This paper describes design and optimization of a Waste Heat Recovery Unit (WHRU) for a power cycle which uses CO2 as a working fluid. This system is designed for offshore installation to increase gas turbine efficiency by recovering waste heat from the exhaust for production of additional power. Due to severe constraints on weight and space in an offshore setting, it is essential to reduce size and weight of the equipment to a minimum. Process simulations are performed to optimize the geometry of the WHRU using different objective functions and thermal-hydraulic models. The underlying heat exchanger model used in the simulations is an in-house model that includes the calculation of weight and volume for frame and structure for the casing i...
On a typical oil and gas platform, mechanical equipment units are integral parts of the topside proc...
The aim of this project is to select appropriate heat exchangers out of available gas-gas heat excha...
Organic Rankine Cycle (ORC) thermodynamic optimization is of critical importance while developing ne...
This paper describes design and optimization of a Waste Heat Recovery Unit (WHRU) for a power cycle ...
The U.S. Navy is looking to conserve energy on shore and at sea. As a contribution to the ongoing ef...
A simple recuperated cycle is studied and optimized in thispaper. Geometrical parameters for a novel...
This paper focuses on the potential of supercritical carbon dioxide closed cycle for waste heat reco...
The purpose of this thesis was to design and demonstrate the effectiveness of a new style of heat ex...
This article aims at finding the most suitable waste heat recovery technology for existing and futur...
It is estimated that in the United States alone, enough energy is wasted in industrial applications ...
This paper aims at finding the optimal design of MW-size organic Rankine cycles by employing the mul...
Improved energy efficiency is an issue of increasing importance in offshore oil and gas installation...
Around the world the implementation of heat recovery systems play an increasingly important role in ...
Even in nowadays engines which can reach 45% of efficiency a high amount of energy is released as he...
This study applies three methods for design of Rankine cycles utilizing waste heat in the oil and ga...
On a typical oil and gas platform, mechanical equipment units are integral parts of the topside proc...
The aim of this project is to select appropriate heat exchangers out of available gas-gas heat excha...
Organic Rankine Cycle (ORC) thermodynamic optimization is of critical importance while developing ne...
This paper describes design and optimization of a Waste Heat Recovery Unit (WHRU) for a power cycle ...
The U.S. Navy is looking to conserve energy on shore and at sea. As a contribution to the ongoing ef...
A simple recuperated cycle is studied and optimized in thispaper. Geometrical parameters for a novel...
This paper focuses on the potential of supercritical carbon dioxide closed cycle for waste heat reco...
The purpose of this thesis was to design and demonstrate the effectiveness of a new style of heat ex...
This article aims at finding the most suitable waste heat recovery technology for existing and futur...
It is estimated that in the United States alone, enough energy is wasted in industrial applications ...
This paper aims at finding the optimal design of MW-size organic Rankine cycles by employing the mul...
Improved energy efficiency is an issue of increasing importance in offshore oil and gas installation...
Around the world the implementation of heat recovery systems play an increasingly important role in ...
Even in nowadays engines which can reach 45% of efficiency a high amount of energy is released as he...
This study applies three methods for design of Rankine cycles utilizing waste heat in the oil and ga...
On a typical oil and gas platform, mechanical equipment units are integral parts of the topside proc...
The aim of this project is to select appropriate heat exchangers out of available gas-gas heat excha...
Organic Rankine Cycle (ORC) thermodynamic optimization is of critical importance while developing ne...