Gas solid two-phase flow is ubiquitous in nature and many engineering fields, such as chemical engineering, energy, and mining. The closure of its hydrodynamic model is difficult owing to the complex multiscale structure of such flow. To address this problem, the energy-minimization multi-scale (EMMS) model introduces a stability condition that presents a compromise of the different dominant mechanisms involved in the systems, each expressed as an extremum tendency. However, in the physical system, each dominant mechanism should be expressed to a certain extent, and this has been formulated as a multiobjective optimization problem according to the EMMS principle generalized from the EMMS model. The mathematical properties and physical meani...
The Dual-Bubble-Size (DES) model is an extension of the Energy-Minimization Multi-Scale (EMMS) model...
This presentation reviews a 3-decade research on meso-scale modeling of various complex systems at t...
This paper investigates the relationship between the two choking criteria in the energy minimization...
Directly solving the multi-objective optimization problem, min [(Wst)(epsilon)], in the energy-minim...
Virtual reality in chemical engineering features real-time simulation of complex industrial processe...
Multi-scale spatio-temporal structures, the dominant feature for all complex systems, are identified...
The energy-minimization multiscale (EMMS) model, originally proposed for gas-solid fluidization, fea...
Hydrodynamic features of gas-solid generalized fluidization can be well expressed in the form of pha...
This study investigates the heterogeneous structure and its influence on drag coefficient for concur...
As the core of the Energy-Minimization Multi-Scale (EMMS) approach, the so-called stability conditio...
As the core of the Energy-Minimization Multi-Scale (EMMS) approach, the so-called stability conditio...
Cocurrent gas-solid downer reactors have many applications in industry because they possess the te...
This study investigates the heterogeneous structure and its influence on drag coefficient for concur...
A simplified two-fluid model (STFM) combined with energy-minimization multi-scale (EMMS) drag was ...
A multi-scale model for the gas-liquid-solid three-phase fluidized beds is developed on the basis of...
The Dual-Bubble-Size (DES) model is an extension of the Energy-Minimization Multi-Scale (EMMS) model...
This presentation reviews a 3-decade research on meso-scale modeling of various complex systems at t...
This paper investigates the relationship between the two choking criteria in the energy minimization...
Directly solving the multi-objective optimization problem, min [(Wst)(epsilon)], in the energy-minim...
Virtual reality in chemical engineering features real-time simulation of complex industrial processe...
Multi-scale spatio-temporal structures, the dominant feature for all complex systems, are identified...
The energy-minimization multiscale (EMMS) model, originally proposed for gas-solid fluidization, fea...
Hydrodynamic features of gas-solid generalized fluidization can be well expressed in the form of pha...
This study investigates the heterogeneous structure and its influence on drag coefficient for concur...
As the core of the Energy-Minimization Multi-Scale (EMMS) approach, the so-called stability conditio...
As the core of the Energy-Minimization Multi-Scale (EMMS) approach, the so-called stability conditio...
Cocurrent gas-solid downer reactors have many applications in industry because they possess the te...
This study investigates the heterogeneous structure and its influence on drag coefficient for concur...
A simplified two-fluid model (STFM) combined with energy-minimization multi-scale (EMMS) drag was ...
A multi-scale model for the gas-liquid-solid three-phase fluidized beds is developed on the basis of...
The Dual-Bubble-Size (DES) model is an extension of the Energy-Minimization Multi-Scale (EMMS) model...
This presentation reviews a 3-decade research on meso-scale modeling of various complex systems at t...
This paper investigates the relationship between the two choking criteria in the energy minimization...