Pages that link to "Item:Q1415785"
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The following pages link to Modelling of hygro-thermal behaviour of concrete at high temperature with thermo-chemical and mechanical material degradation. (Q1415785):
Displaying 34 items.
- Investigation on thermophysical properties of reactive powder concrete (Q425054) (← links)
- Modeling deterioration of cementitious materials exposed to calcium leaching in non-isothermal conditions (Q658294) (← links)
- Modeling alkali-silica reaction in non-isothermal, partially saturated cement based materials (Q695879) (← links)
- Concrete at high temperature with application to tunnel fire (Q699718) (← links)
- Modeling of cementitious materials exposed to isothermal calcium leaching, considering process kinetics and advective water flow. I: Theoretical model (Q838536) (← links)
- Modeling of cementitious materials exposed to isothermal calcium leaching, considering process kinetics and advective water flow. II: Numerical solution (Q838537) (← links)
- Coupled model of hygro-thermal behavior of concrete during fire (Q930691) (← links)
- Towards prediction of the thermal spalling risk through a multi-phase porous media model of concrete (Q996668) (← links)
- Modeling cementitious materials as multiphase porous media: Theoretical framework and applications (Q1002751) (← links)
- Finite element analysis of various methods for protection of concrete structures against spalling during fire (Q1015544) (← links)
- Coupled thermo-mechanical interface model for concrete failure analysis under high temperature (Q1737030) (← links)
- Modeling of hydraulic fracture of concrete gravity dams by stress-seepage-damage coupling model (Q1993233) (← links)
- Coupled thermo-hydro-mechanical-phase field modeling for fire-induced spalling in concrete (Q2072445) (← links)
- A model for lime consolidation of porous solids (Q2113882) (← links)
- Two-dimensional steady-state general solutions for isotropic hygrothermoelastic media with applications (Q2327873) (← links)
- Multiphase flow in deforming porous media: a review (Q2359621) (← links)
- Coupled thermo-hygro-mechanical damage model for concrete subjected to high temperatures (Q2376178) (← links)
- An application of a damage constitutive model to concrete at high temperature and prediction of spalling (Q2385972) (← links)
- Modeling evolution of frost damage in fully saturated porous materials exposed to variable hygro-thermal conditions (Q2631528) (← links)
- Global weak solutions for coupled transport processes in concrete walls at high temperatures (Q2863142) (← links)
- Thermal coupling of fluid flow and structural response of a tunnel induced by fire (Q2894750) (← links)
- Modelling of hygro-thermal behaviour and damage of concrete at temperature above the critical point of water (Q3150114) (← links)
- Two-scale diffusion-deformation coupling model for material deterioration involving micro-crack propagation (Q3164496) (← links)
- Multiscale/Multiphysics Model for Concrete (Q3447731) (← links)
- Simulation of damage-permeability coupling in hygro-thermo-mechanical analysis of concrete at high temperature (Q4329433) (← links)
- Gradient enhanced thermo‐mechanical damage model for concrete at high temperatures including transient thermal creep (Q4667875) (← links)
- Thermo‐hygro‐mechanical analysis of concrete (Q4860921) (← links)
- A coupled chemo‐thermo‐hygro‐mechanical model of concrete at high temperature and failure analysis (Q5435738) (← links)
- A multifield coupled thermo‐chemo‐mechanical theory for the reaction‐diffusion modeling in photovoltaics (Q6082499) (← links)
- Predicting the Pore-Pressure and Temperature of Fire-Loaded Concrete by a Hybrid Neural Network (Q6172999) (← links)
- Plane waves in temperature dependent hygrothermoelastic medium under the influence of gravity—Analytical and numerical approach (Q6183629) (← links)
- A coupled hygro-thermo-mechanical Cosserat peridynamic modelling of fire-induced concrete fracture (Q6556499) (← links)
- Physical informed neural network for thermo-hydral analysis of fire-loaded concrete (Q6566857) (← links)
- Fatigue notch strengthening effect of nickel-based single crystal superalloys under different stress ratios (Q6658568) (← links)