Pages that link to "Item:Q974864"
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The following pages link to 3D numerical simulation of flow and conjugate heat transfer through a pore scale model of high porosity open cell metal foam (Q974864):
Displaying 9 items.
- Numerical simulation of convective heat transfer between air flow and ceramic foams to optimise volumetric solar air receiver performances (Q533248) (← links)
- Numerical study of conjugated heat transfer in metal foam filled double-pipe (Q709042) (← links)
- 3D numerical simulation of flow and conjugate heat transfer through a pore scale model of high porosity open cell metal foam (Q974864) (← links)
- Natural convection in metal foams with open cells (Q978192) (← links)
- Entropy generation-based computational geometry optimization of the pore structure of high-conductivity graphite foams for use in enhanced heat transfer devices (Q1641586) (← links)
- Simulation of steady fluid-solid conjugate heat transfer problems via immersed boundary-lattice Boltzmann method (Q2006506) (← links)
- Asymptotic behaviour of heat transfer in two-dimensional turbulent convection with high-porosity fluid-saturated media (Q4957957) (← links)
- Experimental and numerical investigation of single pores for identification of effective metal foams properties (Q6086179) (← links)
- Dual-porosity approach: heat transfer and heat storage processes in porous media (Q6577756) (← links)