Design and Simulation of High-Speed Rotating Electrical Machinery
Kurvinen, Emil (2016-01-22)
Väitöskirja
Kurvinen, Emil
22.01.2016
Lappeenranta University of Technology
Acta Universitatis Lappeenrantaensis
Julkaisun pysyvä osoite on
https://urn.fi/URN:ISBN:978-952-265-918-7
https://urn.fi/URN:ISBN:978-952-265-918-7
Tiivistelmä
Global energy consumption has been increasing yearly and a big portion of it
is used in rotating electrical machineries. It is clear that in these machines
energy should be used efficiently. In this dissertation the aim is to improve the
design process of high-speed electrical machines especially from the mechanical
engineering perspective in order to achieve more reliable and efficient machines.
The design process of high-speed machines is challenging due to high demands and
several interactions between different engineering disciplines such as mechanical,
electrical and energy engineering. A multidisciplinary design flow chart for a
specific type of high-speed machine in which computer simulation is utilized is
proposed. In addition to utilizing simulation parallel with the design process, two
simulation studies are presented. The first is used to find the limits of two ball
bearing models. The second is used to study the improvement of machine load
capacity in a compressor application to exceed the limits of current machinery.
The proposed flow chart and simulation studies show clearly that improvements
in the high-speed machinery design process can be achieved. Engineers designing
in high-speed machines can utilize the flow chart and simulation results as a
guideline during the design phase to achieve more reliable and efficient machines
that use energy efficiently in required different operation conditions.
is used in rotating electrical machineries. It is clear that in these machines
energy should be used efficiently. In this dissertation the aim is to improve the
design process of high-speed electrical machines especially from the mechanical
engineering perspective in order to achieve more reliable and efficient machines.
The design process of high-speed machines is challenging due to high demands and
several interactions between different engineering disciplines such as mechanical,
electrical and energy engineering. A multidisciplinary design flow chart for a
specific type of high-speed machine in which computer simulation is utilized is
proposed. In addition to utilizing simulation parallel with the design process, two
simulation studies are presented. The first is used to find the limits of two ball
bearing models. The second is used to study the improvement of machine load
capacity in a compressor application to exceed the limits of current machinery.
The proposed flow chart and simulation studies show clearly that improvements
in the high-speed machinery design process can be achieved. Engineers designing
in high-speed machines can utilize the flow chart and simulation results as a
guideline during the design phase to achieve more reliable and efficient machines
that use energy efficiently in required different operation conditions.
Kokoelmat
- Väitöskirjat [1102]