has been cited by the following article(s):
[1]
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Assessment of Cementitious Composites for High-Temperature Geothermal Wells
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Materials,
2024 |
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[2]
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Cementitious Composites for Supercritical Geothermal Well Applications
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International …,
2023 |
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[3]
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Self-re-adhering alkali-activated cement composite and its ability to mitigate corrosion of carbon steel in 300° C hydrothermal environment
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2021 |
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[4]
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Structural integrity of liner cement in oil & gas wells: Parametric study, sensitivity analysis, and risk assessment
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2021 |
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[5]
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Advanced Insulating Lightweight Thermal Shock-Resistant Cement (TILTSRC) Suitable to withstand frequent thermal cycling
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Conference: Advanced Insulating Lightweight Thermal Shock-Resistant Cement (TILTSRC),
2020 |
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[6]
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Self-healing, re-adhering, and carbon-steel corrosion mitigating properties of fly ash-containing calcium aluminum phosphate cement composite at 300° C …
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2019 |
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[7]
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Development of an Advanced Finite Element Model and Parametric Study to Evaluate Cement Sheath Barrier
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2019 |
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[8]
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Self-Healing, Re-adhering, and Corrosion-Mitigating Inorganic Cement Composites for Geothermal Wells at 270-300C
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2019 |
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[9]
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Self-Healing, Re-adhering, and Corrosion-Mitigating Inorganic Cement Composites for Geothermal Wells at 270°-300° C
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2019 |
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[10]
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Cements for High-Temperature Geothermal Wells
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Cement Based Materials,
2018 |
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[11]
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Durability of Bond between High-Temperature Cement Composites and Carbon Steel
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2017 |
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[1]
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Assessment of Cementitious Composites for High-Temperature Geothermal Wells
Materials,
2024
DOI:10.3390/ma17061320
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[2]
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Structural integrity of liner cement in oil & gas wells: Parametric study, sensitivity analysis, and risk assessment
Engineering Failure Analysis,
2021
DOI:10.1016/j.engfailanal.2020.105203
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[3]
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Self-re-adhering alkali-activated cement composite and its ability to mitigate corrosion of carbon steel in 300 °C hydrothermal environment
Geothermics,
2021
DOI:10.1016/j.geothermics.2021.102068
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[4]
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Self-healing, re-adhering, and carbon-steel corrosion mitigating properties of fly ash-containing calcium aluminum phosphate cement composite at 300 °C hydrothermal temperature
Cement and Concrete Composites,
2019
DOI:10.1016/j.cemconcomp.2019.02.011
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[5]
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Development of an Advanced Finite Element Model and Parametric Study to Evaluate Cement Sheath Barrier
Journal of Energy Resources Technology,
2019
DOI:10.1115/1.4043137
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[6]
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Cement Based Materials
2018
DOI:10.5772/intechopen.74108
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