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Artykuły w czasopismach na temat "Downhole water loop"

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Jin, Lu, and Andrew K. Wojtanowicz. "Performance Analysis of Wells With Downhole Water Loop Installation for Water Coning Control." Journal of Canadian Petroleum Technology 49, no. 06 (2010): 38–45. http://dx.doi.org/10.2118/138402-pa.

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Anietie, N. Okon, Appah Dulu, and U. Akpabio Julius. "Water Coning Prediction Review and Control: Developing an Integrated Approach." Journal of Scientific Research & Reports 14, no. 4 (2017): 1–24. https://doi.org/10.9734/JSRR/2017/33291.

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In petroleum industry, oil production strategy to circumvent water coning in reservoirs with strong water drive is quit challenging. To ameliorate this oil production related problem, several water coning prediction models and control approaches have been developed by researchers. The prediction approaches include analytical, empirical and numerical approach. The analytical and empirical prediction approaches are qualitative water coning prediction approach with limited field scale application. However, these approaches model predictions can gain field application if upscale. Numerical approac
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Jin, Lu, Andrew Krzysztof Wojtanowicz, Gbolahan Afonja, and Wenjing Li. "Scaling Analysis of Wells With Downhole Water Loop Completion for Bottomwater Control." Journal of Canadian Petroleum Technology 49, no. 11 (2010): 81–90. http://dx.doi.org/10.2118/142005-pa.

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Zeynolabedini, Mohammadsajjad, and Mehdi Assareh. "An efficient design for a downhole water loop to control water production from oil wells." International Journal of Oil, Gas and Coal Technology 28, no. 3 (2021): 333. http://dx.doi.org/10.1504/ijogct.2021.118652.

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Zeynolabedini, Mohammadsajjad, and Mehdi Assareh. "An efficient design for a downhole water loop to control water production from oil wells." International Journal of Oil, Gas and Coal Technology 28, no. 3 (2021): 333. http://dx.doi.org/10.1504/ijogct.2021.10041106.

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Zhang, Zhiwen, Xiaosen Li, Zhaoyang Chen, Yu Zhang, and Hao Peng. "Investigation of Gas-Water-Sand Fluid Resistivity Property as Potential Application for Marine Gas Hydrate Production." Entropy 24, no. 5 (2022): 624. http://dx.doi.org/10.3390/e24050624.

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The phase fraction measurement of gas-water-sand fluid in downhole is an important premise for safe and stable exploitation of natural gas hydrates, but the existing phase fraction measurement device for oil and natural gas exploitation can’t be directly applied to hydrate exploitation. In this work, the electrical resistivity properties of different gas-water-sand fluid were experimentally investigated using the multiphase flow loop and static solution experiments. The effect of gas phase fraction and gas bubbles distribution, sand fraction and sand particle size on the relative resistivity o
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Dilib, F. A. A., M. D. D. Jackson, A. Mojaddam Zadeh, et al. "Closed-Loop Feedback Control in Intelligent Wells: Application to a Heterogeneous, Thin Oil-Rim Reservoir in the North Sea." SPE Reservoir Evaluation & Engineering 18, no. 01 (2015): 69–83. http://dx.doi.org/10.2118/159550-pa.

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Summary Important challenges remain in the development of optimized control strategies for intelligent wells, particularly with respect to incorporating the impact of reservoir uncertainty. Most optimization methods are model-based and are effective only if the model or ensemble of models used in the optimization captures all possible reservoir behaviors at the individual-well and -completion level. This is rarely the case. Moreover, reservoir models are rarely predictive at the spatial and temporal scales required to identify control actions. We evaluate the benefit of the use of closed-loop
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Yu, Hao, Xinli Lu, Wei Zhang, and Jiali Liu. "Thermodynamic Analysis of an Increasing-Pressure Endothermic Power Cycle Integrated with Closed-Loop Geothermal Energy Extraction." Energies 17, no. 7 (2024): 1756. http://dx.doi.org/10.3390/en17071756.

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The thermodynamic analysis of an increasing-pressure endothermic power cycle (IPEPC) integrated with closed-loop geothermal energy extraction (CLGEE) in a geothermal well at a depth from 2 km to 5 km has been carried out in this study. Using CLGEE can avoid some typical problems associated with traditional EGS technology, such as water contamination and seismic-induced risk. Simultaneous optimization has been conducted for the structural parameters of the downhole heat exchanger (DHE), the CO2 mixture working fluid type, and the IPEPC operating parameters. The CO2-R32 mixture has been selected
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Pallanich, Jennifer. "Unsung Hero: Artificial Lift Boosts Production Without Breaking the Bank." Journal of Petroleum Technology 76, no. 10 (2024): 30–40. http://dx.doi.org/10.2118/1024-0030-jpt.

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_ In the quest to cost-effectively boost production, operators are experimenting with artificial lift methods and how digital tech can boost its performance. Artificial lift experts are increasingly adding artificial intelligence (AI), machine learning (ML), and autonomous operations into their workflows because these data-driven technologies are demonstrating they can generate uplift when they are thoughtfully developed and deployed. Operators are also looking at the performance of high-pressure gas lift (HPGL) wells compared to wells using electrical submersible pumps (ESPs) for artificial l
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Grishchenko, V. A., S. S. Pozhitkova, V. Sh Mukhametshin, and R. F. Yakupov. "Water cut forecast after downhole pumping equipment optimization based on displacement characteristics." SOCAR Proceedings, SI2 (December 30, 2021): 143–51. http://dx.doi.org/10.5510/ogp2021si200582.

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The article deals with the issue of water cut predicting when downhole pumping equipment optimizing. In practice, an expert assessment of this parameter is used as a rule, which does not take into account the degree of planned optimization relative to the current mode. The paper proposes a methodology allowing taking into account the dynamics of planned fluid withdrawals in predicting water cut based on displacement characteristics. To solve the described problem, four characteristics were selected with a certain type of statistical dependence, where, in one part of the equation, fluid withdra
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Części książek na temat "Downhole water loop"

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Pickover, Clifford A. "Mirror Worlds." In Surfing Through Hyperspace Understanding Higher Universes in Six Easy Lessons. Oxford University PressNew York, NY, 1999. http://dx.doi.org/10.1093/oso/9780195130065.003.0005.

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Abstract You look out the window. The rain has stopped. “Let’ s continue our discussion in the fresh air,” you say to Sally. “I’ m in the mood for river sights.” You carry a bag with props that will be useful later in your lessons. Third Street winds downhill-past Leo’ s Pizza and Pasta, past life-size holograms of Clinton, Reagan, and Carter-following the kinks and bends of the Potomac River. The buildings are set well back from the streets and it isn’ t until you get nearer to the water that you see a considerable number of people. Hundreds. The nearby avenues are themselves very busy with e
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Taillant, Jorge Daniel. "Amazing Glacier Stuff." In Glaciers. Oxford University Press, 2015. http://dx.doi.org/10.1093/oso/9780199367252.003.0013.

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This chapter is about what glaciers—and particularly what glacial and periglacial melt—mean to people and communities around the world. We often don’t realize that people interact daily with glaciers. Some go to visit and hike on glaciers or to photograph them for their magnificent beauty. Some ski on glaciers. Others extract water from glaciers for personal and industrial use. Others fear glaciers for their potent fury and destruction. People and communities are adapting to climate change and its impacts on glaciers, sometimes without even knowing it. Others are very aware of glacier vulnerab
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Streszczenia konferencji na temat "Downhole water loop"

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Halvorsen, Anne Marie Koren, Jan Ivar Skar, and Kristin Reiersølmoen. "Qualification of Scale and Corrosion Inhibitor for a Subsea HPHT Field with a MEG-loop." In CORROSION 2012. NACE International, 2012. https://doi.org/10.5006/c2012-01517.

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Abstract Vega is a gas condensate field located on the Norwegian continental shelf with tie-back to Gjøa. Vega consists of three subsea fields connected via a 55 km carbon steel multiphase pipeline that transports the fluids to the Gjøa platform. Mono-ethylene-glycol (MEG) is used to prevent hydrates in the pipeline. The gas, condensate and MEG/water phases are separated at Gjøa and the MEG is regenerated by a vacuum reclaimer and the lean MEG is injected subsea. Carbon dioxide (CO2) corrosion of the carbon steel pipeline will be controlled by a combination of partly pH stabilization and corro
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Chen, Tao, Qiwei Wang, Mohammed Bataweel, and Salem Balharth. "Understanding of the Co-deposition of Calcium Sulphate and Calcium Carbonate Deposition in ESP." In CORROSION 2021. AMPP, 2021. https://doi.org/10.5006/c2021-16296.

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Abstract Electric Submersible Pump (ESP) in oilfield is prone to scale deposition, largely due to temperature increases by motor heating, and turbulent flow and high shear inside of pump. In this work, the formation of calcium sulphate and calcium carbonate were studied under a range of conditions that could possibly be encountered in ESPs. The produced water chemistry changes from 100% formation water to mixed formation water and injected seawater over time. The scaling tendency and potential mass deposition are simulated using a thermodynamic prediction model. Dynamic scale loop tests were c
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Chkolny, N., J. Burns, D. Maley, and C. Wiggins. "Investigating the Interaction of Brine Solutions and Diluted Inhibited HCl Acid on Coiled Tubing Steel Corrosion." In CORROSION 2020. NACE International, 2020. https://doi.org/10.5006/c2020-14596.

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Abstract Coiled tubing is defined as a continuous tubular product that is used for oil and gas well interventions. Its popularity continues to grow due to its versatility and speed of operation. Though superior grades of metal alloys exist in terms of corrosion resistance, coiled tubing operations primarily employ high-strength low-alloy steels because of their availability, lower cost and weldability. The low-alloy steel can also be thermo-mechanically controlled to elicit specific material properties, such as yield strength and ductility. These coiled tubing steels are often introduced into
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Fischer, K. P., M. M. Salama, and J. Murali. "Optimal Selection of Materials for Seawater Injection Systems Testing in Deoxygenated Seawater." In CORROSION 1996. NACE International, 1996. https://doi.org/10.5006/c1996-96593.

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Abstract Seawater injection systems represent a tough working environment for oilfield downhole tubing. To ensure adequate corrosion control of the equipment, system operation conditions and water quality need to be optimised. For downstream from the deareator the oxygen level, flow velocity and residual chlorine are critical parameters. In the present paper the effect of these factors has been studied in test loop for two C-steels. The testing was performed at oxygen levels from 20 to 200 ppb oxygen and with a flow velocity up to 15 m/s. The corrosion rate of C-steels for a system without res
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Crolet, Jean-Louis, and Michel R. Bonis. "Why So Low Free Acetic Acid Thresholds in Sweet Corrosion at Low PCO2?" In CORROSION 2005. NACE International, 2005. https://doi.org/10.5006/c2005-05272.

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Abstract In condensed water, the free acetic acid content (HAc) is physically dissolved from the gas (or oil) phase, and this induces an overacidification of the CO2 solution. When HAc becomes the dominant acid, this increases the solubility of corrosion products, i.e. the iron content Fesat at the saturation of corrosion products in FeCO3. The empirical field thresholds of 1 and 0.1 mM HAc actually correspond to the same acidifying power as 2 and 0.2 bar of pure CO2, i.e. nearly the API limits of 1958… which nobody has ever considered as low ! In reservoir water, the free HAc is chemically pr
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Jin, Lu, and Andrew Krzysztof Wojtanowicz. "Analytical Assessment of Water-free Production in Oil Wells with Downhole Water Loop for Coning Control." In SPE Production and Operations Symposium. Society of Petroleum Engineers, 2011. http://dx.doi.org/10.2118/141470-ms.

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Al-Obaidi, Dahlia A., David A. Wood, Watheq J. Al-Mudhafar, Andrew A. Wojtanowicz, and Ahmed Merzoug. "Development of a Multi-Completion Gas and Downhole Water Sink-Assisted Gravity Drainage (MC-DWS-AGD) to Improve Oil Recovery and Reduce Water Cut in Reservoirs with Strong Water Aquifers." In SPE Oklahoma City Oil and Gas Symposium. SPE, 2023. http://dx.doi.org/10.2118/213071-ms.

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Abstract Gas and downhole water sink assisted gravity drainage (GDWS-AGD) is a promising gas-based enhanced oil recovery (EOR) process applicable for reservoirs associated with infinite aquifers. However, it can be costly to implement because it typically involves the drilling of multiple vertical gas-injection wells. The drilling and well-completion costs can be substantially reduced by using additional completions for gas injection in the oil production wells through the annulus positioned at the top of the reservoir. Multi-completion-GDWS-AGD (MC-GDWS-AGD) can be configured to include separ
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Schmid, J., B. Aiken, F. El Yaakobi, and L. Colmenares. "Mitigating Downhole Calcite and Barite Deposition in the Montney: A Successful Scale Squeeze Program." In SPE Canadian Energy Technology Conference and Exhibition. SPE, 2024. http://dx.doi.org/10.2118/218056-ms.

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Abstract This technical paper addresses the challenges faced by Montney producers in northwestern Alberta and northeastern British Columbia due to downhole calcite and barite deposition. These scales lead to various issues such as production declines, pressure increases, decreased pump efficiency, and equipment failures. Additionally, the presence of Naturally Occurring Radioactive Materials (NORMs) associated with barite poses health concerns and disposal expenses. Continuously applied scale inhibitors are unable to reach the pay zone in the horizontal section, which has multiple fractures in
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Greci, Stephen, Michael Fripp, Ryan McChesney, and Ibrahim El Mallawany. "Novel Density-Based Autonomous Inflow Control Device Using Artificial Gravity." In SPE Annual Technical Conference and Exhibition. SPE, 2021. http://dx.doi.org/10.2118/205914-ms.

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Abstract A new class of Autonomous Inflow Control Devices, AICDs, has been developed which balances production flow and restricts unwanted production fluids, even when there is no viscosity difference in the produced fluids. This novel AICD senses the density difference between oil and water and uses artificial gravity to amplify the buoyancy forces while eliminating the need for downhole orientation in the completion. AICDs have effectively reduced water production and increased oil recovery since their introduction in the early 2010s. During initial production, AICDs balance the flow across
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Olubode, Michael, Laura Osorio, Hamidreza Karami, Jim McCoy, and Tony Podio. "Experimental Comparison of Two Downhole Separators in Boosting Artificial Lift Performance." In SPE Artificial Lift Conference and Exhibition - Americas. SPE, 2022. http://dx.doi.org/10.2118/209723-ms.

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Abstract Gas evolution and expansion are natural phenomena in petroleum wells. However, gas is detrimental to pumping artificial-lift (AL) systems, causing incomplete pump fillage and reduced pump efficiency. Pumping AL systems may also be involved in high GLR applications for gas well deliquification. It then becomes essential to separate the gas before the pump's intake in these applications to preserve the life of the pump. Various downhole separators with questionable efficiencies are available today. In this study, an automated experimental separation facility is presented and applied to
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