In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct numerical simulations of mass‐transfer processes in bidisperse arrays. Stationary spherical particles, with a size ratio of 1.5, are homogeneously distributed in a periodic domain in the spanwise directions. Simulations are performed over a range of solids volume fractions, volume fraction ratios of small‐to‐large particles, and Reynolds numbers. Through our studies, we find that large particles have a negative influence on the overall mass‐transfer performance; however, the performance of individual particle species is independent on the relative volume fraction ratios. We propose two correlations: (a) a refitted Gunn correlation for a better de...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
Extensive direct numerical simulations were performed to obtain the heat transfer coefficients (HTC)...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
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, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
\u3cp\u3eIn this paper, an efficient ghost-cell based immersed boundary method is introduced to perf...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
Extensive direct numerical simulations were performed to obtain the heat transfer coefficients (HTC)...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this study, an efficient ghost cell‐based immersed boundary method is used to perform direct nume...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
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, an efficient ghost-cell based immersed boundary method is introduced to perform direc...
\u3cp\u3eIn this paper, an efficient ghost-cell based immersed boundary method is introduced to perf...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...
Extensive direct numerical simulations were performed to obtain the heat transfer coefficients (HTC)...
In this paper, an efficient ghost-cell based immersed boundary method is applied to perform direct n...