A fully resolved direct numerical simulation of flow and heat transfer is presented for slender randomly packed bed reactors. The flow and temperature field are solved over a non-body fitted, non-conformal Cartesian computational domain. The coupling between fluid and solid (both spherical particles and cylindrical wall) is enforced by a second order accurate, sharp interface immersed boundary method (IBM). The present numerical technique neither requires any challenging volumetric mesh generation process nor demands manipulation of the geometry near the particle-particle and particle-wall contact points. Conjugate heat transfer has been considered where the temperature field is calculated both inside the solid particles and in the fluid. A...
Packed-bed reactors are widely used in petrochemical, fine chemical, and pharmaceutical industries. ...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
The traditional fixed-bed reactor design is usually not suitable for the low tube-to-particle diamet...
\u3cp\u3eA fully resolved direct numerical simulation of flow and heat transfer is presented for sle...
A fully resolved direct numerical simulation of flow and heat transfer is presented for slender rand...
A fully resolved direct numerical simulation of flow and heat transfer is presented for slender rand...
A fully resolved direct numerical simulation of flow and heat transfer is presented for slender rand...
A fully resolved direct numerical simulation of flow and heat transfer is presented for slender rand...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Packed bed reactors are among the most common reactor types in chemical industries. The reactions in...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Packed bed reactors are among the most common reactor types in chemical industries. The reactions in...
Packed-bed reactors are widely used in petrochemical, fine chemical, and pharmaceutical industries. ...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
The traditional fixed-bed reactor design is usually not suitable for the low tube-to-particle diamet...
\u3cp\u3eA fully resolved direct numerical simulation of flow and heat transfer is presented for sle...
A fully resolved direct numerical simulation of flow and heat transfer is presented for slender rand...
A fully resolved direct numerical simulation of flow and heat transfer is presented for slender rand...
A fully resolved direct numerical simulation of flow and heat transfer is presented for slender rand...
A fully resolved direct numerical simulation of flow and heat transfer is presented for slender rand...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Packed bed reactors are among the most common reactor types in chemical industries. The reactions in...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
Packed bed reactors are among the most common reactor types in chemical industries. The reactions in...
Packed-bed reactors are widely used in petrochemical, fine chemical, and pharmaceutical industries. ...
Direct numerical simulations are conducted to characterize the fluid-particle heat transfer coeffici...
The traditional fixed-bed reactor design is usually not suitable for the low tube-to-particle diamet...