AIP Conference Proceedings, 2033, Nov. 2018, Article number 210007-1-210007-8Estimations of convection and radiation cavity losses in two common CSP applications have been analyzed; a cavity in a solar tower plant for high temperature (800 K) and in a down facing cavity in a Fresnel configuration for medium temperature (350 K) applications. An analysis regarding the effect of the configuration, geometry and the presence of wind has been also carried out.Ministerio de Ciencia e Innovación MTM2015-65608-PJunta de Andalucía Consejería de Economía y Conocimiento P12-FQM-1658Ministerio de Economía, Industria y Competitividad DPI2016-78887-C3-1-
In solar thermal systems, especially for high concentration applications, natural convection and rad...
The influence of wind on the convective losses of cavity receivers for solar power towers was analyz...
Open cavity receivers can be used to efficiently absorb concentrated solar radiation at high tempera...
AbstractThis study examines experimentally the heat loss from a model solar cavity receiver. For thi...
Trabajo presentado al International Conference on Concentrating Solar Power and Chemical Energy Syst...
Using cavity receivers in the solar thermal towers as a solution to reduce the radiation losses from...
AbstractAs the main difficulty of modeling cavity receivers is determining natural convection heat l...
Correlations for natural convection heat loss from solar cavity receivers are widely based on isothe...
Abstract The convective heat losses of cavity receivers for solar thermal power towers are of great ...
In solar thermal power towers an array of mirrors reflect the sunlight to the top of a tower, where ...
AbstractNumerical three dimensional studies of forced convective heat loss from cavity receiver of d...
In solar thermal systems, especially for high concentration applications, natural convection contrib...
We investigated the forced convective heat loss from a model of a multi-MW cavity receiver of a conc...
Spherical cavity receiver of solar concentrator is made up of copper tubing material having cavity d...
Available online 6 May 2019The first systematic experimental study of the combined influences of win...
In solar thermal systems, especially for high concentration applications, natural convection and rad...
The influence of wind on the convective losses of cavity receivers for solar power towers was analyz...
Open cavity receivers can be used to efficiently absorb concentrated solar radiation at high tempera...
AbstractThis study examines experimentally the heat loss from a model solar cavity receiver. For thi...
Trabajo presentado al International Conference on Concentrating Solar Power and Chemical Energy Syst...
Using cavity receivers in the solar thermal towers as a solution to reduce the radiation losses from...
AbstractAs the main difficulty of modeling cavity receivers is determining natural convection heat l...
Correlations for natural convection heat loss from solar cavity receivers are widely based on isothe...
Abstract The convective heat losses of cavity receivers for solar thermal power towers are of great ...
In solar thermal power towers an array of mirrors reflect the sunlight to the top of a tower, where ...
AbstractNumerical three dimensional studies of forced convective heat loss from cavity receiver of d...
In solar thermal systems, especially for high concentration applications, natural convection contrib...
We investigated the forced convective heat loss from a model of a multi-MW cavity receiver of a conc...
Spherical cavity receiver of solar concentrator is made up of copper tubing material having cavity d...
Available online 6 May 2019The first systematic experimental study of the combined influences of win...
In solar thermal systems, especially for high concentration applications, natural convection and rad...
The influence of wind on the convective losses of cavity receivers for solar power towers was analyz...
Open cavity receivers can be used to efficiently absorb concentrated solar radiation at high tempera...