<正> In view of confusion on the residence time distribution and transfer fucntions for dispersion models, the solution of the model subject to possible combinations of closed and open type boundaries at the ends of a chemical reactor is investigated systematically. In particular, some new results are obtained for the closed-open and open-closed types of reactors. It is found that the interchange of boundary conditions for these reactors is not immaterial. In several cases, caution is necessary to distinguish whether the transfer function is applied to the concentration or the flux. When the dispersive flux is notable, measurement techniques must be carefully selected to match the kind of transfer functions derived
The wave model for longitudinal dispersion, published elsewhere as an alternative to the commonly us...
Atmospheric chemistry studies are frequently conducted in flow reactors, such as the potential aeros...
The validity and limitations of the pseudo-analytical solutions of the axial dispersion model, for t...
The problem of homogeneous and heterogeneous reactions in tubular flow reactors has been studied on ...
This work is a mathematical study of the effect of dispersion on the optimum residence times of seve...
In this paper a mathematical study is made of the effect of dispersion on the optimum residence time...
Axial dispersion models have been a useful implement for the analysis of many continuous flow system...
An analytical solution was given to predict the exit concentration of a tubular reactor ...
An analytical solution was given to predict the exit concentration of a tubular reactor ...
This paper deals with the analyis of the nonisothermal axial dispersion tubular reactor. The existen...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
The wave model for longitudinal dispersion, published elsewhere as an alternative to the commonly us...
Atmospheric chemistry studies are frequently conducted in flow reactors, such as the potential aeros...
The validity and limitations of the pseudo-analytical solutions of the axial dispersion model, for t...
The problem of homogeneous and heterogeneous reactions in tubular flow reactors has been studied on ...
This work is a mathematical study of the effect of dispersion on the optimum residence times of seve...
In this paper a mathematical study is made of the effect of dispersion on the optimum residence time...
Axial dispersion models have been a useful implement for the analysis of many continuous flow system...
An analytical solution was given to predict the exit concentration of a tubular reactor ...
An analytical solution was given to predict the exit concentration of a tubular reactor ...
This paper deals with the analyis of the nonisothermal axial dispersion tubular reactor. The existen...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
This work investigates axial dispersion in coiled tubes when the coil pitch is non-negligible compar...
The wave model for longitudinal dispersion, published elsewhere as an alternative to the commonly us...
Atmospheric chemistry studies are frequently conducted in flow reactors, such as the potential aeros...
The validity and limitations of the pseudo-analytical solutions of the axial dispersion model, for t...