A novel integrated system based on solid oxide fuel cells (SOFCs), a gas turbine (GT), the steam Rankine cycle (SRC), the Kalina cycle (KC), and the organic Rankine cycle (ORC) is proposed to achieve cascade energy utilization. Mathematical models are introduced and system performance is analyzed using energy and exergy methods. The first and second laws of thermodynamics are used to analyze the system thermodynamically. In addition, exergy destruction and losses of the various integrated subsystems are calculated. The energy and exergy efficiencies of the multigeneration system are estimated to be 60.4% and 57.3%, respectively. In addition, the hot water produced during the waste heat recovery process may also be used for accommodating sea...
In this study we propose a novel integrated charcoal gasification and solid oxide fuel cell (SOFC) s...
The thermodynamic performance of a regenerative organic Rankine cycle that utilizes low temperature ...
In order to develop clean and efficient energy conversion technology, a novel combined cooling, heat...
In this paper, a new integrated system of solid oxide fuel cell (SOFC)–gas turbine (GT)–steam Rankin...
An exergy analysis of a novel integrated power system is represented in this study. A Solid Oxide Fu...
A novel maritime power system that uses methanol solid oxide fuel cells (SOFCs) to power marine vess...
A feasible solid oxide fuel cell–gas turbine–organic Rankine cycle (SOFC-GT-ORC) hybrid system for a...
Energy and exergy performance of ammonia fuelled solid oxide fuel cell (SOFC) integrated system in w...
A novel cooling, heating, and power system integrated with a solid oxide fuel cell and biomass gasif...
This paper examines the exergetic performance of a high-temperature solid oxide fuel cell (SOFC) com...
During operation, solid oxide fuel cell releases quite a great part of hydrogen energy into waste he...
In this research, a novel integration is presented to develop a hydrogen-based strategy solution for...
In this paper a small-scale combined heat, hydrogen and power (CHHP) system, in which ammonia is use...
The paper presents a combined system to be operated in ship power plants. The system consists of a s...
This study examines the performance of a high-temperature solid oxide fuel cell combined with a conv...
In this study we propose a novel integrated charcoal gasification and solid oxide fuel cell (SOFC) s...
The thermodynamic performance of a regenerative organic Rankine cycle that utilizes low temperature ...
In order to develop clean and efficient energy conversion technology, a novel combined cooling, heat...
In this paper, a new integrated system of solid oxide fuel cell (SOFC)–gas turbine (GT)–steam Rankin...
An exergy analysis of a novel integrated power system is represented in this study. A Solid Oxide Fu...
A novel maritime power system that uses methanol solid oxide fuel cells (SOFCs) to power marine vess...
A feasible solid oxide fuel cell–gas turbine–organic Rankine cycle (SOFC-GT-ORC) hybrid system for a...
Energy and exergy performance of ammonia fuelled solid oxide fuel cell (SOFC) integrated system in w...
A novel cooling, heating, and power system integrated with a solid oxide fuel cell and biomass gasif...
This paper examines the exergetic performance of a high-temperature solid oxide fuel cell (SOFC) com...
During operation, solid oxide fuel cell releases quite a great part of hydrogen energy into waste he...
In this research, a novel integration is presented to develop a hydrogen-based strategy solution for...
In this paper a small-scale combined heat, hydrogen and power (CHHP) system, in which ammonia is use...
The paper presents a combined system to be operated in ship power plants. The system consists of a s...
This study examines the performance of a high-temperature solid oxide fuel cell combined with a conv...
In this study we propose a novel integrated charcoal gasification and solid oxide fuel cell (SOFC) s...
The thermodynamic performance of a regenerative organic Rankine cycle that utilizes low temperature ...
In order to develop clean and efficient energy conversion technology, a novel combined cooling, heat...