AbstractThe optimum design of a thermochemical reactor involves complex phenomena such as radiation heat and mass transfer, reaction kinetics, and fluid-solid interactions which makes the process to be cumbersome. The computational modelling using computational fluid dynamics (CFD) is an important tool to study, analyse, interpret and optimize such a complex system. The present study has developed a CFD model using Ansys-Fluent 14.0. The model employs the Eulerian-Lagrangian approach with the chemical reactions for a vertical axis thermochemical reactor for Zinc oxide reduction process. The conversion efficiency and temperature distributions for Zinc oxide reduction estimated by the CFD results have been validated with the published results...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
High temperature storage is a key factor for compensating the fluctuating energy supply of solar the...
The study is aimed to numerically investigate the production of hydrogen through ZnO/Zn thermochemic...
AbstractThe optimum design of a thermochemical reactor involves complex phenomena such as radiation ...
AbstractThe endothermic thermochemical process of metal oxide reduction in an indirectly-irradiated ...
AbstractA lab-scale thermochemical reactor is designed and fabricated for the solar-driven thermal r...
AbstractA solar thermo-chemical reactor is modeled and analyzed for the solar thermal dissociation o...
Storage of the heat is one of the key points in the development of concentrated solar power plants. ...
A solar thermo-chemical reactor has been designed and modeled to study the flow of decomposition rea...
The reduction of iron–manganese oxide particles in a high-temperature packed-bed solar thermochemica...
Solar thermochemical energy storage is a promising pathway towards extending the utility of concentr...
The rising demand for electricity coupled with concerns about globally increasing greenhouse gas emi...
A solar thermal reactor has been designed to experimentally investigate promising paths for reducing...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
High temperature storage is a key factor for compensating the fluctuating energy supply of solar the...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
High temperature storage is a key factor for compensating the fluctuating energy supply of solar the...
The study is aimed to numerically investigate the production of hydrogen through ZnO/Zn thermochemic...
AbstractThe optimum design of a thermochemical reactor involves complex phenomena such as radiation ...
AbstractThe endothermic thermochemical process of metal oxide reduction in an indirectly-irradiated ...
AbstractA lab-scale thermochemical reactor is designed and fabricated for the solar-driven thermal r...
AbstractA solar thermo-chemical reactor is modeled and analyzed for the solar thermal dissociation o...
Storage of the heat is one of the key points in the development of concentrated solar power plants. ...
A solar thermo-chemical reactor has been designed and modeled to study the flow of decomposition rea...
The reduction of iron–manganese oxide particles in a high-temperature packed-bed solar thermochemica...
Solar thermochemical energy storage is a promising pathway towards extending the utility of concentr...
The rising demand for electricity coupled with concerns about globally increasing greenhouse gas emi...
A solar thermal reactor has been designed to experimentally investigate promising paths for reducing...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
High temperature storage is a key factor for compensating the fluctuating energy supply of solar the...
Solar reactors are devices that collect concentrated solar energy from systems such as the solar fur...
High temperature storage is a key factor for compensating the fluctuating energy supply of solar the...
The study is aimed to numerically investigate the production of hydrogen through ZnO/Zn thermochemic...