This paper describes a numerical procedure for the prediction of the homogenizing performance of high-pressure homogenizing valves used in diary plants. The method is based on a strict interaction between a complex CFD code and a simple homogenizing simulation code developed by the authors. This latter implements a mathematical model for the evaluation of droplets break-up, that needs an accurate evaluation of few significant fluid dynamic parameters in the whole fluid dynamic domain inside the valve. Due to the relevant pressure gradients within the flow and to the possibility of cavitation, particular attention has been paid in defining the fluid model, the mesh and the parameters required for CFD simulations. Notwithstanding the quite si...
AbstractThe hydrodynamics of the High Pressure Homogenizer has been investigated in order to increas...
In this chapter, a detailed review of the current understanding of the physical processes of droplet...
There is a large interest in predicting high-pressure homogenizer (HPH) valve hydrodynamics using CF...
The main target of this first study about an high pressure homogenizer valve is to describe the flow...
Numerical investigations of the flow and pressure fields within a homogenizer valve have been conduc...
Since the emulsification in the High-Pressure Homogenizer (HPH) is controlled by hydrodynamic forces...
Designing more efficient high-pressure homogenizers (HPHs) is important from an industrial perspecti...
Most experimental and numerical investigations of high-pressure homogenizers assume that the valve i...
High pressure homogenization is at the heart of many emulsification processes in the food, personal ...
A mathematical modeling approach for the study of a directional valve is proposed in this paper. The...
The emulsification in a high pressure homogenizer was studied using a dynamic simulation model based...
Due to their wide utilization and low thermodynamic efficiency, there is a large interest in designi...
A multi-mesh numerical valve model has been developed to analyze the opening characteristic of high-...
The break-up phenomena occurring in a high pressure homogenizer equipped with an interchangeable ori...
More detailed investigation of the flow inside emulsification devices, e.g., High-pressure homogeniz...
AbstractThe hydrodynamics of the High Pressure Homogenizer has been investigated in order to increas...
In this chapter, a detailed review of the current understanding of the physical processes of droplet...
There is a large interest in predicting high-pressure homogenizer (HPH) valve hydrodynamics using CF...
The main target of this first study about an high pressure homogenizer valve is to describe the flow...
Numerical investigations of the flow and pressure fields within a homogenizer valve have been conduc...
Since the emulsification in the High-Pressure Homogenizer (HPH) is controlled by hydrodynamic forces...
Designing more efficient high-pressure homogenizers (HPHs) is important from an industrial perspecti...
Most experimental and numerical investigations of high-pressure homogenizers assume that the valve i...
High pressure homogenization is at the heart of many emulsification processes in the food, personal ...
A mathematical modeling approach for the study of a directional valve is proposed in this paper. The...
The emulsification in a high pressure homogenizer was studied using a dynamic simulation model based...
Due to their wide utilization and low thermodynamic efficiency, there is a large interest in designi...
A multi-mesh numerical valve model has been developed to analyze the opening characteristic of high-...
The break-up phenomena occurring in a high pressure homogenizer equipped with an interchangeable ori...
More detailed investigation of the flow inside emulsification devices, e.g., High-pressure homogeniz...
AbstractThe hydrodynamics of the High Pressure Homogenizer has been investigated in order to increas...
In this chapter, a detailed review of the current understanding of the physical processes of droplet...
There is a large interest in predicting high-pressure homogenizer (HPH) valve hydrodynamics using CF...