Design and optimization of standardized organic Rankine cycle power plant for European conditions

RES Master´s Thesis Verkefnið er unnið í tengslum við Háskóla Íslands og Háskólann á Akureyri This paper investigates the possibility of introducing universally designed binary power plants into European energy markets. ORC cycles are found to be particularly useful not only for the production of el...

Full description

Bibliographic Details
Main Author: Lukawski, Maciej
Other Authors: Háskólinn á Akureyri
Format: Thesis
Language:English
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/1946/7113
id ftskemman:oai:skemman.is:1946/7113
record_format openpolar
spelling ftskemman:oai:skemman.is:1946/7113 2023-05-15T13:08:32+02:00 Design and optimization of standardized organic Rankine cycle power plant for European conditions Lukawski, Maciej Háskólinn á Akureyri 2009-02 application/pdf http://hdl.handle.net/1946/7113 en eng http://hdl.handle.net/1946/7113 RES. The School for Renewable Energy Science Renewable energy sources Orkumál Meistaraprófsritgerðir Jarðhitarannsóknir Raforka Endurnýjanleg orka Thesis Master's 2009 ftskemman 2022-12-11T06:52:20Z RES Master´s Thesis Verkefnið er unnið í tengslum við Háskóla Íslands og Háskólann á Akureyri This paper investigates the possibility of introducing universally designed binary power plants into European energy markets. ORC cycles are found to be particularly useful not only for the production of electricity from geothermal water, but also for the recovery of waste heat from engine exhaust gasses, furnaces and drying ovens. In this dissertation, an analysis of market demand and thermodynamic characteristics of different heat sources is performed in order to find an optimal set of design boundary conditions maximizing unit performance for the most promising types of applications. A thermodynamic model of a power plant using a wet mechanical-draft cooling tower is created in EES software and a detailed analysis of component configuration and parameters of working fluids is carried out. Optimal plant configuration and size of components is found by thermoeconomic optimization. Exergy flow rates of all streams in the system as well as rates of exergy destruction and loss are quantified. Detailed economic analysis of the unit is made for four different applications: geothermal plants using water from conventional hydrothermal wells, former oil and gas boreholes, waste heat recovery plants coupled with diesel engines, and a clinker cooler in a cement plant. Finally, a sensitivity analysis shows the impact that changes in heat source characteristics and macroeconomic variables have on levelized cost of power. Thesis Akureyri Akureyri Akureyri Skemman (Iceland) Akureyri
institution Open Polar
collection Skemman (Iceland)
op_collection_id ftskemman
language English
topic RES. The School for Renewable Energy Science
Renewable energy sources
Orkumál
Meistaraprófsritgerðir
Jarðhitarannsóknir
Raforka
Endurnýjanleg orka
spellingShingle RES. The School for Renewable Energy Science
Renewable energy sources
Orkumál
Meistaraprófsritgerðir
Jarðhitarannsóknir
Raforka
Endurnýjanleg orka
Lukawski, Maciej
Design and optimization of standardized organic Rankine cycle power plant for European conditions
topic_facet RES. The School for Renewable Energy Science
Renewable energy sources
Orkumál
Meistaraprófsritgerðir
Jarðhitarannsóknir
Raforka
Endurnýjanleg orka
description RES Master´s Thesis Verkefnið er unnið í tengslum við Háskóla Íslands og Háskólann á Akureyri This paper investigates the possibility of introducing universally designed binary power plants into European energy markets. ORC cycles are found to be particularly useful not only for the production of electricity from geothermal water, but also for the recovery of waste heat from engine exhaust gasses, furnaces and drying ovens. In this dissertation, an analysis of market demand and thermodynamic characteristics of different heat sources is performed in order to find an optimal set of design boundary conditions maximizing unit performance for the most promising types of applications. A thermodynamic model of a power plant using a wet mechanical-draft cooling tower is created in EES software and a detailed analysis of component configuration and parameters of working fluids is carried out. Optimal plant configuration and size of components is found by thermoeconomic optimization. Exergy flow rates of all streams in the system as well as rates of exergy destruction and loss are quantified. Detailed economic analysis of the unit is made for four different applications: geothermal plants using water from conventional hydrothermal wells, former oil and gas boreholes, waste heat recovery plants coupled with diesel engines, and a clinker cooler in a cement plant. Finally, a sensitivity analysis shows the impact that changes in heat source characteristics and macroeconomic variables have on levelized cost of power.
author2 Háskólinn á Akureyri
format Thesis
author Lukawski, Maciej
author_facet Lukawski, Maciej
author_sort Lukawski, Maciej
title Design and optimization of standardized organic Rankine cycle power plant for European conditions
title_short Design and optimization of standardized organic Rankine cycle power plant for European conditions
title_full Design and optimization of standardized organic Rankine cycle power plant for European conditions
title_fullStr Design and optimization of standardized organic Rankine cycle power plant for European conditions
title_full_unstemmed Design and optimization of standardized organic Rankine cycle power plant for European conditions
title_sort design and optimization of standardized organic rankine cycle power plant for european conditions
publishDate 2009
url http://hdl.handle.net/1946/7113
geographic Akureyri
geographic_facet Akureyri
genre Akureyri
Akureyri
Akureyri
genre_facet Akureyri
Akureyri
Akureyri
op_relation http://hdl.handle.net/1946/7113
_version_ 1766095730526650368