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Auswahl der wissenschaftlichen Literatur zum Thema „Limestone reservoir“
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Zeitschriftenartikel zum Thema "Limestone reservoir"
Wang, D., M. Maubert, G. A. Pope, P. J. Liyanage, S. H. Jang, K. A. Upamali, L. Chang et al. „Reduction of Surfactant Retention in Limestones Using Sodium Hydroxide“. SPE Journal 24, Nr. 01 (20.11.2018): 92–115. http://dx.doi.org/10.2118/194009-pa.
Der volle Inhalt der QuelleJiang, Qingchun, Weiming Wang und Qixia Lyu. „Characteristics and Controlling Factors of Tight Marl Reservoirs with an Eyelid-Shaped Structure of the First Member of the Deep Maokou Formation in Eastern Sichuan“. Energies 16, Nr. 5 (01.03.2023): 2353. http://dx.doi.org/10.3390/en16052353.
Der volle Inhalt der QuelleGorter, J. D., und J. M. Davies. „UPPER PERMIAN CARBONATE RESERVOIRS OF THE NORTH WEST SHELF AND NORTHERN PERTH BASIN, AUSTRALIA“. APPEA Journal 39, Nr. 1 (1999): 343. http://dx.doi.org/10.1071/aj98019.
Der volle Inhalt der QuellePermana, Aang Panji, und Sunarty Suly Eraku. „Kualitas Batugamping Gorontalo Sebagai Reservoir Air Tanah Berdasarkan Analisis Jenis Porositas“. EnviroScienteae 16, Nr. 1 (18.08.2020): 1. http://dx.doi.org/10.20527/es.v16i1.8993.
Der volle Inhalt der QuelleJiangmin, Du, Zhang Xiaoli, Yu Yanqiu, Huang Kaiwei, Guo Hongguang, Zhong Gaorun, Yu Bowei und Zhao Yuanyuan. „Lacustrine Carbonate Reservoir Characteristics Research of Jurassic Da’anzhai Member in North Central Sichuan Basin“. Open Petroleum Engineering Journal 8, Nr. 1 (10.09.2015): 398–404. http://dx.doi.org/10.2174/1874834101508010398.
Der volle Inhalt der QuelleXin, Yongguang, Wenzheng Li, Hao Zhang, Han Tian, Xiaodong Fu und Zengye Xie. „Mechanisms by Which an Evaporated Lagoon Sedimentation System Controls Source–Reservoir Preservation in Lei32 Sub-Member Unconventional Oil and Gas“. Energies 17, Nr. 4 (19.02.2024): 964. http://dx.doi.org/10.3390/en17040964.
Der volle Inhalt der QuelleIslam, Musfirat Najmun, Md Anwar Hossain Bhuiyan, Mohammad Solaiman, Md Sajjadul Islam Fahim und Zohur Ahmed. „Evaluation of Reservoir Properties of Sylhet Limestone of Jaintia Group, North-Eastern Sylhet, Bangladesh“. Dhaka University Journal of Earth and Environmental Sciences 12, Nr. 2 (24.06.2024): 119–37. http://dx.doi.org/10.3329/dujees.v12i2.73167.
Der volle Inhalt der QuelleWidarsono, Bambang. „THE ROCK COMPRESSIBILITY CHARACTERISTICS OF SOME INDONESIAN RESERVOIR LIMESTONES“. Scientific Contributions Oil and Gas 37, Nr. 1 (14.02.2022): 1–14. http://dx.doi.org/10.29017/scog.37.1.615.
Der volle Inhalt der QuelleDunnington, H. V. „Generation, migration, accumulation, and dissipation of oil in Northern Iraq“. GeoArabia 10, Nr. 2 (01.04.2005): 39–84. http://dx.doi.org/10.2113/geoarabia100239.
Der volle Inhalt der QuelleMahdi, Thamer. „Stratigraphic Reservoir Characterization of Ratawi Formation in Southern Iraq“. Iraqi Geological Journal 57, Nr. 2D (31.10.2024): 65–77. http://dx.doi.org/10.46717/igj.57.2d.5ms-2024-10-15.
Der volle Inhalt der QuelleDissertationen zum Thema "Limestone reservoir"
García, Ríos María. „Dissolved CO2 effect on the reactivity of the Hontomín reservoir rocks (limestone and sandstone)“. Doctoral thesis, Universitat Politècnica de Catalunya, 2015. http://hdl.handle.net/10803/287988.
Der volle Inhalt der QuelleUna planta pilot per a l'emmagatzematge geològic de CO2 es troba a Hontomín (Burgos). El reservori és un aqüífer salí profund, format principalment per roca calcària (80-85%) i gres (15-20%), que està situat entre dues capes de molt baixa permeabilitat que actuen com a roques segell. La dissolució de CO2 a l'aigua del reservori provocarà una disminució del pH i, en conseqüència, la dissolució dels carbonats presents en el reservori. Tenint en compte que l'aigua resident és rica en sulfat, és possible la precipitació de minerals secundaris (guix o anhidrita). Aquestes reaccions poden provocar canvis en la porositat, la permeabilitat i l'estructura de por del reservori que, a la vegada, poden afectar la seva injectivitat i capacitat d'emmagatzematge. Per tant, cal aprofundir en el coneixement sobre els processos acoblats de precipitació de guix i dissolució de carbonats (calcita i dolomita) en solucions riques en CO2 dissolt i les seves implicacions en les propietats hidrodinàmiques de la roca reservori. Un primer objectiu d'aquesta tesi és poder comprendre millor aquestes reaccions acoblades mitjançant l'avaluació de l'efecte que exerceixen la pressió P, la pressió parcial de CO2 pCO2, la temperatura T, la mineralogia, l'acidesa i l'estat de saturació de la solució sobre aquestes reaccions. Amb aquest objectiu, s'han realitzat una sèrie d'experiments utilitzant columnes plenes de roca calcària o dolomia triturada sota diferents condicions de P-pCO2 (atmosfèrica: 1-10-3.5 bar; subcrítica: 10-10 bar, i supercrítica: 150-34 bar), T (25, 40 i 60 ° C) i composició de la solució d'entrada (solucions subsaturades o equilibrades amb guix). Els codis numèrics CrunchFlow i PhreeqC (v.3) s'han utilitzat per realitzar simulacions de transport reactiu dels experiments en columna amb l'objectiu d'avaluar les velocitats de reacció en el sistema i quantificar la variació de la porositat al llarg de la columna. En les condicions de P-pCO2-T estudiades, la precipitació de guix únicament té lloc quan la solució injectada està en equilibri amb guix. A més, el volum de guix precipitat és menor que el volum de carbonat dissolt, originant sempre un augment de porositat. Una disminució en la T afavoreix la dissolució de la calcària independentment de la pCO2 degut a l'augment de la subsaturació. No obstant, la precipitació de guix està afavorida a alta T per condicions atmosfèriques, originant-se l¿efecte contrari per condicions subcrítiques. L'augment de la pCO2 comporta un augment en la dissolució de calcària, fet que és directament atribuït a l'efecte del pH, que és més àcid a major pCO2. La dissolució de calcària comporta un retard en la precipitació de guix (llarg temps d'inducció), al contrari del que passa amb la dissolució de dolomia que promou una ràpida precipitació de guix. A més, a causa de la lenta cinètica de dissolució de la dolomita amb respecte a la de la calcita, el volum de mineral dissolt i l'augment de porositat són majors en els experiments amb calcària sota totes les condicions de pCO2 estudiades. La dissolució de calcària comporta un retard en la precipitació de guix (llarg temps d'inducció), al contrari del que passa amb la dissolució de dolomia que promou una ràpida precipitació de guix. A més, a causa de la lenta cinètica de dissolució de la dolomita amb respecte a la de la calcita, el volum de mineral dissolt i l'augment de porositat són majors en els experiments amb calcària sota totes les condicions de pCO2 estudiades. La dissolució del carbonat es produeix al llarg de tota la columna quan la pCO2 és alta (10 and 34 bar) i, en canvi, es localitza a l'entrada de la columna sota condicions atmosfèriques. Aquesta diferència és deguda a la capacitat tampó de l'àcid carbònic, ja que manté el pH al voltant de 5 i la solució subsaturada pel que fa a la calcita i a la dolomita al llarg de la columna
Jensik, Chandler. „Geologic controls on reservoir quality of the Viola limestone in Soldier Field, Jackson County, Kansas“. Thesis, Kansas State University, 2013. http://hdl.handle.net/2097/16902.
Der volle Inhalt der QuelleDepartment of Geology
Matthew Totten
Jackson County, Kansas is situated on the west side of the Forest City Basin, location of the first oil discovery west of the Mississippi River (KGS), Production in the area is predominately from the Viola Limestone, and a noticeable trend of oil fields has developed where the basin meets the Nemaha Anticline. Exploration has been sluggish, because of the lack of an exploration model. Production rates have varied widely from well to well, even when they are structurally equivalent. The goal of this study was to determine the factors controlling reservoir quality in the Ordovician-aged Viola Limestone so that a better exploration model could be developed. A two township area was studied to examine relationships between subsurface variations and production rates. In the absence of an available core through the Viola, drill cuttings were thin-sectioned and examined under a petrographic microscope to see the finer details of porosity, porosity type and dolomite crystal-size that are not visible under a binocular microscope. Production appears to be controlled by a combination of structural position and dolomite crystal size, which was controlled by secondary diagenesis in the freshwater-marine phreatic mixing zone. The best wells exhibited a Viola Limestone made up of 100% very coarsely crystalline, euhedral dolomite crystals. These wells occur on the east and southeast sides of present day anticlines, which I have interpreted to be paleo-highs that have been tilted to the east-southeast.
McIlwain, Jason Andrew. „Hydrogeologic assessment of a proposed reservoir site, Smith County, Mississippi“. Master's thesis, Mississippi State : Mississippi State University, 2007. http://library.msstate.edu/etd/show.asp?etd=etd-02282008-134137.
Der volle Inhalt der QuellePowell, Kristopher Michael. „Facies Analysis, Sedimentary Petrology, and Reservoir Characterization of the Lower Triassic Sinbad Limestone Member of the Moenkopi Formation, Central Utah: A Synthesis of Surface and Subsurface Data“. BYU ScholarsArchive, 2017. https://scholarsarchive.byu.edu/etd/6672.
Der volle Inhalt der QuelleFlenthrope, Christopher. „Developing an exploration model by investigating the geological controls on reservoir production within the Fort Scott limestone, Ness county, Kansas“. Thesis, Manhattan, Kan. : Kansas State University, 2009. http://hdl.handle.net/2097/1388.
Der volle Inhalt der QuelleOsborn, Caleb R. „Microfacies Analysis, Sedimentary Petrology, and Reservoir Characterization of the Sinbad Limestone Based Upon Surface Exposures in the San Rafael Swell, Utah“. BYU ScholarsArchive, 2007. https://scholarsarchive.byu.edu/etd/1414.
Der volle Inhalt der QuelleVohs, Andrew B. „3D seismic attributes analysis in reservoir characterization: the Morrison NE field & Morrison field, Clark County Kansas“. Thesis, Kansas State University, 2015. http://hdl.handle.net/2097/20600.
Der volle Inhalt der QuelleDepartment of Geology
Abdelmoneam Raef
Seismic reservoir characterization and prospect evaluation based 3D seismic attributes analysis in Kansas has been successful in contributing to the tasks of building static and dynamic reservoir models and in identifying commercial hydrocarbon prospects. In some areas, reservoir heterogeneities introduce challenges, resulting in some wells with poor economics. Analysis of seismic attributes gives insight into hydrocarbon presence, fluid movement (in time lapse mode), porosity, and other factors used in evaluating reservoir potential. This study evaluates a producing lease using seismic attributes analysis of an area covered by a 2010 3D seismic survey in the Morrison Northeast field and Morrison field of Clark County, KS. The target horizon is the Viola Limestone, which continues to produce from seven of twelve wells completed within the survey area. In order to understand reservoir heterogeneities, hydrocarbon entrapment settings and the implications for future development plans, a seismic attributes extraction and analysis, guided with geophysical well-logs, was conducted with emphasis on instantaneous attributes and amplitude anomalies. Investigations into tuning effects were conducted in light of amplitude anomalies to gain insight into what seismic results led to the completion of the twelve wells in the area drilled based on the seismic survey results. Further analysis was conducted to determine if the unsuccessful wells completed could have been avoided. Finally the study attempts to present a set of 3D seismic attributes associated with the successful wells, which will assist in placing new wells in other locations within the two fields, as well as promote a consistent understanding of entrapment controls in this field.
Paipe, Félix António Guimarães. „Masters Thesis Effect of Brine Concentration on Flow Properties in Two Types of Carbonate Rocks Ekofisk Chalk and Iranian Limestone : Study of Chemical Effect of Brine Composition on Flow Properties on Carbonate Rocks“. Thesis, Norges teknisk-naturvitenskapelige universitet, Institutt for petroleumsteknologi og anvendt geofysikk, 2012. http://urn.kb.se/resolve?urn=urn:nbn:no:ntnu:diva-19269.
Der volle Inhalt der QuelleSöderberg, Felix. „Petrophysical and GeophysicalAnalysis of Ordovician Limestone Mounds for the Purpose of Hydrocarbon Reservoir Exploration : Petrofysisk och geofysisk analys av Ordoviciska kalkstensstrukturer för hydrokarbonprospektering“. Thesis, Uppsala universitet, Institutionen för geovetenskaper, 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-259706.
Der volle Inhalt der QuelleKrehel, Austin. „Investigation of time-lapse 4D seismic tuning and spectral responses to CO₂-EOR for enhanced characterization and monitoring of a thin carbonate reservoir“. Thesis, Kansas State University, 2016. http://hdl.handle.net/2097/34628.
Der volle Inhalt der QuelleDepartment of Geology
Abdelmoneam Raef
Advancements, applications, and success of time-lapse (4D) seismic monitoring of carbonate reservoirs is limited by these systems’ inherent heterogeneity and low compressibility relative to siliciclastic systems. To contribute to the advancement of 4D seismic monitoring in carbonates, an investigation of amplitude envelope across frequency sub-bands was conducted on a high-resolution 4D seismic data set acquired in fine temporal intervals between a baseline and eight monitor surveys to track CO₂-EOR from 2003-2005 in the Hall-Gurney Field, Kansas. The shallow (approximately 900 m) Plattsburg ‘C Zone’ target reservoir is an oomoldic limestone within the Lansing-Kansas City (LKC) supergroup – deposited as a sequence of high-frequency, stacked cyclothems. The LKC reservoir fluctuates around thin-bed thickness within the well pattern region and is susceptible to amplitude tuning effects, in which CO₂ replacement of initial reservoir fluid generates a complex tuning phenomena with reduction and brightening of amplitude at reservoir thickness above and below thin-bed thickness, respectively. A thorough analysis of horizon snapping criteria and parameters was conducted to understand the sensitivity of these autonomous operations and produce a robust horizon tracking workflow to extend the Baseline Survey horizon data to subsequent Monitor Surveys. This 4D seismic horizon tracking workflow expedited the horizon tracking process across monitor surveys, while following a quantitative, repeatable approach in tracking the LKC and maintaining geologic integrity despite low signal-to-noise ratio (SNR) data and misties between surveys. Analysis of amplitude envelope data across frequency sub-bands (30-80 Hz) following spectral decomposition identified geometric features of multiple LKC shoal bodies at the reservoir interval. In corroboration with prior geologic interpretation, shoal boundaries, zones of overlap between stacked shoals, thickness variation, and lateral changes in lithofacies were delineated in the Baseline Survey, which enhanced detail of these features’ extent beyond capacity offered from well log data. Lineaments dominated by low-frequency anomalies within regions of adjacent shoals’ boundaries suggest thicker zones of potential shoal overlap. Analysis of frequency band-to-band analysis reveals relative thickness variation. Spectral decomposition of the amplitude envelope was analyzed between the Baseline and Monitor Surveys to identify spectral and tuning changes to monitor CO₂ migration. Ambiguity of CO₂ effects on tuning phenomena was observed in zones of known CO₂ fluid replacement. A series of lineaments highlighted by amplitude brightening from the Baseline to Monitor Surveys is observed, which compete with a more spatially extensive effect of subtle amplitude dimming. These lineaments are suggestive of features below tuning thickness, such as stratigraphic structures of shoals, fractures, and/or thin shoal edges, which are highlighted by an increased apparent thickness and onset of tuning from CO₂. Detailed analysis of these 4D seismic data across frequency sub-bands provide enhanced interpretation of shoal geometry, position, and overlap; identification of lateral changes in lithofacies suggestive of barriers and conduits; insight into relative thickness variation; and the ability of CO₂ tuning ambiguity to highlight zones below tuning thickness and improve reservoir characterization. These results suggest improved efficiency of CO₂ -EOR reservoir surveillance in carbonates, with implications to ensure optimal field planning and flood performance for analogous targets.
Bücher zum Thema "Limestone reservoir"
Zakaria, Lasemi, und Illinois State Geological Survey, Hrsg. Waulsortian mounds and reservoir potential of the Ullin Limestone ("Warsaw") in southern Illinois and adjacent areas in Kentucky. Champaign, Ill: Dept. of Energy and Natural Resources, 1994.
Den vollen Inhalt der Quelle findenBuchteile zum Thema "Limestone reservoir"
Wang, Jie, Yintao Cai, Shao-hua Hu, De-sheng Sun, Xiao-min Zhang und Wen-tao Zhao. „Remaining Oil Prediction of Limestone Reservoir in Qaidam Basin“. In Proceedings of the International Field Exploration and Development Conference 2021, 2798–804. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-2149-0_259.
Der volle Inhalt der QuelleTian, Zhong-yuan, Rui Guo, Zhen-yong Xu und Li-ping Yi. „Quantitative Petrophysical Characterization of Original Super-Permeability Zones of Bioclastic Limestone Reservoir“. In Springer Series in Geomechanics and Geoengineering, 497–513. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-7560-5_45.
Der volle Inhalt der QuelleZhang, Xiao-lin, Ya-hui Wang, Wei Xu und Xiao-long Tang. „Research on Water Flooding Mechanism and Development Strategy of Fractured Reef Limestone Reservoir“. In Proceedings of the International Field Exploration and Development Conference 2021, 1118–28. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-2149-0_101.
Der volle Inhalt der QuelleYu, Yi-chang, Rui Guo, Yi Shen, Bo-heng Shen, Ye Zhang und Feng-feng Li. „Orders of Sequence Boundaries and Its Control on Diagenesis of Bioclastic Limestone Reservoir“. In Proceedings of the International Field Exploration and Development Conference 2021, 4680–94. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-2149-0_436.
Der volle Inhalt der QuelleFu, Xun-xun, Wei-bo Zhao, Xiao-peng Liu, Yani Jia und Yan Liu. „Controlling Effects of Paleogeomorphy on Limestone Gas Reservoir of Marine–continent Transitional Facies“. In Springer Series in Geomechanics and Geoengineering, 1568–75. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-0761-5_147.
Der volle Inhalt der QuelleWang, Gen-jiu, Xiang Xin und Xu Jie. „Quantitative Characterization of Rock Type of Pore Type Bioclastic Limestone Reservoir in Middle East“. In Springer Series in Geomechanics and Geoengineering, 2579–90. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-0761-5_241.
Der volle Inhalt der QuelleLiu, Yu-mei, Yong Li und Wei-jun Wang. „Characterization of Barrier and Interlayer in Thick Bioclastic Limestone Reservoir in a Oilfield, Middle East“. In Proceedings of the International Field Exploration and Development Conference 2021, 275–84. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-2149-0_24.
Der volle Inhalt der QuelleYu, Yi-chang, Rui Guo, Bo-heng Shen, Yi Shen, Ye Zhang und Feng-feng Li. „Dynamic-Static Integrated Classification Evaluation and Distribution Based on Genetic Control of Bioclastic Limestone Reservoir“. In Proceedings of the International Field Exploration and Development Conference 2021, 4665–79. Singapore: Springer Nature Singapore, 2022. http://dx.doi.org/10.1007/978-981-19-2149-0_435.
Der volle Inhalt der QuelleZhao, Wei-bo, Xun-xun Fu, Kang-le Wang, Ying Wu, Guo-Dong Dong und Xiao-hui Zhao. „Geological Characteristics Analysis of the Taiyuan Limestone Gas Reservoir in Zizhou-Qingjian Area, Ordos Basin“. In Springer Series in Geomechanics and Geoengineering, 249–58. Singapore: Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-0464-4_21.
Der volle Inhalt der QuelleSu, Weidong, Weishi Zheng, XianPeng Dong, Yang Xu, Wenxue Jiang, Xiaoqing Wang und Yuerong Wu. „The Study on the Well Dormancy Happened in the Majiagou Limestone Reservoir in Sulige Oilfield“. In Springer Series in Geomechanics and Geoengineering, 928–35. Singapore: Springer Nature Singapore, 2024. http://dx.doi.org/10.1007/978-981-97-0256-5_79.
Der volle Inhalt der QuelleKonferenzberichte zum Thema "Limestone reservoir"
Al-Aruri, A. D., und P. R. Sarkar. „Limestone Reservoir Development: A Simulation Approach“. In Middle East Oil Show. Society of Petroleum Engineers, 1987. http://dx.doi.org/10.2118/15703-ms.
Der volle Inhalt der QuelleGalvis-Silva, H., und E. R. Okoroafor. „Evaluating Carbonate Reservoir Rocks for Underground Hydrogen Storage: A Comprehensive Laboratory Approach“. In SPE Annual Technical Conference and Exhibition. SPE, 2024. http://dx.doi.org/10.2118/220971-ms.
Der volle Inhalt der QuelleLi, F. „Diagenetic Evolution of Bioclastic Limestone Reservoirs and its Effect on Reservoir Properties“. In 83rd EAGE Annual Conference & Exhibition. European Association of Geoscientists & Engineers, 2022. http://dx.doi.org/10.3997/2214-4609.202210668.
Der volle Inhalt der QuelleBandy Jr., William F. „Reservoir Characterization of the Trenton Limestone, Illinois Basin“. In 2022 Eastern Section AAPG Meeting: Energy for All. Tulsa, OK, USA: American Association of Petroleum Geologists, 2022. http://dx.doi.org/10.1306/11371bandy2022.
Der volle Inhalt der QuelleAli, Mehar, Chaudhary M. Saqib, Syed M. Iftikhar Rizvi, Nasir Hamim, Ahsan Javed und Syed M. Usman Shah. „The Characterization of Geological Flow Units in Carbonate Reservoirs - Integration of Core, Log & Production Logging Data“. In PAPG/SPE Pakistan Section Annual Technical Symposium and Exhibition. SPE, 2023. http://dx.doi.org/10.2118/217362-ms.
Der volle Inhalt der QuelleGomes, Jorge, Jane Mason und Graham Edmonstone. „Value of DTS in Multi-Stacked Reservoirs to Better Understand Injectivity and Water Flood Effectiveness – A Field Example from the UAE“. In SPE Annual Technical Conference and Exhibition. SPE, 2021. http://dx.doi.org/10.2118/206103-ms.
Der volle Inhalt der QuelleYan, Jun, Mingyue Cui, Anle He, Ning Qi, Weixiang Cui und Xiaohong Wen. „Study on Boundary of Control Models and Mechanisms of Acid Rock Reaction in Carbonate Reservoirs with Different Dolomite Mass Fraction“. In International Petroleum Technology Conference. IPTC, 2021. http://dx.doi.org/10.2523/iptc-21315-ms.
Der volle Inhalt der QuelleVerberne, B. A., A. J. van der Linden, K. El Azouzi, T. K. T. Wolterbeek, R. van Schalm und A. Coorn. „Effects of Rapid Cooling and CO2 Depressurization on the Compressive Strength of Limestone“. In 57th U.S. Rock Mechanics/Geomechanics Symposium. ARMA, 2023. http://dx.doi.org/10.56952/arma-2023-0609.
Der volle Inhalt der QuelleShchipanov, A. A., A. S. Nekrasov, O. Fonta und D. V. Potekhin. „Modeling of Fracturing of Limestone Petroleum Reservoir Using Fraca Technology“. In 2nd EAGE St Petersburg International Conference and Exhibition on Geosciences. European Association of Geoscientists & Engineers, 2006. http://dx.doi.org/10.3997/2214-4609-pdb.20.p202.
Der volle Inhalt der QuelleYokoyama, Y., und E. Arima. „Pilot Development of Tight Limestone Reservoir in the Khafji Field“. In SPE Asia-Pacific Conference. Society of Petroleum Engineers, 1989. http://dx.doi.org/10.2118/19488-ms.
Der volle Inhalt der QuelleBerichte der Organisationen zum Thema "Limestone reservoir"
Hammouti, A., S. Larmagnat, C. Rivard und D. Pham Van Bang. Use of CT-scan images to build geomaterial 3D pore network representation in preparation for numerical simulations of fluid flow and heat transfer, Quebec. Natural Resources Canada/CMSS/Information Management, 2023. http://dx.doi.org/10.4095/331502.
Der volle Inhalt der QuelleCarter, T. R., C E Logan und H. A. J. Russell. Three-dimensional model of dolomitization patterns in the Salina Group A-1 Carbonate and A-2 Carbonate units, Sombra Township, Lambton County, southern Ontario. Natural Resources Canada/CMSS/Information Management, 2024. http://dx.doi.org/10.4095/332363.
Der volle Inhalt der QuelleSun, S., F. R. Brunton, T. R. Carter, J. R. Clarke, H. A J Russell, K. Yeung, A. Cachunjua und J. Jin. Porosity and permeability variations in the Silurian Lockport Group and A-1 carbonate unit, southwestern Ontario. Natural Resources Canada/CMSS/Information Management, 2023. http://dx.doi.org/10.4095/331902.
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