NESTER, RYAN TIMOTHY. Organic Rankine Cycles: A Comparative Study and Analysis of Multiple Applications.

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NESTER, RYAN TIMOTHY. Organic Rankine Cycles: A Comparative Study and Analysis of Multiple Applications. ( nester-ryan-timothy-organic-rankine-cycles-comparative-study )

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The biggest savings can be seen in the manufacturing industry since the electricity produced can directly be used in the facility and the electricity does not need to be transmitted anywhere. When used in the manufacturing industry the electricity produced also greatly reduces the facility’s demand since more electricity will be produced when the boilers or kilns are being fired at full load. Solar thermal applications are also a big field for ORC’s because the solar thermal system is already producing hot water which means there are no extra costs for heat exchangers and the water can be pumped directly into the ORC. Advantages to the solar thermal applications are that if a facility uses a lot of hot water a system can be oversized for the facility’s need and the extra hot water can be used to run an ORC, which means the incentives are doubled since now the facility is implementing a solar thermal system and a micro turbine system. The application of prime movers is the least likely area for implementation because most large vehicles such as barges or trains do not have a large enough flow rate to support and ORC. Prime movers are also an unlikely choice for ORC’s because the exhaust is intermittent and dependent on the use of the vehicle. ORC’s can also be implemented in biomass plants that are exhausting directly to the atmosphere. ORC plants like this currently exist in Germany. The most common implementation of an ORC is in the solar thermal field, due to the free heating of water from the sun. The main issue with this application is that the system needs to remain pressurized so the water does not turn to steam before it enters the ORC. 14

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