Concentrating the solar energy is a well-known technique for increasing the working temperatures of solar collectors while maintaining high conversion efficiencies. In the industrial and residential sectors medium temperature solar collectors (80-250°C) are gaining more and more interest for power production and absorption cycle applications. In the present paper the attention is focused on the design and testing of a solar collector where a high performance evacuated tube is coupled with a Compound Parabolic Concentrator. The design of the solar mirror is carried out by imposing a series of constraints related to a broad acceptance angle (about 30°), reduced mirror height, possibility to employ a displaced tubular receiver. The mirror su...
AbstractNonimaging optics has been playing an important role in both tracking and non-tracking devic...
Low- and medium-temperature industrial process heat demand represents a significant proportion of th...
The utilization of solar radiation to obtain high-temperature heat can be realized by multiplying it...
Concentrating the solar energy is a well-known technique for increasing the working temperatures of ...
Medium temperature solar thermal applications have received remarkable interest in the recent years ...
The design of solar concentrating collectors for the effective utilization of solar energy is a chal...
Work on the development of Compound Parabolic Concentrators (CPC) is described. A tenfold concentrat...
Imaging type concentrating solar collectors need very accurate and continuous tracking mechanisms to...
One of the most important goals on solar collector development is to increase the system’s annual pe...
The compound parabolic concentrator is a non-imaging concentrator that can concentrate solar radiati...
The development of nonimaging solar collectors for heating and cooling applications is reported. A t...
AbstractSolar collector is an important component of solar hot water system. The purpose of this res...
A high performance Compound Parabolic Concertator (CPC) collector is presented. It comprises dewar t...
This study presents the geometric aspects of the focal image for a solar parabolic concentrator (SPC...
Abstract -Parabolic trough collectors are used for industrial applications in a temperature range 15...
AbstractNonimaging optics has been playing an important role in both tracking and non-tracking devic...
Low- and medium-temperature industrial process heat demand represents a significant proportion of th...
The utilization of solar radiation to obtain high-temperature heat can be realized by multiplying it...
Concentrating the solar energy is a well-known technique for increasing the working temperatures of ...
Medium temperature solar thermal applications have received remarkable interest in the recent years ...
The design of solar concentrating collectors for the effective utilization of solar energy is a chal...
Work on the development of Compound Parabolic Concentrators (CPC) is described. A tenfold concentrat...
Imaging type concentrating solar collectors need very accurate and continuous tracking mechanisms to...
One of the most important goals on solar collector development is to increase the system’s annual pe...
The compound parabolic concentrator is a non-imaging concentrator that can concentrate solar radiati...
The development of nonimaging solar collectors for heating and cooling applications is reported. A t...
AbstractSolar collector is an important component of solar hot water system. The purpose of this res...
A high performance Compound Parabolic Concertator (CPC) collector is presented. It comprises dewar t...
This study presents the geometric aspects of the focal image for a solar parabolic concentrator (SPC...
Abstract -Parabolic trough collectors are used for industrial applications in a temperature range 15...
AbstractNonimaging optics has been playing an important role in both tracking and non-tracking devic...
Low- and medium-temperature industrial process heat demand represents a significant proportion of th...
The utilization of solar radiation to obtain high-temperature heat can be realized by multiplying it...