Solar Parabolic Trough Collectors (PTCs) are currently used for the production of electricity and applications with relatively higher temperatures. A heat transfer fluid circulates through a metal tube (receiver) with an external selective surface that absorbs solar radiation reflected from the mirror surfaces of the PTC. In order to reduce the heat losses, the receiver is covered by an envelope and the enclosure is usually kept under vacuum pressure. The heat transfer and optical analysis of the PTC is essential to optimize and understand its performance under different operating conditions. In this paper a detailed one dimensional numerical heat transfer analysis of a PTC is performed. The receiver and envelope were divided into several s...
The heat loss of a receiver in a parabolic trough collector plays an important role in collector per...
AbstractThe increase trend in fuel price coupled with escalating carbon dioxide concentration and en...
Concentrated solar power has great potential for large scale renewable energy sources, and is curren...
Solar energy utilization is a promising Renewable Energy source for covering a variety of energy nee...
Parabolic trough solar collector is the most proven industry-scale solar generation technology today...
This paper presents an analysis of the performance of a parabolic trough collector (PTC) according t...
Solar evacuated receiver as a key part of parabolic trough collector (PTC) suffers considerable heat...
AbstractSolar energy utilization is a promising Renewable Energy source for covering a variety of en...
International audienceIn this study, the parabolic trough collector's (PTC) performance is analyzed....
By year 2030, the world's energy demand is expected to increase by over 60% of current demand. Thus,...
High collecting temperature in parabolic trough collectors (PTCs) induces considerable radiative hea...
A tubular cavity-receiver that uses air as the heat transfer fluid is evaluated numerically using a ...
© Springer Nature Singapore Pte Ltd. 2018. A parabolic trough collector (PTC) is the most proven con...
The objectif of the present work is to determinate the potential of the solar parabolic trough colle...
Solar thermal energy has undergone major development in recent years. The most widely used technolo...
The heat loss of a receiver in a parabolic trough collector plays an important role in collector per...
AbstractThe increase trend in fuel price coupled with escalating carbon dioxide concentration and en...
Concentrated solar power has great potential for large scale renewable energy sources, and is curren...
Solar energy utilization is a promising Renewable Energy source for covering a variety of energy nee...
Parabolic trough solar collector is the most proven industry-scale solar generation technology today...
This paper presents an analysis of the performance of a parabolic trough collector (PTC) according t...
Solar evacuated receiver as a key part of parabolic trough collector (PTC) suffers considerable heat...
AbstractSolar energy utilization is a promising Renewable Energy source for covering a variety of en...
International audienceIn this study, the parabolic trough collector's (PTC) performance is analyzed....
By year 2030, the world's energy demand is expected to increase by over 60% of current demand. Thus,...
High collecting temperature in parabolic trough collectors (PTCs) induces considerable radiative hea...
A tubular cavity-receiver that uses air as the heat transfer fluid is evaluated numerically using a ...
© Springer Nature Singapore Pte Ltd. 2018. A parabolic trough collector (PTC) is the most proven con...
The objectif of the present work is to determinate the potential of the solar parabolic trough colle...
Solar thermal energy has undergone major development in recent years. The most widely used technolo...
The heat loss of a receiver in a parabolic trough collector plays an important role in collector per...
AbstractThe increase trend in fuel price coupled with escalating carbon dioxide concentration and en...
Concentrated solar power has great potential for large scale renewable energy sources, and is curren...