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hanafizadeh--p
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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | Thermoeconomic approach for optimal design of gas turbine heat recovery steam generator | Hanafizadeh, P. | China International Conference Center for Science and Technology, | 2013 |
Heat recovery steam generator.
Single and dual pressure. Costs. Descaling. Environmental impact. Gas turbines. Optimization. Steam generators. Thermodynamic properties. Waste heat. Combined heat and power. Dual-pressure. Heat recovery steam generators. Optimal operating conditions. Optimization modeling. Thermo-economic model. Thermo-economic modelling. Thermoeconomic analysis. Cost benefit analysis. |
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| 2 | مقاله | Visual technique for detection of gas-liquid two-phase flow regime in the airlift pump | Hanafizadeh, P. | 2011 |
Airlift pump.
Flow regime. Two-phase flow. Vertical pipe. Air-water two-phase flow. Experimental data. Gas liquids. Gas phase velocity. Gas-liquid two-phase flow. High reliability. Image analysis techniques. Image processing technique. Main parameters. Oil industries. Oil recoveries. Slug flow. Visual techniques. Aspect ratio. Flow of water. Image processing. Imaging systems. Liquids. Oil wells. Petroleum engineering. Pipe. Pump. |
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| 3 | مقاله | Innovative semi-analytical methodology to predict automobile body temperature distribution in the curing ovens | Hanafizadeh, P. | 2012 |
Car bodies.
Coating process. Curing ovens. Curing process. Experimental data. Experimental investigations. Experimental procedure. Hardening process. Heat transfer mechanism. Heating zone. Mass production. Model prediction. Nonlinear differential equation. Paint coatings. Painting industry. Performance analysis. Semi-analytical. Thermal behaviors. Transient temperature. Curing. Diamond cutting tools. Differential equations. Enameling. Forecasting. Ovens. Physiology. Railroad cars. Stoves. Paint. |
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| 4 | مقاله | Effect of step geometry on the performance of the airlift pump | Hanafizadeh, P. | 2011 |
Air-lift pumps.
Bubble diameter. Experimental data. Higher efficiency. Inlet gas. Numerical results. Pipe diameter. Step geometry. Flow of gases. Flow rate. Industrial applications. Inlet flow. Piping systems. Pumps. |
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| 5 | مقاله | Exergy analysis of Airlift Systems: Experimental approach | Hanafizadeh, P. | 2011 |
Airlift system.
ALS. Availability. Entropy generation. Exergy analysis. Multiphase flow. Air-lift systems. Analytical model. Comprehensive method. Effective variables. Experimental approaches. Experimental data. Flowthrough. Gas liquid flows. Test rigs. Entropy. Industrial applications. Mathematical models. Two phase flow. Exergy. |
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| 6 | مقاله | Experimental investigation of characteristic curve for gas-lift pump | Hanafizadeh, P. | 2014 |
Characteristic curve.
Flow regime. Gas lift pump. Gas-liquid flow. Submergence ratio. Two phase flow. Compressed air. Liquids. Pressure vessels. Pumping plants. Flow regimes. Gas lift pumps. Gas liquid flows. Submergence ratios. Pumps. Compression. Experimental study. Gas flow. Gas well. operations technology. performance assessment. pumping. |
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| 7 | مقاله | Effect of bubble size and angle of tapering upriser pipe on the performance of airlift pumps | Hanafizadeh, P. | 2010 |
Bubble diameter.
Submergence ratio. Tapering upriser pipe. Two-phase lifting pump. Bubble distributions. Bubble size. Design parameters. Experimental data. Gas flowrate. Gasphase. Inlet gas. Liquid Phase. Mass flow rate. Numerical results. Operating parameters. Second group. Total length. Inlet flow. Liquids. Numerical analysis. Pipe. Pumps. Airlift pump. Analytical parameters. Device. Flow rate. Phase partitioning. Pressure. Priority journal. |
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| 8 | مقاله | Numerical simulation of two-phase flow in airlift pumps using the Physical Influence Scheme | Hanafizadeh, P. | 2010 |
Airlift pump.
Finite-volume method. Physical influence scheme. PIS. Two-fluid approach. Two-phase flow. |
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| 9 | مقاله | Numerical simulation of two-phase flow in airlift pumps using the Physical Influence Scheme | Hanafizadeh, P. | 2010 |
Airlift pump.
Physical influence scheme. PIS. Two-fluid approach. Two-phase flow. Continuity equations. Finite volume solution. Gas liquid flows. Momentum equation. New approaches. New strategy. Numerical simulation. Numerical solution. SIMPLE method. Two-fluid. Vertical pipes. Computer simulation. Finite volume method. Numerical analysis. Two phase flow. Pumps. |
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| 10 | مقاله | Effect of bubble size and angle of tapered upriser pipe on the effectiveness of a two phase lifting pump | Hanafizadeh, P. | 2009 |
Submergence ratio.
Two phase lifting pump. Bubble diameter. Bubble distributions. Bubble size. Design parameters. Experimental data. Gas flowrate. Gasphase. Inlet gas. Liquid Phase. Mass flow rate. Numerical results. Operating parameters. Second group. Tapered upriser pipe. Total length. Two phase. Inlet flow. Liquids. Numerical analysis. Pipe. Pumps. |
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| 11 | مقاله | Experimental investigation of air-water, two-phase flow regimes in vertical mini pipe | Hanafizadeh, P. | 2011 |
Two-phase flow.
Visualization. Air-water. Air-water flow. Experimental investigations. Flow pattern map. Flow regimes. High speed video recorder. In-pipe. Liquid and gas phasis. Mini pipes. Superficial velocity. Water flow rate. Air. Flow of water. Hydraulics. Pipe. Flow visualization. Video recording. Flow patterns. Airflow. Diameter. Experimental study. Flow measurement. Pipe flow. Pipeline. Videography. Water flow. Air-water interaction. Flow modeling. Hydrological regime. Literature review. Research work. |
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| 12 | مقاله | Semi analytical prediction of automobile body temperature distribution in the top coat paint oven | Hanafizadeh, P. | 2009 |
Automobile.
Semi-numerical approach. Transient prediction. Body temperature. Car bodies. Coating process. Curing process. Developed model. Experimental data. Experimental procedure. Hardening process. Mass production. Model prediction. New product. Numerical approaches. Numerical simulation. Performance analysis. Production parameters. Reasonable accuracy. Semi-analytical. Thermal behaviors. Top coating. Top-coats. Transient temperature. Automobile parts and equipment. Automotive industry. Computer simulation. Curing. Differential equations. Forecasting. Hardening. Heat exchangers. Heat transfer. Laws and legislation. Ovens. Paint. Railroad cars. Stoves. Temperature distribution. Thermoanalysis. Automobile bodies. |
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| 13 | مقاله | Heat recovery of exhaust gas in automotive paint ovens | Hanafizadeh, P. | Aabo Akademi University, | 2010 |
Exhaust gas.
Heat recovery. Paint oven. Environmental impact. Global warming. Internal combustion engines. Optimization. Ovens. Paint. Planning. Research. Thermodynamics. Waste heat. Waste heat utilization. CHP. Design and construction. Economical benefits. Environmental conservation. Feasibility studies. Higher efficiency. Investment returns. Renewable sources. Investments. |
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| 14 | مقاله | Secrecy capacity scaling in large cooperative wireless networks | Mirmohseni, M. | Institute of Electrical and Electronics Engineers Inc, | 2017 |
Cooperative strategies.
Informationtheoretic security. Large wireless networks. Relaying. Scaling laws. Aggregates. Cooperative communication. Relay control systems. Secure communication. Wireless networks. Colluding eavesdroppers. Cooperative strategy. Information-theoretic security. Secrecy capacity. Network security. |
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| 15 | مقاله | Fast estimation of connectivity in fractured reservoirs using percolation theory | Masihi, M. | Society of Petroleum Engineers (SPE), | 2007 |
Anisotropy.
Computer simulation. Flow control. Fracturing fluids. Geometry. Mathematical models. Mechanical permeability. Percolation (fluids) Petroleum geology. Reservoir management. Constant-length isotropic systems. Fracture-length distribution. Fractured reservoir. Petroleum reservoir evaluation. |
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| 16 | مقاله | A new decoding scheme for errorless codes for overloaded CDMA with active user detection | Mousavi, A. | 2011 |
Activation/deactivation.
CDMA system. Decoding scheme. Maximum likelihood decoders. Orders of magnitude. User detection. Algorithms. Bit error rate. Decoding. Information technology. Maximum likelihood. Poisson distribution. Telecommunication. Code division multiple access. |
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| 17 | مقاله | Estimation of the Effective Permeability of Heterogeneous Porous Media by Using Percolation Concepts | Masihi, M. | Springer Netherlands, | 2016 |
Heterogeneity.
High permeability pathway. Percolation theory. Reservoirs. Density functional theory. Mechanical permeability. Percolation (solid state) Petroleum reservoir evaluation. Petroleum reservoirs. Porous materials. Solvents. Characteristic shapes. Effective permeability. Heterogeneous porous media. High permeability. Permeability distribution. Standard algorithms. Petroleum reservoir engineering. |
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| 18 | مقاله | Percolation-based effective permeability estimation in real heterogeneous porous media | Masihi, M. | European Association of Geoscientists and Engineers | 2016 |
Oil well flooding.
Porous materials. Solvents. Conductivity measurements. Effective permeability. Heterogeneous media. Heterogeneous porous media. Order of accuracy. Percolating clusters. Permeability contrasts. Power law relation. Estimation. |
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| 19 | مقاله | A novel WaveNet-GRU deep learning model for PEM fuel cells degradation prediction based on transfer learning | Izadi, M. J. | 2024 |
Data-driven method.
Degradation prediction. PEMFC. Cost reduction. Energy efficiency. Forecasting. Learning systems. Mean square error. Proton exchange membrane fuel cells (PEMFC) Data-driven methods. Degradation predictions. GRU. Percentage error. Proton-exchange membranes fuel cells. Remaining useful lives. Root mean square errors. Transfer learning. Voltage prediction. Wavenet. Degradation. Instrumentation. Membrane. Performance assessment. Deep neural networks. |
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| 20 | مقاله | Optimization of sputtering parameters for the deposition of low resistivity indium tin oxide thin films | Yasrebi, N. | 2014 |
Sheet resistance.
Sputtering. Substrates. Surface morphology. Thin films. Tin. Transparency. Deposition experiments. Different pressures. Indium tin oxide. Indium tin oxide thin films. Parameters optimization. Process parameters. Sputtering parameters. Substrate temperature. Deposition. |
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