In the present work, heat transfer and fluid flow and their effects on entropy generation in a realistic catalytic converter of a Lada Niva 21214 vehicle are studied using large eddy simulation. At first, the pressure drop over the catalytic converter is measured for dry air at constant temperature (T=298 K), different volumetric flow rates, and extrapolated to large volumetric flow rates for dry air (T=298 K) and for the exhaust gas under realistic engine conditions (T=900 K) using the Darcy–Forchheimer relation. Then, coupled heat and fluid flow phenomena inside the catalytic converter are analyzed for nonreacting isothermal conditions and nonreacting conditions with conjugate heat transfer by using the large-eddy simulation. The predicte...
Metallic catalytic converters are composed of monoliths through which pass hundreds or thousands of ...
Metallic catalytic converters are composed of monoliths through which pass hundreds or thousands of ...
An overview is presented of the recent developments in the application of large eddy simulation (LES...
In the present work, heat transfer and fluid flow and their effects on entropy generation in a reali...
In this work, the entropy generation analysis is extended to the multi-phase fluid flow within a Lar...
Monolithic reactors employed in automotive exhaust gas aftertreatment typically operate under fluctu...
In order to reduce emissions from vehicles powered by an internal combustion engine, an exhaust afte...
Entropy loss is widely used to quantify the efficiency of components in turbomachines, and empirical...
A model for the pressure drop was proposed and compared to experimental results. Global flow charact...
The purpose of this work is the enhancement of performance by a new design of monolithic heat exchan...
The present paper analyzes numerically the entropy generation induced by forced convection in a cano...
Analysis of local entropy generation is an effective means to investigate sources of irreversibility...
The numerical investigation of inter-phase heat transfer in a catalytic combustor, under laminar flo...
Metallic catalytic converters are composed of monoliths through which pass hundreds or thousands of ...
Metallic catalytic converters are composed of monoliths through which pass hundreds or thousands of ...
An overview is presented of the recent developments in the application of large eddy simulation (LES...
In the present work, heat transfer and fluid flow and their effects on entropy generation in a reali...
In this work, the entropy generation analysis is extended to the multi-phase fluid flow within a Lar...
Monolithic reactors employed in automotive exhaust gas aftertreatment typically operate under fluctu...
In order to reduce emissions from vehicles powered by an internal combustion engine, an exhaust afte...
Entropy loss is widely used to quantify the efficiency of components in turbomachines, and empirical...
A model for the pressure drop was proposed and compared to experimental results. Global flow charact...
The purpose of this work is the enhancement of performance by a new design of monolithic heat exchan...
The present paper analyzes numerically the entropy generation induced by forced convection in a cano...
Analysis of local entropy generation is an effective means to investigate sources of irreversibility...
The numerical investigation of inter-phase heat transfer in a catalytic combustor, under laminar flo...
Metallic catalytic converters are composed of monoliths through which pass hundreds or thousands of ...
Metallic catalytic converters are composed of monoliths through which pass hundreds or thousands of ...
An overview is presented of the recent developments in the application of large eddy simulation (LES...