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ghasemi-fare--o
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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | Numerical investigation of the effects of geometric and seismic parameters on liquefaction-induced lateral spreading | Ghasemi Fare, O. | Elsevier Ltd, | 2016 |
Excess pore water pressure.
Fully coupled dynamic analysis. Lateral displacement. Lateral spreading. Critical current density (superconductivity) Dynamic loads. Excitons. Pore pressure. Pressure distribution. Soils. Water. Excess pore water pressure ratios. Fully-coupled. Lateral displacements. Maximum acceleration. Numerical investigations. Two-surface plasticity. Soil liquefaction. |
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| 2 | مقاله | Analyzing transient heat and moisture transport surrounding a heat source in unsaturated porous media using the Green's function | Yazdani Cherati, D. | Elsevier Ltd, | 2019 |
Analytical solution.
Energy pile. Transient heat and moisture transport. Green's function. Groundwater. Moisture. Moisture determination. Piles. Porous materials. Soil conservation. Soils. Thermal load. Transient analysis. Cylindrical coordinate systems. Energy piles. Heat and moisture transports. Partial Differential Equations (PDEs) Partially saturated soils. Separation of variables. Transient heat. Unsaturated porous media. Ordinary differential equations. Analytical method. Green function. Heat source. Moisture transfer. Porous medium. Soil property. Unsaturated medium. |
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| 3 | مقاله | Practical approaches for implementation of energy piles in Iran based on the lessons learned from the developed countries experiences | Yazdani Cherati, D. | Elsevier Ltd, | 2021 |
Developing countries.
Geothermal energy. Office buildings. Piles. Solar buildings. Commercial building. Developed countries. Environmental conditions. Ground source heat pump (GSHPs) Heating and cooling. Shallow geothermal energies. Structural component. Thermo-active foundations. Geothermal heat pumps. |
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| 4 | مقاله | Unsaturated thermal consolidation around a heat source | Cherati, D. Y. | Elsevier Ltd, | 2021 |
Laplace transforms.
Pore pressure. Pressure distribution. Soils. Thermal expansion. Water. Excess pore water pressure. Inverse transformations. Laplace transformations. Local thermal equilibrium. Momentum balance equations. Temporal discretization. Thermal consolidation. Thermal expansion coefficients. Consolidation. Analytical method. Clay soil. Effective stress. Fourier transform. Green function. Heat source. Immiscible fluid. Laplace transform. porewater. unsaturated medium. |
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| 5 | مقاله | Investigation of the influence of permeability coefficient on the numerical modeling of the liquefaction phenomenon | Rahmani, A. | 2012 |
Constant permeability.
Displacement. Liquefaction. Bounding surface plasticity model. Centrifuge tests. Critical state. Excess pore pressure. Finite element programs. Fully-coupled. Initial stress state. Material parameter. Numerical algorithms. Numerical modeling. Pore-water pressures. Pressure variations. Saturated sand. Soil displacement. Soil permeability. Variable permeability. Void ratios. Water flows. Algorithms. Computer simulation. Critical current density (superconductivity) Geologic models. Liquefaction. Numerical analysis. Numerical models. Pore pressure. Soils. Soil liquefaction. Numerical model. Permeability. Plasticity. Porewater. Void ratio. Water flow. |
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| 6 | پایان نامه | آنالیز عددی حرارتی- مکانیکی شمع های حرارتی به صورت تکی و در گروه شمع Numerical Investigation of the Thermo-mechanical Response of Single Energy Pile and a Group of Energy Piles | رزمخواه شربیانی، طاهره Razmkhah, Tahereh | صنعتی شریف | 1395 | شمع حرارتی Energy Pile / درجه حرارت Temperature / بارگذاری حرارتی Thermal Loading / تحلیل حرارتی - مکانیکی Thermo-Mechanical Analysis / بارگذاری حرارتی مکانیکی Thermomechanical Loading / ترمومکانیک Thermomechanic / نرم افزار FLAC FLAC Software |
09-49755
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| 7 | مقاله | Investigation of thermo-mechanical response of a geothermal pile through a small-scale physical modelling | Hashemi Senejani, H. | EDP Sciences, | 2020 |
Geothermal energy.
Office buildings. Soils. Strain. Structural design. Structural geology. Thermal cycling. Thermocouples. Boundary temperature. Commercial building. Mechanical response. Physical modelling. Plastic settlements. Temperature influence. Thermo-mechanical response. Ultimate capacity. Piles. |
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| 8 | مقاله | Prediction of lateral spreading displacement on gently sloping liquefiable ground | Ghasemi Fare, O. | American Society of Civil Engineers (ASCE), | 2017 |
Centrifuges.
Forecasting. Soil liquefaction. Field observations. Ground accelerations. Lateral displacements. Lateral spreading. Liquefiable ground. Liquefiable soil. Numerical results. Variable permeability. Finite element method. |
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| 9 | مقاله | An experimental investigation of nanoemulsion enhanced oil recovery: Use of unconsolidated porous systems | Jalilian, M. | Elsevier Ltd, | 2019 |
ANOVA method.
Nanoemulsion. Analysis of variance (ANOVA) Design of experiments. Emulsification. Floods. Gas industry. Nanoparticles. Oil well flooding. Packed beds. Porous materials. Recovery. Reservoirs (water) Seawater. Solvents. Surface active agents. Analysis of variance method. Chemical EOR. Experimental investigations. Production performance. Surfactant flooding. Taguchi experimental design. Taguchi technique. Enhanced recovery. |
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| 10 | مقاله | Parallelized numerical modeling of the interaction of a solid object with immiscible incompressible two-phase fluid flow | Ghasemi, A. | 2017 |
CFD.
Free surface. Immersed boundary. Application programming interfaces (API) Computational fluid dynamics. Computational methods. Energy conversion. Flow interactions. Flow of fluids. Navier Stokes equations. Numerical methods. Turbulent flow. Viscous flow. Water waves. Wave energy conversion. Wind power. Wind turbines. Design/methodology/approach. Fluid solid interaction. Free surfaces. Immersed boundary. Immersed boundary methods. Level set. Two-dimensional navier-stokes equations. Two-step projection methods. Two phase flow. |
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| 11 | مقاله | The decoration of TiO2/reduced graphene oxide by Pd and Pt nanoparticles for hydrogen gas sensing | Esfandiar, A. (Ali). | 2012 |
Graphene.
Palladium. TiO2 nanoparticles. Photocatalytic reduction. Hydrogen gas sensors. |
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| 12 | مقاله | Oscillating pipe flow: High-resolution simulation of nonlinear mechanisms | Ghasemi, A. | American Society of Mechanical Engineers, | 2006 |
Boundary conditions.
Computer simulation. Control nonlinearities. Navier Stokes equations. Prandtl number. Reynolds number. Runge Kutta methods. Shock waves. Nonlinear pumping. Shock formation. Stokes Layer interactions. Temporal fluctuations. Pipe flow. |
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| 13 | مقاله | An optimized large-stencil approach for capturing near-PI frequencies | Ghasemi, A. | American Institute of Aeronautics and Astronautics Inc, | 2006 |
Algorithms.
Compressible flow. Finite difference method. Mathematical models. Navier Stokes equations. Optimization. Fine structures. Finite difference algorithms. Total Computational Cost (TCC) Natural frequencies. |
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| 14 | مقاله | Numerical solution of high-frequency oscillations of a gas column using a modified lax-wendroff scheme | Ghasemi, A. | Katholieke Universiteit Leuven, | 2006 |
Engineering.
Industrial engineering. Engineering flows. High frequency oscillations. High resolution simulations. Lax-Wendroff scheme. Numerical solution. Pressure profiles. Solving nonlinear equations. Three-dimensional solutions. Navier Stokes equations. |
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| 15 | مقاله | Oscillating pipe flow: high-resolution simulation of nonlinear mechanisms | Ghasemi, A. | 2006 |
Boundary conditions.
Compressible flow. Fluid structure interaction. Navier Stokes equations. Reynolds number. Turbulence. Oscillating pipe flow. Shock formation. Temporal fluctuations. Wave reflection. Pipe flow. |
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| 16 | مقاله | Facile synthesis and simulation of MnO2 nanoflakes on vertically aligned carbon nanotubes, as a high-performance electrode for Li-ion battery and supercapacitor | Abdollahi, A. | Elsevier Ltd, | 2021 |
Anodes.
Carbon nanotubes. Electric discharges. Ions. Lithium-ion batteries. Sodium sulfate. Supercapacitor. Yarn. 'current. Binder free. Carbon nanotube electrodes. Facile synthesis. Flexible li-ion battery. MnO$-2$. MnO2 nano flake. Nanoflakes. Performance. Vertically aligned carbon nanotube. Manganese oxide. |
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| 17 | مقاله | Facile synthesis and simulation of MnO2 nanoflakes on vertically aligned carbon nanotubes, as a high-performance electrode for Li-ion battery and supercapacitor | Abdollahi, A. | Elsevier Ltd, | 2021 |
Anodes.
Carbon nanotubes. Electric discharges. Ions. Lithium-ion batteries. Sodium sulfate. Supercapacitor. Yarn. 'current. Binder free. Carbon nanotube electrodes. Facile synthesis. Flexible li-ion battery. MnO$-2$. MnO2 nano flake. Nanoflakes. Performance. Vertically aligned carbon nanotube. Manganese oxide. |
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| 18 | مقاله | Equipment failure rate in electric power distribution networks: An overview of concepts, estimation, and modeling methods | Ghasemi, H. | Elsevier Ltd, | 2023 |
Asset management.
Degradation. Equipment. Failure rate. Maintenance. Power distribution network. Reliability. |
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| 19 | مقاله | Optimum waist of localized basis functions in truncated series employed in some optical applications | Ghasemi, F. | 2010 |
Asymptotic analysis.
Asymptotic behaviors. Basis functions. Functional expansion. Hermite. Laguerre. Optical applications. Orthogonal basis function. Orthogonal functions. |
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| 20 | مقاله | Microstructural evolution mechanism during brazing of Hastelloy X superalloy using Ni–Si–B filler metal | Ghasemi, A. | 2017 |
Boride.
Solidification. Borides. Brazing. Filler metals. Fillers. Grain growth. Heat affected zone. Isotherms. Nickel. Nickel compounds. Precipitation (chemical) Silicides. Superalloys. Diffusion brazing. Diffusion-affected zone. Hastelloy X. In-situ precipitation. Isothermal solidification. Nickel base superalloy. Nickel silicide. Solid state precipitation. |
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