WORKING FLUID SELECTION AND DESIGN OF SMALL-SCALE WASTE HEAT RECOVERY SYSTEMS BASED ON ORGANIC RANKINE CYCLES

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WORKING FLUID SELECTION AND DESIGN OF SMALL-SCALE WASTE HEAT RECOVERY SYSTEMS BASED ON ORGANIC RANKINE CYCLES ( working-fluid-selection-and-design-small-scale-waste-heat-re )

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Acknowledgements This thesis work was carried out at the Lappeenranta University of Technology Finland, in the Laboratory of Fluid Dynamics between years 2010 and 2014. The research was funded by the Finnish Graduate School in Computational Fluid Dynamics, LUT micro- ORC project, Finnish Cluster for Energy and Environment (Cleen Ltd.) FCEP-project, and Henry Ford Foundation. Part of the research was financed by the Finnish Funding Agency for Technology and Innovation (Tekes). I would like to express my sincere gratitude to Professor Jari Backman, Academy Re- search Fellow Teemu Turunen-Saaresti, and Professor Jaakko Larjola for guiding, super- vising, and offering the possibility to do this research. I would like to thank all the people at the Laboratory of Fluid Dynamics for interesting discussions and guidance during the years. Special thanks go to Associate Professors Aki Gro ̈nman and Ahti Jaatinen-Va ̈rri, and Researcher Juha Honkatukia for helping me to conduct this work. I would like to thank my reviewers Professor Martijn van den Broek and Professor Costante Invernizzi for their valuable and constructive comments during the review process that helped me to improve the quality of the work. I would also like to thank Professor Piero Colonna and his research group at TU Delft for all the help and guidance during my re- search exchange period in the Netherlands in 2012. Many thanks to Assistant Professor Alberto Guardone from Politecnico Di Milano for helping me in the research on super- sonic flows. Finally, I would like to thank my family Saila, Eetu, Timo, Seija, and Ville for supporting, listening, and encouraging me on this path. Without your help and support during these years it would have been impossible to conduct this work. Antti Uusitalo November 2014 Lappeenranta, Finland

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