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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | Influence of main and outer wings on aerodynamic characteristics of compound wing-in-ground effect | Tavakoli Dakhrabadi, M. | Elsevier Masson SAS | 2016 |
Endplate.
Ground effect. Static height stability. Aerodynamic stability. Aerodynamics. Aspect ratio. Stability. Aerodynamic characteristics. Aerodynamic optimization. Compound WIG. Computational time. High aspect ratio. Low aspect ratio. Wing in ground effect. Low aspect ratio wings. |
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| 2 | مقاله | Hydro-aerodynamic mathematical model and multi-objective optimization of wing-in-ground effect craft in take-off | Tavakoli Dakhrabadi, M. | SAGE Publications Ltd, | 2018 |
Hydro-aerodynamic.
Mathematical model. Multi-objective optimization. Take-off. Aerodynamic stability. Air cushion vehicles. Computation theory. Economic and social effects. Genetic algorithms. Ground effect. Hydrodynamics. Lift drag ratio. Mathematical models. Takeoff. Aero-dynamic performance. Aerodynamic characteristics. Computational time. Objective functions. Potential-flow theory. Power-Augmented-Ram. Semiempirical equation. Wing In Ground Effect craft. Multiobjective optimization. |
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| 3 | مقاله | A practical method for aerodynamic investigation of WIG | Seif, M. S. | Emerald Group Publishing Ltd, | 2016 |
Mathematical modeling.
Rectangular wing. Aerodynamics. Air cushion vehicles. Aspect ratio. Conceptual design. Ground effect. Lift. Mathematical models. Numerical methods. Aero-dynamic performance. Aerodynamic characteristics. Aerodynamic surfaces. Bernoulli equations. Computational time. Design/methodology/approach. Rectangular wings. Reynolds averaged Navier Stokes (RANS)equations. Navier Stokes equations. |
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| 4 | مقاله | Development of a semi-empirical method for hydro-aerodynamic performance evaluation of an AAMV, in take-off phase | Maali Amiri, M. | Springer Verlag, | 2015 |
Take-off phase.
Aerodynamics. Air cushion vehicles. Fluid dynamics. Ground effect. Hydrodynamics. Lift. Numerical methods. Takeoff. Vehicles. AAMV. Aero-dynamic performance. Aerodynamic characteristics. Equations of equilibria. Experimental approaches. Hydrodynamic performance. Lift and drag coefficients. Semi-empirical methods. Aerodynamic drag. |
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| 5 | مقاله | Formulation of a nonlinear mathematical model to simulate accelerations of an AAMV in take-off and landing phases | Maali Amiri, M. | Taylor and Francis Ltd, | 2016 |
AAMV.
acceleration. get-away speed. landing. take-off. Acceleration. Aerodynamics. Fluid dynamics. Hydrodynamics. Landing. Nonlinear equations. Speed. Takeoff. AAMV. Aerodynamic parameters. Aerodynamic surfaces. High speed crafts. Nonlinear mathematical model. Semiempirical equation. Total resistance. Water-resistances. Mathematical models. |
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| 6 | مقاله | Multilayer evaporation of MAFAPbI3-xClx for the fabrication of efficient and large-scale device perovskite solar cells | Tavakoli, M. M. | Institute of Physics Publishing, | 2019 |
Solar.
Solvent-free. Sustainability. Chlorine compounds. Evaporation. Fabrication. Perovskite. Solar cells. Sustainable development. Thermal evaporation. Annealing process. High crystallinity. High-efficiency. Perovskite films. Phase instability. Solvent free. Thermal evaporation technique. Perovskite solar cells. |
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| 7 | مقاله | Organic halides and nanocone plastic structures enhance the energy conversion efficiency and self-cleaning ability of colloidal quantum dot photovoltaic devices | Tavakoli, M. M. | American Chemical Society, | 2017 |
Energy efficiency.
Solar cells. Heterojunctions. Ligands. Nanocrystals. Nanostructures. Narrow band gap semiconductors. Passivation. Quantum theory. Semiconductor quantum dots. Silicones. Energy conversion. Thin films. Anodized aluminum oxide. Colloidal quantum dots. Electron transfer. Ligand exchanges. Photovoltaic devices. Plastic structure. Power conversion efficiencies. Time-resolved photoluminescence. Conversion efficiency. |
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| 8 | مقاله | Surface engineering of TiO2 ETL for highly efficient and hysteresis-less planar perovskite solar cell (21.4%) with enhanced open-circuit voltage and stability | Tavakoli, M. M. | Wiley-VCH Verlag, | 2018 |
Amorphous SnO2.
C-TiO2. Efficiency. Perovskites. Stability. UV stability. Cell engineering. Convergence of numerical methods. Efficiency. Electron transport properties. Hysteresis. Open circuit voltage. Perovskite. Solar cells. Stability. Timing circuits. Titanium dioxide. Carrier recombination. Double layer structure. Electron transport layers. Interface energetics. Light illumination. Surface engineering. UV stability. UV-light illumination. Perovskite solar cells. |
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| 9 | مقاله | Efficient, hysteresis-free, and flexible inverted perovskite solar cells using all-vacuum processing.Efficient, hysteresis-free, and flexible inverted perovskite solar cells using all-vacuum processing | Tavakoli, M. M. | Wiley-VCH Verlag, | 2020 |
Copper (II) phthalocyanine.
Efficiencies. Inverted designs. Perovskites. Solar cells. Vacuum deposition. Conversion efficiency. Efficiency. Fabrication. Hysteresis. Perovskite. Perovskite solar cells. Substrates. Copper phthalocyanine (CuPc) Fabrication process. Hole transporting layers. Hysteresis free. Low temperatures. Operational stability. Power conversion efficiencies. Vacuum processing. Copper compounds. |
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| 10 | مقاله | Efficient perovskite solar cells based on Cdse/Zns quantum dots electron transporting layer with superior UV stability | Tavakoli, M. M. | Wiley-VCH Verlag, | 2020 |
CdSe/ZnS quantum dots.
UV stability. Cadmium compounds. Efficiency. II-VI semiconductors. Nanocrystals. Perovskite. Perovskite solar cells. Stability. Titanium dioxide. Device stability. Down-shifting layer. Electron transporting layer. Green emissions. Maximum power. UV illuminations. Semiconductor quantum dots. |
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| 11 | مقاله | Oxygen plasma-induced p-type doping improves performance and stability of PbS quantum dot solar cells | Tavakoli Dastjerdi, H. | American Chemical Society, | 2019 |
Plasma.
Stability. Convergence of numerical methods. Costs. Energy gap. IV-VI semiconductors. Lead compounds. Nanocrystals. Oxygen. Plasma applications. Plasma stability. Plasmas. Solar cells. Sols. Sulfur compounds. Colloidal quantum dots. Hole transporting layers. Lead sulfide. Oxygen plasma treatments. Photovoltaic applications. Photovoltaics. Power conversion efficiencies. Quantum dot solar cells. Semiconductor quantum dots. |
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| 12 | مقاله | Three-dimensional Graphene Electrode for Depleted-hetreojunction Quantum Dot Solar Cells | Tavakoli, M. M. | Elsevier Ltd, | 2016 |
PbS.
Solar cell. ZnO-graphene. Graphite electrodes. Lead. Nanocrystals. Semiconductor quantum dots. Solar cells. Zinc oxide. 3D graphene. Acidic solutions. Colloidal quantum dots. Hollow structure. Power conversion efficiencies. Quantum dot solar cells. Solution methods. Three-dimensional graphene. Graphene. |
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| 13 | مقاله | Surface engineering of pbs colloidal quantum dots using atomic passivation for photovoltaic applications | Tavakoli, M. M. | Elsevier Ltd | 2016 |
Atomic passivation.
ligand exchange. PbS. Solar cell. Cadmium compounds. Calcium. Doping (additives) Efficiency. Lead. Nanocrystals. Optoelectronic devices. Passivation. Photovoltaic effects. Solar energy. Zinc. Colloidal quantum dots. Ligand exchanges. Low cost fabrication. Pbs colloidal quantum dots. Photoluminescence measurements. Photovoltaic applications. Solar power conversion. Surface engineering. Semiconductor quantum dots. |
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| 14 | مقاله | A Dopant-free hole transporting layer for efficient and stable planar perovskite solar cells | Tavakoli, M. M. | Wiley-VCH Verlag, | 2020 |
Device stability.
Hole transporting layer. Power conversion efficiency. PV2000 polymer. Deposition. Hole mobility. Perovskite. Positive ions. Band alignments. Dopant-free. Hole transporting layers. Maximum power. Operational stability. Organic materials. Polyvinyl pyrrolidone. Spirobifluorene. Perovskite solar cells. |
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| 15 | پایان نامه | مدل سازی ریاضی هیدروایرودینامیک و بهینه سازی عملکردی قایق پرنده در فاز برخاست به روش الگوریتم ژنتیک Hydro-aerodynamic Mathematical Model and Optimization of WIG Craft Performance at Take-off Phase by Genetic Algorithm | توکلی دخرآبادی، محمد Tavakkoli Dakhrabadi, Mohammad | صنعتی شریف | 1395 | بهینه سازی چندهدفه Multiobjective Optimization / مدل سازی ریاضی Mathematical Modeling / برخاست هواپیما Takeoff / پرنده اثر سطحی Wing-In-Ground Effect / الگوریتم ژنتیک Genetic Algorithm / مدل سازی ریاضی MATHEMATICAL MODELING / قایق های پرنده Fly Boats / هیدرودینامیک Hydrodynamics |
08-49447
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| 16 | مقاله | A new method for using a psychoacoustic model with patchwork audio watermarking in DFT domain | Tavakoli, E. | IEEE Computer Society, | 2008 |
Algorithms.
Block codes. Digital watermarking. Discrete Fourier transforms. Industrial electronics. Probability density function. Telephone. Telephone sets. Audio watermarking schemes. Compression algorithms. Digital telephone channel. Patchwork audio watermarking. Perceptual masking. Psychoacoustic model. Re samplings. Requantization. Watermarking algorithms. Watermarking. |
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| 17 | مقاله | Alternating active-phase algorithm for multimaterial topology optimization problems: A 115-line MATLAB implementation | Tavakoli, R. | 2014 |
Multiphase topology optimization.
Algorithms. MATLAB. Optimization. Coordinate descent methods. Matlab code. Multi materials. Optimality criteria. Optimality Criteria Method. Optimization solvers. Outer iteration. Sequential manners. Iterative methods. |
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| 18 | مقاله | Model predictive orbit control of a Low Earth Orbit satellite using Gauss's variational equations | Tavakoli, M. M. | 2014 |
Gauss's variational equations (GVEs)
model predictive control (MPC) Communication satellites. Convex optimization. Gaussian distribution. Linear programming. Optimization. Predictive control systems. Satellite communication systems. Satellites. Autonomous orbit controls. Convex optimization problems. Drag perturbation. Linear quadratic regulator. Linearization errors. Low earth orbit satellites. Satellite thrusters. Orbits. |
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| 19 | مقاله | Fractional order model reduction approach based on retention of the dominant dynamics: Application in IMC based tuning of FOPI and FOPID controllers | Tavakoli Kakhki, M. | 2011 |
Dominant dynamics.
Fractional order PID controller. Fractional order. Fractional order models. Reduction method. Tuning rule. Electric control equipment. Proportional control systems. Three term control systems. Two term control systems. Controllers. Feedback system. Theoretical model. Algorithms. Computer Simulation. Feedback. Models, Theoretical. |
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| 20 | مقاله | Temperature control of a cutting process using fractional order proportional-integral-derivative controller | Tavakoli Kakhki, M. | 2011 |
Fractional order PID controller.
Cutting process. Fractional order. Fractional order system. Reduction method. Tuning rule. Controllers. Cutting tools. Proportional control systems. Temperature control. Two term control systems. Process control. |
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