In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) and a discrete forcing method (DFM), are applied to perform direct numerical simulations (DNSs) of heat transfer problems in tubular fluid-particle systems. Both IBM models are built on the well-developed models utilized in momentum transfer studies, and have the capability to handle mixed boundary conditions at the particle surface as encountered in industrial applications with both active and passive particles. Following a thorough verification of both models for the classical Graetz-Nusselt problem, we subsequently apply them to study a much more advanced Graetz-Nusselt problem of more practical importance with a dense stationary array consi...
\u3cp\u3eIn this paper, an efficient ghost-cell based immersed boundary method (IBM) is used to perf...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
\u3cp\u3eIn this paper two immersed boundary methods (IBM), specifically a continuous forcing method...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
\u3cp\u3eIn this paper, an efficient ghost-cell based immersed boundary method (IBM) is used to perf...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
\u3cp\u3eIn this paper two immersed boundary methods (IBM), specifically a continuous forcing method...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper two immersed boundary methods (IBM), specifically a continuous forcing method (CFM) an...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
In this paper, we report the extension of an earlier developed Direct Numerical Simulation (DNS) mod...
\u3cp\u3eIn this paper, an efficient ghost-cell based immersed boundary method (IBM) is used to perf...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
In this paper, an efficient ghost-cell based immersed boundary method is introduced to perform direc...