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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | Estimating the drilling fluid density in the mud technology: Application in high temperature and high pressure petroleum wells | Kamari, A. | Nova Science Publishers, Inc, | 2017 |
Coupled simulated annealing.
Crude oil. Drilling fluid. Least square support vector machine. Oil wells. Simulated annealing. Soft computing. Support vector machines. Well drilling. Density prediction. Drilling fluid density. Function of pressure. High pressure and high temperature. High temperature and high pressure. Least square support vector machines. Predictive modeling. Soft computing approaches. Drilling fluids. |
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| 2 | مقاله | Experimental determination of hydrate phase equilibrium curve for an Iranian sour gas condensate sample | Kamari, E. | 2012 |
Phase equilibrium.
Cold climate. Effective parameters. Experimental. Experimental determination. Gas fields. Gas reservoir. Gas well. High pressure. Hydrate formation. Low temperatures. Natural gas reserves. Pressure reduction. Production fluids. Production line. Production strings. Climate change. Gas industry. High pressure effects. Hydration. Natural gas wells. Production. Reservoirs (water) Sour gas. Phase equilibria. |
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| 3 | مقاله | Prediction of sour gas compressibility factor using an intelligent approach | Kamari, A. | 2013 |
Coupled simulated annealing.
Empirical correlation. Sour and natural gas. Z-factor prediction. Empirical correlations. Engineering calculation. Equation of state. Gas compressibility factors. Laboratory experiments. Least square support vector machines. Pressure and temperature. Soft computing approaches. Compressibility. Natural gas. Simulated annealing. Soft computing. Forecasting. |
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| 4 | مقاله | An experimental phase diagram of a gas condensate reservoir | Kamari, E. | 2012 |
Constant mass expansion.
Quality line. Retrograde reservoir. Condensate gas reservoirs. Constant mass. Critical points. Depletion process. Expansion tests. Experimental development. Gas condensate reservoirs. Intermediate components. Reservoir depletion. Reservoir fluid. Retrograde condensation. Revaporization. Gas condensates. Petroleum reservoirs. Phase diagrams. |
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| 5 | مقاله | Non-dominated ranked based genetic algorithm multi-objective well placement optimization | Rostamian, A. | EAGE Publishing BV, | 2019 |
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| 6 | پایان نامه | بالانس یک روتور انعطاف پذیر حین عملکرد Balancing of a Flexible Rotor During Operation | کمری، مرتضی Kamari, Morteza | صنعتی شریف | 1396 | تعادل سازی Balance / محورهای دوار Rotors / روتور انعطاف پذیر Flexible Rotor / بالانس برخط Online Balancing / بالانس فعال Active Balancing / روش چهار مرحله ای Four-Run Method / جرم آزمون Trial Mass |
45-50389
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| 7 | مقاله | Modeling the permeability of heterogeneous oil reservoirs using a robust method | Kamari, A. | Korean Association of Geoscience Societies, | 2016 |
Artificial neural network.
Coupled simulated annealing. Heterogeneous reservoir. Least square support vector machine. Permeability estimation. |
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| 8 | مقاله | The Effect of fracture geometrics on breakthrough time in the immiscible displacement process through strongly oil wet fractured porous media: Experimental investigation | Kamari, E. | 2012 |
enhanced oil recovery.
fracture geometric. glass micro-model. immiscible process. Breakthrough time. Distilled water. Experimental investigations. Flow direction. Fracture geometries. Fracture length. Fractured media. Fractured porous media. Geometrical characteristics. Immiscible displacement. Linear flows. Micromodels. N-decane. Oil recoveries. Oil reserves. Orientation angles. Pore volume. Enhanced recovery. Glass. Paraffins. Petroleum deposits. Fracture. |
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| 9 | مقاله | Immiscible Displacement of a Wetting Fluid by a Non-wetting One at High Capillary Number in a Micro-model Containing a Single Fracture | Kamari, E. | 2012 |
Breakthrough.
Fracture reservoir. Fracture reservoirs. Front. Heterogeneous. Immiscible displacement. Paraffins. Wetting. Fracture. Capillary pressure. Fractured medium. Hydrocarbon reservoir. Immiscibility. Iran. |
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| 10 | مقاله | Micro-model experimental study of fracture geometrical effect on breakthrough time in miscible displacement process | Kamari, E. | 2011 |
Breakthrough time.
Fracture geometrics. Glass micro-model. Miscible displacement. |
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| 11 | مقاله | Improvement of fractional flow model for miscible displacement process: An experimental investigation in single fractured porous medium | Kamari, E. | 2013 |
Breakthrough.
Fracture reservoir. Front. Fracture reservoirs. Front. Heterogeneous. Miscible displacement. Porous materials. Fracture. |
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| 12 | مقاله | Improvement of buckley-leverett and fractional flow models for heterogeneous porous media | Kamari, E. | 2015 |
Breakthrough.
Fracture reservoir. Pore size. Porous materials. Secondary recovery. Fracture reservoirs. Front. Heterogeneous. Immiscible displacement. Water injection. |
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| 13 | مقاله | Application of fast-SAGD in naturally fractured heavy oil reservoirs: A case study | Hemmati Sarapardeh, A. | 2013 |
Heavy oil reservoirs.
Injection pressures. Naturally fractured reservoirs. Numerical reservoir simulations. Operational parameters. Steam injection process. Steam-assisted gravity drainages. Thermal efficiency. Crude oil. Efficiency. Heavy oil production. Horizontal wells. Optimization. Petroleum industry. Petroleum reservoir evaluation. Petroleum reservoirs. Steam. Water injection. Injection (oil wells) |
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| 14 | مقاله | Vibration troubleshooting of a 10 MW reciprocating hydrogen compressor | Navazi, H. M. | 2024 |
Troubleshooting.
Compressibility of gases. Hydrogen. Modal analysis. Reciprocating compressors. Vibration analysis. Compressor models. Condition. Coupling shafts. Experimental measurement. Frequency-domain analysis. Hydrogen compressors. Oil refineries. Phase difference. Vibration. Vibration level. Foundations. |
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| 15 | مقاله | Monitoring the role of polymer and surfactant concentrations on bubble size distribution in colloidal gas aphron based fluids | Pasdar, M. | Elsevier B.V, | 2018 |
Bubble size distribution.
Bubbles stability. Disproportionation. The role of XG/SDBS concentration. Bubbles (in fluids) Diffusion in gases. Diffusion in liquids. Drilling fluids. Gases. Polymers. Size distribution. Surface active agents. Xanthan gum. Bubble size distributions. Colloidal gas aphron. Controlling mechanism. Disproportionations. Distribution curves. Hydrocarbon reservoir. Sodium dodecylbenzene sulfonate. Surfactant concentrations. Bubble columns. Deionized water. Dodecylbenzenesulfonate sodium. Xanthan. Article. Colloid. Concentration (parameters) Controlled study. Experimental study. Gas. Microbubble. Microscopy. Monitoring. Priority journal. Viscosity. |
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| 16 | مقاله | Insight into the behavior of colloidal gas aphron (CGA) fluids at elevated pressures: an experimental study | Pasdar, M. | Elsevier B.V, | 2018 |
Bubble size distribution.
Stability. Bubble columns. Bubbles (in fluids) Convergence of numerical methods. Diffusion. Diffusion in liquids. Hysteresis. Petroleum reservoir engineering. Size distribution. Ambient conditions. Bubble size distributions. Colloidal gas aphrons. Field application. High pressure. High-pressure experiment. Hysteretic behavior. Oil and gas reservoir. Drilling fluids. Colloidal gas aphron. Dodecyl sulfate sodium. Polymer. Surfactant. Unclassified drug. Xanthan. Article. Biotechnology. Compression. Gas. Microscopy. Pressure. Pressure volume curve. Priority journal. |
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| 17 | مقاله | Authors’ reply to a comment on M. pasdar et al article | Pasdar, M. | Elsevier B.V, | 2019 |
Capillary pressure.
Chemical parameters. Fluid flow. Gas diffusion. High pressure microscopy. Hyperbarism. Interbubble gas diffusion. Letter. Microscopy. Offshore oil industry. Priority journal. Surface tension. Tension. |
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| 18 | مقاله | Insight into selection of appropriate formulation for colloidal gas aphron (CGA)-based drilling fluids | Pasdar, M. | China University of Petroleum Beijing, | 2020 |
Bubble size analysis.
Colloidal gas aphrons. Dispersion. Rheology. Stability. |
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| 19 | مقاله | Effect of nanoclay on improved rheology properties of polyacrylamide solutions used in enhanced oil recovery | Cheraghian, G. | Springer Verlag, | 2015 |
Nanoclay.
Polyacrylamide. Drilling fluids. Elasticity. Nanocomposites. Nanoparticles. Nanostructured materials. Oil well drilling. Oil well flooding. Petroleum industry. Petroleum reservoir engineering. Petroleum reservoirs. Polyacrylates. Reservoirs (water) Rheology. Sand consolidation. Viscosity. Well drilling. Well flooding. Clay concentration. Enhanced oil recovery. Nano clays. Polyacrylamide polymers. Polymer viscosity. Rheological property. Solution conditions. Wettability alteration. Enhanced recovery. |
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| 20 | مقاله | Unraveling Legal Complexities: Muslim and non-Muslim Estate Administration Process in Malaysia and Brunei | Nasrul, M. A. D. | 2024 |
Administrative bodies.
Beneficiaries. Inheritance. Legal system. |
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