Works matching DE "OIL well cementing"
Results: 169
Nano-Grafted Polymer Suspension Stabilizers for Oil Well Cement: Polymerization Innovation Dominated by Acrylamide and Breakthroughs in High-Temperature Applications.
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- Processes, 2025, v. 13, n. 2, p. 376, doi. 10.3390/pr13020376
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Machine Learning-Based Model for Prediction of Elastic Modulus of Calcium Hydroxide in Oil Well Cement Under High-Temperature High-Pressure Conditions.
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- Processes, 2025, v. 13, n. 2, p. 344, doi. 10.3390/pr13020344
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Assessing the influence of olive waste on the filtration properties, elasticity, porosity, and strength of oil well cement.
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- Scientific Reports, 2025, v. 15, n. 1, p. 1, doi. 10.1038/s41598-025-89415-0
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Optimization of the Preparation Process of Crosslinked Polyvinyl Alcohol and Its Thermal Stability in Cementing Slurry.
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- Gels (2310-2861), 2025, v. 11, n. 2, p. 98, doi. 10.3390/gels11020098
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Thermo-poroelastic modelling of cement sheath: pore pressure response, thermal effect and thermo-osmotic effect.
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- European Journal of Environmental & Civil Engineering, 2022, v. 26, n. 2, p. 657, doi. 10.1080/19648189.2019.1675094
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Investigating the effect of perlite particles on ilmenite-based oil well cement.
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- Journal of Petroleum Exploration & Production Technology, 2024, v. 14, n. 12, p. 3237, doi. 10.1007/s13202-024-01882-9
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Effect of dusty clinker and alite crystal size on the properties of class G oil well cement slurries.
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- Journal of Petroleum Exploration & Production Technology, 2024, v. 14, n. 12, p. 3261, doi. 10.1007/s13202-024-01881-w
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The effect of polypropylene fiber on the curing time of class G oil well cement and its mechanical, petrophysical, and elastic properties.
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- Journal of Petroleum Exploration & Production Technology, 2023, v. 13, n. 4, p. 1181, doi. 10.1007/s13202-022-01601-2
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Experimental investigation of the effects of temperature on the morphological characteristics of geopolymer binders.
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- Journal of Petroleum Exploration & Production Technology, 2022, v. 12, n. 12, p. 3303, doi. 10.1007/s13202-022-01519-9
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Experimental Study and Modeling of the Fracture Behavior, Mechanical Properties, and Bonding Strength of Oil Well Cement.
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- Sustainability (2071-1050), 2023, v. 15, n. 12, p. 9566, doi. 10.3390/su15129566
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Synergistic Effect of Latex Powder and Rubber on the Properties of Oil Well Cement-Based Composites.
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- Advances in Materials Science & Engineering, 2018, p. 1, doi. 10.1155/2018/4843816
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Effect of Epoxy Resin Emulsion on the Mechanical Properties of Oil Well Cement-Based Composites.
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- Advances in Civil Engineering, 2020, p. 1, doi. 10.1155/2020/5344866
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High‐pressure and ‐temperature spinning capillary cell for in situ synchrotron X‐ray powder diffraction.
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- Journal of Synchrotron Radiation, 2019, v. 26, n. 4, p. 1238, doi. 10.1107/S1600577519005150
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Improving mechanical properties of oil well cement using polypropylene fibers and evaluating a new laboratory method for measuring the casing cement bonding strength.
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- Rudarsko-Geolosko-Naftni Zbornik, 2022, v. 37, n. 5, p. 23, doi. 10.17794/rgn.2022.5.3
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PATENT ENABLEMENT AFTER AMGEN V. SANOFI.
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- Berkeley Technology Law Journal, 2024, v. 39, n. 4, p. 1285, doi. 10.15779/Z386H4CS2H
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Phase Evolution of Oil Well Cements with Nano-Additive at Elevated Temperature/Pressure.
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- ACI Materials Journal, 2016, v. 113, n. 5, p. 571, doi. 10.14359/51689104
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Analytical and Numerical Study of Casing Collapse in Iranian Oil Field.
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- Geotechnical & Geological Engineering, 2018, v. 36, n. 3, p. 1723, doi. 10.1007/s10706-017-0428-0
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Well Casing Deformation under Blast Loading.
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- Journal of Mining Science, 2003, v. 39, n. 2, p. 143, doi. 10.1023/B:JOMI.0000008459.48135.82
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Thickening progression mechanism of silica fume e oil well cement composite system at high temperatures.
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- Petroleum Science (KeAi Communications Co.), 2024, v. 21, n. 4, p. 2793, doi. 10.1016/j.petsci.2023.12.025
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Combined use of fly ash and silica to prevent the long-term strength retrogression of oil well cement set and cured at HPHT conditions.
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- Petroleum Science (KeAi Communications Co.), 2024, v. 21, n. 2, p. 1122, doi. 10.1016/j.petsci.2023.09.010
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核壳型丁苯胶乳对水泥基复合材料力学性能的影响及其作用机制.
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- Acta Materiae Compositae Sinica, 2019, v. 36, n. 2, p. 506, doi. 10.13801/j.cnki.fhclxb.20180403.001
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Research Progress on the Application of Thermite.
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- Chinese Journal of Explosives & Propellants, 2024, v. 47, n. 7, p. 575, doi. 10.14077/j.issn.1007-7812.2023162000
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受废弃油井影响的回采工作面风险评价与防治措施研究.
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- Coal Science & Technology (0253-2336), 2020, v. 48, n. 6, p. 108, doi. 10.13199/j.cnki.cst.2020.06.013
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APLICATION OF LOCAL CEMENT FOR CEMENTING OIL WELLS IN THE SOUTH EASTERN REGION OF THE PANNONIAN BASIN.
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- Archives for Technical Sciences / Arhiv za Tehnicke Nauke, 2013, v. 8, n. 1, p. 35, doi. 10.7251/afts.2013.0508.035B
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Can Antique Mortars Be Good Oil Well Cements.
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- Petroleum - Gas University of Ploiesti Bulletin, Technical Series, 2008, v. 60, n. 4, p. 39
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BENEFICIATION OF SOUTH AFRICAN COAL-FLY ASH IN OIL WELL CEMENT OPERATION.
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- Petroleum & Coal, 2017, v. 59, n. 2, p. 187
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LOSS CIRCULATION CURE WHILE DRILLING AND CEMENTIN.
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- Petroleum & Coal, 2015, v. 57, n. 3, p. 241
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MITIGATION AGAINST WEIGHT AND COMPACTION STRENGTH LOSSES DURING CARBONATION OF OIL WELL CEMENT.
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- Petroleum & Coal, 2015, v. 57, n. 2, p. 130
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Amphoteric ionic polymer large temperature difference retarder for long sealing section cementing low‐density cement slurry: Preparation, application, and working mechanism.
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- Journal of Applied Polymer Science, 2024, v. 141, n. 38, p. 1, doi. 10.1002/app.55977
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Effects of carboxylated styrene‐butadiene latex nanoparticles on channeling leakage and pore structure of oil well cement.
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- Journal of Applied Polymer Science, 2024, v. 141, n. 18, p. 1, doi. 10.1002/app.55330
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High‐temperature resistant copolymer oil well cement retarder: Synthesis, assessment of performance, and mechanism of retardation.
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- Journal of Applied Polymer Science, 2024, v. 141, n. 18, p. 1, doi. 10.1002/app.55316
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Preparation, characterization, and retarding mechanism of high temperature resistant amphoteric ion polymer oil well cement retarder Poly‐AAMD for HTHP application.
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- Journal of Applied Polymer Science, 2024, v. 141, n. 1, p. 1, doi. 10.1002/app.54760
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Synthesis and performance application of self‐crosslinking water‐borne epoxy resin for cementing.
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- Journal of Applied Polymer Science, 2021, v. 138, n. 45, p. 1, doi. 10.1002/app.51351
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Preparation and performance evaluation of hydrophobically associating polymer anti‐water channeling agent for oil well cement.
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- Journal of Applied Polymer Science, 2021, v. 138, n. 24, p. 1, doi. 10.1002/app.50564
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CO<sub>2</sub> 盐水层埋存条件下Mg<sup>2+</sup> 对油井水泥石 腐蚀的影响.
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- Journal of China University of Petroleum, 2020, v. 44, n. 2, p. 71, doi. 10.3969/j.issn.1673-5005.2020.02.009
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RESTORE TEXAS LAND: A PROPOSAL TO UTILIZE EMISSION REDUCTION CREDITS TO FUND THE RAILROAD COMMISSION OF TEXAS' WELL PLUGGING INITIATIVE.
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- St. Mary's Law Journal, 2024, v. 55, n. 2, p. 575
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Modeling the Effect of Curing Temperature and Pressure on Cement Hydration Kinetics.
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- ACI Materials Journal, 2013, v. 110, n. 2, p. 137, doi. 10.14359/51685528
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Preparation and characterization of a novel amphoteric polymer for oil well cementing with superior performances.
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- Polymers & Polymer Composites, 2021, v. 29, n. 1, p. 29, doi. 10.1177/0967391119898018
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Effect of pH of Synthetic Solution on the Performance of the Fluid Loss Control Additive Used in Oil Well Cement.
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- Chemistry & Technology of Fuels & Oils, 2024, v. 60, n. 4, p. 938, doi. 10.1007/s10553-024-01756-0
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Characteristic of AMPS-Based Self-Healing Material and the Effect on the Properties of Oil Well Cement Slurry.
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- Chemistry & Technology of Fuels & Oils, 2024, v. 60, n. 2, p. 366, doi. 10.1007/s10553-024-01690-1
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A Composite Cementing Material with High-Temperature and High-Pressure Resistance and Low Elasticity for in-Situ Heating of Oil Shale.
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- Chemistry & Technology of Fuels & Oils, 2016, v. 52, n. 1, p. 103, doi. 10.1007/s10553-016-0679-0
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Facile Preparation of Poly (citric acid-co-ethylene glycol) and Poly (Tartaric acid-co-Glycerol) as a Retarder for Oil Well Cement.
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- Journal of Basrah Researches (Sciences), 2023, v. 49, n. 2, p. 8, doi. 10.56714/bjrs.49.2.2
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Preparation and characterization of core-shell oil absorption materials stabilized by modified fumed silica.
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- Journal of Polymer Engineering, 2017, v. 37, n. 4, p. 391, doi. 10.1515/polyeng-2016-0075
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Synthesis and performance of a self crosslinkable acrylate copolymer with high compatibility for an oil well cement modifier.
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- Journal of Polymer Engineering, 2014, v. 34, n. 5, p. 405, doi. 10.1515/polyeng-2013-0303
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Preparation of Nano-SiO<sub>2</sub>/Carbon Fiber-Reinforced Concrete and Its Influence on the Performance of Oil Well Cement.
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- International Journal of Polymer Science, 2019, p. 1, doi. 10.1155/2019/2783018
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深层-超深层异常高压油藏工艺技术对策.
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- Petroleum Geology & Recovery Efficiency, 2020, v. 27, n. 5, p. 126, doi. 10.13673/j.cnki.cn37-1359/te.2020.05.015
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Preparation and application of microcapsule containing sodium potassium tartrate for self-healing of cement.
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- Energy Sources Part A: Recovery, Utilization & Environmental Effects, 2023, v. 45, n. 2, p. 4255, doi. 10.1080/15567036.2019.1669740
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Effects of C<sub>3</sub>A and C<sub>3</sub>S with gypsums on the hydration of oil well cement under hydrothermal curing.
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- Journal of Thermal Analysis & Calorimetry, 2024, v. 149, n. 14, p. 7255, doi. 10.1007/s10973-024-13240-2
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Influence of milling of a reused FCC catalytic waste on the early hydration stages of a special class cement.
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- Journal of Thermal Analysis & Calorimetry, 2022, v. 147, n. 4, p. 2923, doi. 10.1007/s10973-021-10688-4
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Behavior of oil well cement slurry systems aged in CO<sub>2</sub>-saturated water under high pressure and temperature.
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- Journal of Thermal Analysis & Calorimetry, 2022, v. 147, n. 1, p. 95, doi. 10.1007/s10973-020-10266-0
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