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Zeitschriftenartikel zum Thema "Reservoir pressure effect"

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Siripatrachai, Nithiwat, Turgay Ertekin, and Russell T. Johns. "Compositional Simulation of Hydraulically Fractured Tight Formation Considering the Effect of Capillary Pressure on Phase Behavior." SPE Journal 22, no. 04 (2017): 1046–63. http://dx.doi.org/10.2118/179660-pa.

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Summary Compositional reservoir simulation plays a vital role in the development of conventional and unconventional reservoirs. Two major building blocks of compositional simulation are phase-behavior and fluid-transport computations. The oil and gas reserves and flow of reservoir fluids are strongly dependent on phase behavior. In conventional reservoirs, capillary pressure is relatively small and is typically ignored in phase-behavior calculations. The approach is accepted as the norm to perform phase-equilibria calculation to estimate the oil and gas in place and fluid properties. However,
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Andrews, Joshua, Hassan Bahrami, Reza Rezaee, Hamid Reza, Sultan Mehmood, and Hossein Salemi. "Effect of liquid invasion damage and supercharging on wireline formation tester measurements in tight gas reservoirs." APPEA Journal 52, no. 1 (2012): 627. http://dx.doi.org/10.1071/aj11051.

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Wireline formation testing and measurement of true formation pressure can provide essential knowledge about the reservoir dynamic characteristics. In tight formations, a reliable determination of pressure and mobility gradients is challenging because of the tight nature of formation rock. Due to the very low reservoir permeability, the mud cake across wellbore is often ineffective in preventing filtrate invasion, thus causing the measured pressure to be higher than actual formation pressure as a result of supercharging effect. Wireline formation testing measurements are also influenced by the
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Esmaeili, A., L. E. Garzón Rojas, A. Crodrigues Nogueira, et al. "Effect of Gas Injection on the Enhancement of Condensate Recovery in a Gas Condensate Reservoir." Journal of Physics: Conference Series 2594, no. 1 (2023): 012060. http://dx.doi.org/10.1088/1742-6596/2594/1/012060.

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Abstract So far, many methods have been used to increase production from gas condensate reservoirs, but in general, all these methods can be placed in two groups:1) Methods of maintaining pressure or preventing pressure drop; 2) Creating chemical changes in reservoir fluids to improve production mechanisms due to capillary forces.Also, many of the methods used have realized both of the above purposes and at the same time while maintaining the reservoir pressure (or preventing pressure drop) also change the chemical physical properties of the reservoir. One of these methods is gas injection. Wh
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Yan, Xinlu, Songhang Zhang, Shuheng Tang, et al. "A Comprehensive Coal Reservoir Classification Method Base on Permeability Dynamic Change and Its Application." Energies 13, no. 3 (2020): 644. http://dx.doi.org/10.3390/en13030644.

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Due to the unique adsorption and desorption characteristics of coal, coal reservoir permeability changes dynamically during coalbed methane (CBM) development. Coal reservoirs can be classified using a permeability dynamic characterization in different production stages. In the single-phase water flow stage, four demarcating pressures are defined based on the damage from the effective stress on reservoir permeability. Coal reservoirs are classified into vulnerable, alleviative, and invulnerable reservoirs. In the gas desorption stage, two demarcating pressures are used to quantitatively charact
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Khurshid, Ilyas, and Imran Afgan. "Geochemical Investigation of CO2 Injection in Oil and Gas Reservoirs of Middle East to Estimate the Formation Damage and Related Oil Recovery." Energies 14, no. 22 (2021): 7676. http://dx.doi.org/10.3390/en14227676.

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The injection performance of carbon dioxide (CO2) for oil recovery depends upon its injection capability and the actual injection rate. The CO2–rock–water interaction could cause severe formation damage by plugging the reservoir pores and reducing the permeability of the reservoir. In this study, a simulator was developed to model the reactivity of injected CO2 at various reservoir depths, under different temperature and pressure conditions. Through the estimation of location and magnitude of the chemical reactions, the simulator is able to predict the effects of change in the reservoir porosi
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Shi, Xiaoying, Huajiao Guan, Hui Zhao, Yali Jiang, Yuying Li, and Zhao Xue. "Research on improving development effect of high-saturated reservoir in the late stage of water-flooding." E3S Web of Conferences 271 (2021): 01016. http://dx.doi.org/10.1051/e3sconf/202127101016.

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High-saturated reservoir is characterized by high saturation pressure and high gas-oil ratio. The effects of water flooding are easily influenced by the formation pressure and GOR, especially at the late stage. This article presents the relationship between the reasonable pressure maintenance level and GOR as well as water cut based on the actual characteristics of high-saturated reservoir. Then, the reservoir numerical simulation method is used to analyse the influence of pressure recovery rate and water cut rise under different injection-production ratios and injection-production methods. Re
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Happy, Fatema Akter, Mohammad Shahedul Hossain, and Arifur Rahman. "Pressure Data Analysis and Multilayer Modeling of a Gas-Condansate Reservoir." Asia Pacific Journal of Energy and Environment 2, no. 1 (2015): 7–16. http://dx.doi.org/10.18034/apjee.v2i1.219.

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Kailastila gas field located at Golapgonj, Sylhet is one of the largest gas fields in Bangladesh. It produces a high amount of condensate along with natural gas. For the high values of GOR, it may be treated as a wet gas at reservoir condition. Three main sand reservoirs are confirmed in this field (upper, middle & lower).In this study, it has been shown that reservoir parameters of this gas field can be obtained for multilayered rectangular reservoir with formation cross-flow using pressure and their semi log derivative on a set of dimensionless type curve.The effects of the reservoir par
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Khan, M., and L. W. Teufel. "The Effect of Geological and Geomechanical Parameters on Reservoir Stress Path and Its Importance in Studying Permeability Anisotropy." SPE Reservoir Evaluation & Engineering 3, no. 05 (2000): 394–400. http://dx.doi.org/10.2118/66184-pa.

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Summary Reservoir stress path is defined as the ratio of change in effective horizontal stress to the change in effective vertical stress from initial reservoir conditions during pore-pressure drawdown. Measured stress paths of carbonate and sandstone reservoirs are always less than the total stress boundary condition (isotropic loading) and are either greater or less than the stress path predicted by the uniaxial strain boundary condition. Clearly, these two boundary-condition models that are commonly used by the petroleum industry to calculate changes in effective stresses in a reservoir and
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Li, Yanlai. "Numerical Simulation of the Effect of Reservoir Properties on Oil Production from the Low-Permeability Formation by Extended Reach Wells." Geofluids 2023 (April 3, 2023): 1–21. http://dx.doi.org/10.1155/2023/4994087.

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At present, extended reach wells (ERWs) are widely applied on oil and gas exploitation in numerous reservoirs around the globe, and this is attributed to their superiority in the development of marginal oil and gas fields and cost-effectiveness. Identifying the effects of reservoir properties on production is significant to the operation of ERWs for oil and gas extraction. This work utilizes numerical modeling techniques to simulate the application of ERWs in low-permeability formations. The impacts of low permeability on the oil production and the pressure distribution of the reservoirs with
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Vamsi, Krishna Kudapa. "Study on stress-strain effect on gas production from shale formation." i-manager's Journal on Mechanical Engineering 13, no. 2 (2023): 30. http://dx.doi.org/10.26634/jme.13.2.19038.

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The extent of gas production from shale reservoirs depends heavily on the stress-strain impact on the reservoir. The reservoir's developed stress allows the rocks to fracture naturally. The developed fractures across the reservoir blocks enhance the gas flow from the reservoir towards the wellbore. This review paper provides a comprehensive overview of the technologies and engineering of shale formation permeability behavior and the impact of induced stress and strain. The impacts of stress and strain on the permeability of shale are also studied. This paper presents the effect of stress-strai
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Dissertationen zum Thema "Reservoir pressure effect"

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Sathar, Shanvas. "Effect of oil emplacement on pressure solution in reservoir rocks : an experimental analogue study." Thesis, University of Liverpool, 2010. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.539512.

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Xiao, Jinjiang. "Wellbore effects on pressure transient analysis /." Access abstract and link to full text, 1993. http://0-wwwlib.umi.com.library.utulsa.edu/dissertations/fullcit/9325433.

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Zhang, Kaiyi. "CO2 Minimum Miscibility Pressure and Recovery Mechanisms in Heterogeneous Low Permeability Reservoirs." Thesis, Virginia Tech, 2019. http://hdl.handle.net/10919/93728.

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Benefited from the efficiency of hydraulic fracturing and horizon drilling, the production of unconventional oil and gas resources, such as shale gas and tight oil, has grown quickly in 21th century and contributed to the North America oil and gas production. Although the new enhancing oil recover (EOR) technologies and strong demand spike the production of unconventional resources, there are still unknowns in recovery mechanisms and phase behavior in tight rock reservoirs. In such environment, the phase behavior is altered by high capillary pressure owing to the nanoscale pore throats of shal
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Grochau, Marcos Hexsel. "Investigation of pressure and saturation effects on elastic parameters: an integrated approach to improve time-lapse interpretation." Thesis, Curtin University, 2009. http://hdl.handle.net/20.500.11937/549.

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Time-lapse seismic is a modern technology for monitoring production-induced changes in and around a hydrocarbon reservoir. Time-lapse (4D) seismic may help locate undrained areas, monitor pore fluid changes and identify reservoir compartmentalization. Despite several successful 4D projects, there are still many challenges related to time-lapse technology. Perhaps the most important are to perform quantitative time-lapse and to model and interpret time-lapse effects in thin layers. The former requires one to quantify saturation and pressure effects on rock elastic parameters. The latter require
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Grochau, Marcos Hexsel. "Investigation of pressure and saturation effects on elastic parameters: an integrated approach to improve time-lapse interpretation." Curtin University of Technology, Faculty of Science and Engineering, Department of Exploration Geophysics, 2009. http://espace.library.curtin.edu.au:80/R/?func=dbin-jump-full&object_id=129090.

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Time-lapse seismic is a modern technology for monitoring production-induced changes in and around a hydrocarbon reservoir. Time-lapse (4D) seismic may help locate undrained areas, monitor pore fluid changes and identify reservoir compartmentalization. Despite several successful 4D projects, there are still many challenges related to time-lapse technology. Perhaps the most important are to perform quantitative time-lapse and to model and interpret time-lapse effects in thin layers. The former requires one to quantify saturation and pressure effects on rock elastic parameters. The latter require
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Pinyol, i. Puigmartí Núria Mercè. "Landslides in reservoirs: a coupled thermo-hydromechanical approach." Doctoral thesis, Universitat Politècnica de Catalunya, 2010. http://hdl.handle.net/10803/6275.

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La ocurrencia de deslizamientos es uno de los principales problemas presentes durante el diseño, construcción y explotación de presas y embalses. La inundación del pie de los taludes, así como el desembalse rápido, pueden provocar primeras roturas o reactivar antiguos deslizamientos, existentes con frecuencia en el entorno de los embalses. Esta Tesis se centra en el caso particular de los deslizamientos en las márgenes de embalses en los que una masa de terreno desliza sobre una superficie de corte bien definida sin que se observe una intensa degradación del material movilizado. <br/>En la pri
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Ghasemi, Mohsen. "Experimental Evaluation of the effect of change in in-situ net effective pressure on multiphase flow characteristics of geological reservoirs." Thesis, Curtin University, 2021. http://hdl.handle.net/20.500.11937/88251.

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This research has focused on providing a deep understanding of the impact of effective stress on multiphase flow behaviour of subsurface fluid-rock systems. The results are insightful in quantifying and comparing such effects for both carbonate and sandstone porous rocks. The information generated can have important implications for numerical simulation of hydrocarbon production and carbon dioxide storage processes at the reservoir scale.
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Al, Ghamdi Bander Nasser Ayala H. Luis Felipe. "Analysis of capillary pressure and relative permeability effects on the productivity of naturally fractured gas-condensate reservoirs using compositional simulation." [University Park, Pa.] : Pennsylvania State University, 2009. http://etda.libraries.psu.edu/theses/approved/WorldWideIndex/ETD-4622/index.html.

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Du, Fengshuang. "Investigation of Nanopore Confinement Effects on Convective and Diffusive Multicomponent Multiphase Fluid Transport in Shale using In-House Simulation Models." Diss., Virginia Tech, 2020. http://hdl.handle.net/10919/100103.

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Extremely small pore size, low porosity, and ultra-low permeability are among the characteristics of shale rocks. In tight shale reservoirs, the nano-confinement effects that include large gas-oil capillary pressure and critical property shifts could alter the phase behaviors, thereby affecting the oil or gas production. In this research, two in-house simulation models, i.e., a compositionally extended black-oil model and a fully composition model are developed to examine the nano-pore confinement effects on convective and diffusive multicomponent multiphase fluid transport. Meanwhile, the eff
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FERREIRA, EDUARDO G. A. "Modelagem descritiva do comportamento do cimento Portland em ambiente de repositório para rejeitos radioativos." reponame:Repositório Institucional do IPEN, 2017. http://repositorio.ipen.br:8080/xmlui/handle/123456789/28423.

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Submitted by Pedro Silva Filho (pfsilva@ipen.br) on 2018-01-31T16:42:14Z No. of bitstreams: 0<br>Made available in DSpace on 2018-01-31T16:42:14Z (GMT). No. of bitstreams: 0<br>Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)<br>A deposição de rejeitos radioativos em repositórios geológicos profundos vem sendo estudada nos últimos anos em diversos países. Materiais à base de cimento são utilizados nesses repositórios como material estrutural, matriz de imobilização de rejeitos ou material de preenchimento. Compreender o desempenho desse material é essencial para garantir a
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Buchteile zum Thema "Reservoir pressure effect"

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Lin, Wang. "Effect of Gas Reservoir Pressure Depletion on Capillary Pressure." In Springer Series in Geomechanics and Geoengineering. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-0761-5_165.

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Wei, Haiyun, Haizhen Huang, Chaojie Zhang, and Li Lu. "Analysis of Seepage Monitoring Data of Anhua Reservoir Dam in Zhuji." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-7251-3_9.

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AbstractThrough the analysis of seepage monitoring data of Anhua reservoir dam, the anti-seepage effect of dam reinforcement project is evaluated. The analysis of monitoring data shows that the osmometer water level behind the inclined clay wall of the dam is relatively stable and has little correlation with the reservoir water level. Compared with the upstream reservoir water level, the water level of osmometer in each section falls between 7.31 and 9.30 m at high water level, which indicates that the anti-seepage effect of clay inclined core wall of dam body is better. The water head of the
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Xiao, Kang, Li Xiang-ling, Xue-rui Zheng, and Xian-bing Li. "Reasonable Water Injection Pressure of Buried Hill Fractured Reservoir Considering Stress Sensitive Effect." In Springer Series in Geomechanics and Geoengineering. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-0761-5_122.

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Lv, Zhi-kai. "Capillary Pressure and Its Effect on the Recovery of Large Tight Sandstone Gas Reservoir with Strong Heterogeneity." In Springer Series in Geomechanics and Geoengineering. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1964-2_185.

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Yang, Shaojia, Yongqing Wang, and Tao Zhang. "Study on Hydraulic Characteristics of Rock Plug Inlet/Outlet Blasting Process in a Power Station." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-7251-3_38.

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AbstractHydraulic characteristics of rock plug blasting are the key to successful construction of rock plug inlet/outlet. In this paper, the hydraulic characteristics of rock plug blasting at the inlet/outlet of the lower reservoir of a pumped storage power station are studied by means of physical model test. The characteristic laws of water hammer pressure, surge of gate shaft and accumulation effect during blasting are obtained. The results verify the rationality of the design type of rock plug inlet, and demonstrate the feasibility of using gate direct water blocking scheme and high water l
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Xu, Maolin, Dongyan Fan, and Jun Yao. "Pressure Transient Analysis Considering Geo-mechanic Effects in Deep Oil Reservoirs." In Computational and Experimental Simulations in Engineering. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-44947-5_100.

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Yang, Limin. "Numerical Study of the Effect of Dynamic Capillary Pressure on Oil–Water Flow in Tight Reservoirs." In Lecture Notes in Civil Engineering. Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-4067-5_2.

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Feng, Qing, Xiaonan Li, Zijun Huang, et al. "Effects of Threshold Pressure and Stress Sensitivity on Water-Drive Gas Reservoir Based on Numerical Well Test Model." In Springer Series in Geomechanics and Geoengineering. Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-0761-5_276.

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Sassa, Kyoji, Loi Doan, Koji Matsunami, et al. "Risk Identification of Large-Scale Landslides Triggered by Rainfalls and Post-Rainfall Earthquakes in Sri Lanka." In Progress in Landslide Research and Technology. Springer Nature Switzerland, 2025. https://doi.org/10.1007/978-3-031-72736-8_16.

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AbstractBased on the ISDR-ICL Sendai Landslide Partnerships 2015–2025, the ICL and NBRO implemented joint research on the “Development of early warning technology of rain-induced rapid and long-travelling landslides in Sri Lanka” from 2019. This paper reports the achievement of this project from June 2019 to April 2024.Based on studies of previous large-scale landslides, most large-scale landslides occurred in/around previous large-scale landslides. Then, we identified around 200 previous large-scale landslides in the Aranayake area (20 km × 20 km). Within 50 landslides, we conducted the LS-RA
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Wen, Teo Kai, and Azeb Demisi Habte. "Pressure Transient Behavior of Horizontal Gas Injection Well in Low Permeable Reservoirs." In Unconventional Methods for Geoscience, Shale Gas and Petroleum in the 21st Century. IOS Press, 2023. http://dx.doi.org/10.3233/aerd230015.

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This work addresses the pressure transient behavior of horizontal gas injection well in low permeable reservoirs. Low permeable reservoirs such as shale oil reservoirs have been receiving great attentions lately which normally require hydraulic fracturing and horizontal well development to maximize the oil production. However, the primary recovery factor of shale oil reservoirs is still low and has been estimated to be below 10–15% due to tight nature of the shale formations. Enhanced oil recovery method such as miscible carbon dioxide (CO2) injection is said to be one of the most efficient an
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Konferenzberichte zum Thema "Reservoir pressure effect"

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Mitra, Purnayan, and Nihal Mounir Darraj. "Reservoir Modelling to Predict the Effect of Cold Water Injection in Geothermal Pressure Transient Analysis." In SPE Reservoir Characterisation and Simulation Conference and Exhibition. SPE, 2023. http://dx.doi.org/10.2118/212615-ms.

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Abstract Energy is one of the major components for defining the overall development of a country. Mankind utilizes energy to meet the requirements of daily processes. This energy can be extracted from the renewable as well as the non-renewable sources of energy. With global rise in the usage of non-renewable energy sources, there is a much concern for the green house gas emissions and climate change. Renewable sources of energy are therefore being exploited to reduce the consumption of conventional fuels and overall reduce the environmental impacts. While solar, wind and tidal energy have been
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Guo, Xiao, Jing Ma, JiuDi Li, Yang Hao, and Haiying Wang. "Effect of Reservoir Temperature and Pressure on Relative Permeability." In SPETT 2012 Energy Conference and Exhibition. Society of Petroleum Engineers, 2012. http://dx.doi.org/10.2118/158055-ms.

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Yan, Fuyong, and De‐Hua Han. "Modeling of effective pressure effect on porous reservoir rocks." In SEG Technical Program Expanded Abstracts 2009. Society of Exploration Geophysicists, 2009. http://dx.doi.org/10.1190/1.3255255.

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Jing, Hongbin, Jianqiao Liu, Huanquan Pan, Tie Kuang, Zhilin Yin, and Bensheng Li. "A Global-Convergent Newton Optimization Algorithm for the Phase Behavior Calculations with Capillary Pressure Effect for Tight Reservoir Fluids." In SPE Reservoir Simulation Conference. SPE, 2023. http://dx.doi.org/10.2118/212176-ms.

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Abstract The thermodynamic behavior of a fluid in a tight reservoir differs from that in the conventional environment. A new phase equilibrium algorithm with capillary pressure is presented and formulated using the laws of thermodynamics. At a given temperature, volume, and moles with capillary pressure, this new algorithm is based on the Newton iteration and line search, which guarantees a global convergence. We obtain the Newton direction by utilizing the modified Cholesky factorization to ensure a descending direction and combine line search to facilitate the iterations in the feasible doma
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Benzagouta, Mohammed S., and Mohammed M. Amro. "Pressure and Temperature Effect on Petrophysical Characteristics: Carbonate Reservoir Case." In SPE Saudi Arabia Section Technical Symposium. Society of Petroleum Engineers, 2009. http://dx.doi.org/10.2118/126045-ms.

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Zhao, Z. W., S. C. Zhang, Y. S. Zou, et al. "Evaluation of Gas Flooding Effect in Mahu Tight Sandstone Reservoir." In 58th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2024. http://dx.doi.org/10.56952/arma-2024-0741.

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ABSTRACT: The pore structure of low-permeability tight gravel reservoirs in Mahu is complex, with low permeability and high clay content. This results in rising injection pressures during water flooding, severe under-injection in water wells, and challenges in maintaining reservoir pressure, thereby affecting reservoir development effectiveness. Gas has relatively strong permeability in tight reservoirs, exhibits good injectability, and can avoid various sensitivity issues caused by water injection. Therefore, gas injection development shows potential applications in low-permeability tight gra
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Nilsen, H. M., E. Ahmed, A. F. Rasmussen, K. Bao, and T. Skille. "Constrained Pressure Residual Preconditioner Including Wells for Reservoir Simulation." In SPE Reservoir Simulation Conference. SPE, 2023. http://dx.doi.org/10.2118/212172-ms.

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Abstract We present a new practical constrained pressure residual (CPR) preconditioner including well degrees of freedom (DOFs). The action of the new CPR preconditioner applies only to the reservoir DOFs of the linear system, and includes well-reservoir coupling by solving an extended linear system for the pressure. This extended pressure system is similar to the one proposed in Zhou et al. (Comp. geosci 17(2), 2013). The preconditioner is suitable for a linear system which only includes reservoir DOFs as unknowns and where the effect of the wells is included by Schur complement in the linear
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Best, A. "The effect of pressure on velocity anisotropy in reservoir sedimentary rocks." In 56th EAEG Meeting. European Association of Geoscientists & Engineers, 1994. http://dx.doi.org/10.3997/2214-4609.201410055.

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Joseph, A., J. A. Ajienka, and S. O. Onyeizugbe. "The Effect of Reservoir Pressure Drawdown on Well Completion/Performance Efficiency." In SPE Nigeria Annual International Conference and Exhibition. Society of Petroleum Engineers, 2015. http://dx.doi.org/10.2118/178313-ms.

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Ojah, M. G., E. S. Adewole, and E. Emumena. "Pressures and Pressure Derivatives of Vertical and Horizontal Wells Located Within Intersecting Sealing Fault and Constant Pressure Boundary." In SPE Nigeria Annual International Conference and Exhibition. SPE, 2023. http://dx.doi.org/10.2118/217103-ms.

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Abstract The optimization of the performance of oil and gas wells (whether vertical or directional) as well as well location from external reservoir boundaries or faults has been a major concern of the reservoir engineer over the years. This work presents an accurate method for evaluating the performance of both the vertical and horizontal wells each located within an intersecting sealing/no-flow boundary and a constant-pressure boundary. The main aim of this study was to investigate the transient pressure behaviour of a vertical well as well as a horizontal well located within an intersecting
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Berichte der Organisationen zum Thema "Reservoir pressure effect"

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Weiss. L52296 Smart Gas Using Chemicals To Improve Gas Deliverability Phase II. Pipeline Research Council International, Inc. (PRCI), 2009. http://dx.doi.org/10.55274/r0010658.

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The objective of this effort was to demonstrate in the field the new wettability altering technology developed in the laboratory during Phase 1. Reservoir cores from three gas storage facilities including sandstone and dolomite reservoirs were used to evaluate the two surfactants. The imbibition and core flood tests showed that gas deliverability was improved in surfactant-treated sandstone cores. It was concluded that the aquifer storage facilities are candidates for field testing. Results from Phase I provided the foundation for this Phase II project. The Waverly Storage Facility operated by
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DeVries, Nieland, Wagg, and Xie. FV387KR Temperature Effects on Threaded Couplings in Caverns. Pipeline Research Council International, Inc. (PRCI), 2008. http://dx.doi.org/10.55274/r0010918.

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This report documents research performed to identify if gas injection and withdrawal temperatures of typical natural gas well completions could potentially result in failure of the casing through low-frequency cyclic fatigue. Finite element analyses of two salt cavern wells and one reservoir storage well were used to estimate the state of stress in the casing resulting from: (1) casing weight; (2) product pressures; (3) thermally induced stresses; and (4) external ground pressures, including salt creep. The range of stress and temperature conditions determined during simulations of gas service
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Sela, Hanan, Eduard Akhunov, and Brian J. Steffenson. Population genomics, linkage disequilibrium and association mapping of stripe rust resistance genes in wild emmer wheat, Triticum turgidum ssp. dicoccoides. United States Department of Agriculture, 2014. http://dx.doi.org/10.32747/2014.7598170.bard.

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The primary goals of this project were: (1) development of a genetically characterized association panel of wild emmer for high resolution analysis of the genetic basis of complex traits; (2) characterization and mapping of genes and QTL for seedling and adult plant resistance to stripe rust in wild emmer populations; (3) characterization of LD patterns along wild emmer chromosomes; (4) elucidation of the multi-locus genetic structure of wild emmer populations and its correlation with geo-climatic variables at the collection sites. Introduction In recent years, Stripe (yellow) rust (Yr) caused
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Almutairi, Hossa, and Axel Pierru. Assessing Climate Mitigation Benefits of Public Support to CCS-EOR: An Economic Analysis. King Abdullah Petroleum Studies and Research Center, 2023. http://dx.doi.org/10.30573/ks--2023-dp12.

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By storing carbon dioxide CO2 captured from the atmosphere or point sources into oil fields, carbon capture and storage with enhanced oil recovery (CCS-EOR) increases the fields’ output by raising reservoir pressures. Since CO2-EOR has been experimented with for decades and the revenues from the additional oil production improve projects’ economics, CCS-EOR is the most readily deployable CCS technology. However, public support for CCS-EOR projects is sometimes contested on the grounds that the resulting increase in oil production undermines their environmental benefits. Addressing this concern
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