. http://dx.doi.org/10.56952/arma-2024-0142.

Texte intégral
Résumé :
ABSTRACT: The tight sandstone reservoirs present a viable option for geological CO2 storage. The stability and safety of the reservoir rock are fundamental for long-term CO2 storage. However, the injection may lead to interactions between H2O, CO2, and rock, potentially impacting the mineral composition and physical properties of the reservoir. This ultimately leads to a decrease in the mechanical properties of the rock and disrupts the stability of the reservoir in high-pressure environments. In this study, rock mechanics experiments, nuclear magnetic resonance (NMR) experiments, and scanning
Styles APA, Harvard, Vancouver, ISO, etc.
9

He, Xinxing, Wei Zhou, Yongliang Tang, et al. "Application of 4D Geomechanical Modelling for Fault Critical Re-Active Stress Evaluation in CO2 Storage." In ADIPEC. SPE, 2023. http://dx.doi.org/10.2118/216104-ms.

Texte intégral
Résumé :
Abstract In order to provide effective guidance for optimizing and adjusting the maximum operation pressure and dynamic monitoring well pattern of underground gas storages and ensure the operation safety of gas storages. With the continuous enhancement demand for resources is also growing. At the same time, with the rapid development of industry, the industrial waste gas led by CO2 has also caused great harm to the environment. Therefore, to solve the above two problems, it is crucial to accelerate the construction of underground gas storage, safe and efficient extraction of oil and gas reserv
Styles APA, Harvard, Vancouver, ISO, etc.
10

Huang, J., F. Hamon, T. Gazzola, et al. "Fully Coupled Near-Wellbore Multiphase Poromechanics Simulation for CO2 Storage." In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0099.

Texte intégral
Résumé :
ABSTRACT In geological CO2 storage operations, wellbore deformations and leakage pathways formations can occur around injection and abandoned wells subjected to high rates and long-term CO2 injection. To guide engineering design and prevent CO2 leakage risks, a full understanding of the underlying physics and robust numerical models are necessary to evaluate the response of underground formations in the near wellbore region and in the reservoir. In this study, a multi-scale and multi-physics open-source simulator (GEOS) is used to simulate multiphase flow and poromechanical deformations over t
Styles APA, Harvard, Vancouver, ISO, etc.
Nous offrons des réductions sur tous les plans premium pour les auteurs dont les œuvres sont incluses dans des sélections littéraires thématiques. Contactez-nous pour obtenir un code promo unique!