A review of the use of organic Rankine cycle power systems for maritime applications

Обзор применения энергетических установок на основе органического цикла Ренкина в морском транспорте
Jesper Graa Andreasen, Fredrik Haglind, Ulrik Larsen, Leonardo Pierobon, María E. Mondéjar, Marcus Thern
2018-04-10

fuel savingslow-sulfur fuelsmaritime applicationsorganic Rankine cyclewaste heat recovery
Diesel engines are by far the most common means of propulsion aboard ships. It is estimated that around half of their fuel energy consumption is dissipated as low-grade heat. The organic Rankine cycle technology is a well-established solution for the energy conversion of thermal power from biomass combustion, geothermal reservoirs, and waste heat from industrial processes. However, its economic feasibility has not yet been demonstrated for marine applications. This paper aims at evaluating the potential of using organic Rankine cycle systems for waste heat recovery aboard ships. The suitable vessels and engine heat sources are identified by estimating the total recoverable energy. Different cycle architectures, working fluids, components, and control strategies are analyzed. The economic feasibility and integration on board are also evaluated. A number of research and development areas are identified in order to tackle the challenges limiting a widespread use of this technology in currently operating vessels and new-buildings. The results indicate that organic Rankine cycle units recovering heat from the exhaust gases of engines using low-sulfur fuels could yield fuel savings between 10% and 15%.
1
Approximately half of ship diesel engines’ fuel energy consumption is dissipated as low-grade heat, creating substantial waste-heat recovery potential.
2
Economic feasibility for marine applications has not yet been demonstrated, and onboard integration remains a significant challenge.
3
Organic Rankine cycle units recovering exhaust-gas heat from engines using low-sulfur fuels could achieve estimated fuel savings of 10%–15%.
4
The paper identifies research and development priorities needed to enable wider adoption in existing vessels and new-build ships.
5
The review evaluates organic Rankine cycle systems for maritime waste-heat recovery, including suitable vessels, engine heat sources, cycle architectures, working fluids, components, and control strategies.

organic Rankine cycle power systems for waste heat recovery aboard ships

their technical suitability, energy-recovery potential, economic feasibility, and onboard integration, including cycle architectures, working fluids, components, and control strategies

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2018-04-10
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Jesper Graa Andreasen
Fredrik Haglind
Ulrik Larsen
Leonardo Pierobon
María E. Mondéjar
Marcus Thern
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