There is an ever-growing need for clean renewable energy in modern day society. Currently, major developments are being made on Decentralised Power conversion systems that use renewable energy sources. The application of ORC radial-flow turbines in Decentralised Power conversion applications seems promising, however, application of this technology is still sparse due to the lack of knowledge of the design, resulting in an extensive duration of the design cycle. The purpose of this thesis, is to reduce the duration of the design cycle, which can lead to a faster transition towards Decentralised Power Generation to help meet the increasing energy demands.Aerospace Engineerin
High temperature Organic Rankine Cycles power systems of low power capacity, i.e. 3-50 kWe, are rece...
Organic Rankine cycle is one of the most efficient technologies that can utilize low-to-medium grade...
Here are gathered the different polynomial functions that estimate the performance of a small scale ...
In recent years, Organic Rankine Cycle (ORC) technology has received growing interests, thanks to it...
This thesis presents an investigation into the aerodynamic design and performance estimation of radi...
Here are gathered the different polynomial functions that estimate the performance of a small scale ...
Organic Rankine Cycle (ORC) plants are interesting systems for power production by Waste Heat Recove...
Organic Rankine Cycles (ORCs) are one of the technologies that can play an important role in the red...
This thesis is an investigation of different strategies for efficient development and optimization o...
Optimisation of organic Rankine cycles(ORCs for binary cycle applications could play a major role in...
Generating electricity from low grade waste heat resources can contribute to the energy mix required...
Distributed power generation making use of efficient technologies such as organic Rankine cycle (OR...
<p>Organic Rankine Cycle (ORC) is one of the most promising technology for small electric power gene...
Nowadays Organic Rankine Cycle (ORC) power systems are of paramount importance to exploit waste heat...
The growing environmental concerns has put a lot of political & ethical pressure on the conventi...
High temperature Organic Rankine Cycles power systems of low power capacity, i.e. 3-50 kWe, are rece...
Organic Rankine cycle is one of the most efficient technologies that can utilize low-to-medium grade...
Here are gathered the different polynomial functions that estimate the performance of a small scale ...
In recent years, Organic Rankine Cycle (ORC) technology has received growing interests, thanks to it...
This thesis presents an investigation into the aerodynamic design and performance estimation of radi...
Here are gathered the different polynomial functions that estimate the performance of a small scale ...
Organic Rankine Cycle (ORC) plants are interesting systems for power production by Waste Heat Recove...
Organic Rankine Cycles (ORCs) are one of the technologies that can play an important role in the red...
This thesis is an investigation of different strategies for efficient development and optimization o...
Optimisation of organic Rankine cycles(ORCs for binary cycle applications could play a major role in...
Generating electricity from low grade waste heat resources can contribute to the energy mix required...
Distributed power generation making use of efficient technologies such as organic Rankine cycle (OR...
<p>Organic Rankine Cycle (ORC) is one of the most promising technology for small electric power gene...
Nowadays Organic Rankine Cycle (ORC) power systems are of paramount importance to exploit waste heat...
The growing environmental concerns has put a lot of political & ethical pressure on the conventi...
High temperature Organic Rankine Cycles power systems of low power capacity, i.e. 3-50 kWe, are rece...
Organic Rankine cycle is one of the most efficient technologies that can utilize low-to-medium grade...
Here are gathered the different polynomial functions that estimate the performance of a small scale ...