The most effective way to reduce the use of fossil fuels for energy production is by employing renewable energy systems. From the various types of renewable energy sources, the mostly used one is solar energy. Especially for Cyprus, the ratio of direct to diffuse solar radiation is 70:30, and thus a parabolic trough collector system (PTC) would be the perfect system for thermal energy production for high temperatures. It is very important to focus on renewable energy systems for the industrial sector specifically since the industrial sector is the second largest fuel consumer in Cyprus. Thus, PTC systems for low temperature steam production can be used in several industries to reduce fuel consumption. In this work, initially, an investigat...
By year 2030, the world's energy demand is expected to increase by over 60% of current demand. Thus,...
This paper presents a validated TRNSYS model for a thermodynamic plant with parabolic trough solar t...
Concentrated solar power plants or solar thermal electricity plants, respectively, use mirrors to co...
The most effective way to reduce the use of fossil fuels for energy production is by employing renew...
The industrial sector is one of the biggest oil consumers in Cyprus, corresponding to 20% of the fue...
Published AIP Conference Proceedings, 2019, Volume 2126, Article number 150007Parabolic trough colle...
A total of 94 % of the energy demand in Cyprus is covered by consuming fossil fuels. Sectors such as...
The thermal utilization of solar energy is usually confined to domestic hot water systems and somewh...
In this paper an attempt has been made towards the design and evaluation of a solar parabo...
In this paper an attempt has been made towards the design and evaluation of a solar parabo...
In this paper an attempt has been made towards the design and evaluation of a solar parabo...
In this paper an attempt has been made towards the design and evaluation of a solar parabo...
In this paper an attempt has been made towards the design and evaluation of a solar parabolic trough...
The slogan “Heat is half” is of importance to keep in mind that nearly 50 % of the final energy use ...
The slogan “Heat is half” is of importance to keep in mind that nearly 50 % of the final energy use ...
By year 2030, the world's energy demand is expected to increase by over 60% of current demand. Thus,...
This paper presents a validated TRNSYS model for a thermodynamic plant with parabolic trough solar t...
Concentrated solar power plants or solar thermal electricity plants, respectively, use mirrors to co...
The most effective way to reduce the use of fossil fuels for energy production is by employing renew...
The industrial sector is one of the biggest oil consumers in Cyprus, corresponding to 20% of the fue...
Published AIP Conference Proceedings, 2019, Volume 2126, Article number 150007Parabolic trough colle...
A total of 94 % of the energy demand in Cyprus is covered by consuming fossil fuels. Sectors such as...
The thermal utilization of solar energy is usually confined to domestic hot water systems and somewh...
In this paper an attempt has been made towards the design and evaluation of a solar parabo...
In this paper an attempt has been made towards the design and evaluation of a solar parabo...
In this paper an attempt has been made towards the design and evaluation of a solar parabo...
In this paper an attempt has been made towards the design and evaluation of a solar parabo...
In this paper an attempt has been made towards the design and evaluation of a solar parabolic trough...
The slogan “Heat is half” is of importance to keep in mind that nearly 50 % of the final energy use ...
The slogan “Heat is half” is of importance to keep in mind that nearly 50 % of the final energy use ...
By year 2030, the world's energy demand is expected to increase by over 60% of current demand. Thus,...
This paper presents a validated TRNSYS model for a thermodynamic plant with parabolic trough solar t...
Concentrated solar power plants or solar thermal electricity plants, respectively, use mirrors to co...