Full Text Available

Note: Clicking the button above will open the full text document at the original institutional repository in a new window.

Analysis, design and manufacturing of solarised gas turbine compressor

Thesis (MEng)--Stellenbosch University

Saved in:
Bibliographic Details
Main Author: Schommarz, Timmo Marc
Other Authors: Von Backstrom, T. W.
Format: Thesis
Language:en_ZA
Published: Stellenbosch : Stellenbosch University 2019
Subjects:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1867613991555039232
access_status_str Open Access
author Schommarz, Timmo Marc
author2 Von Backstrom, T. W.
author_browse Schommarz, Timmo Marc
Von Backstrom, T. W.
author_facet Von Backstrom, T. W.
Schommarz, Timmo Marc
author_sort Schommarz, Timmo Marc
collection Thesis
dc_rights_str_mv Stellenbosch University
description Thesis (MEng)--Stellenbosch University
format Thesis
id oai:scholar.sun.ac.za:10019.1/106027
institution Stellenbosch University (South Africa)
language en_ZA
last_indexed 2026-06-10T12:44:55.985Z
license_str Other — see source repository
provenance_str_mv Harvested via OAI-PMH from SUNScholar — Stellenbosch University Repository
publishDate 2019
publishDateRange 2019
publishDateSort 2019
publisher Stellenbosch : Stellenbosch University
publisherStr Stellenbosch : Stellenbosch University
record_format dspace
source_str SUNScholar — Stellenbosch University Repository
spelling oai:scholar.sun.ac.za:10019.1/106027 Analysis, design and manufacturing of solarised gas turbine compressor Schommarz, Timmo Marc Von Backstrom, T. W. Stellenbosch University. Faculty of Engineering. Dept. of Mechanical and Mechatronic Engineering (CRSES) Centrifugal compressor Fnite element analysis Computational fluid dynamics Internal combustion engines -- Fluid dynamics -- Design International combustion engins -- Combustion -- Design UCTD Thesis (MEng)--Stellenbosch University ENGLISH ABSTRACT: An existing three-dimensional fluid mechanical design of a compressor is reviewed and compared to mean-line simulation results obtained using the Comp- Aero® compressor design code. Mean-line simulation results give a compressor total-to-static pressure ratio of 3.2. The three-dimensional CFD analysis performed using ANSYS CFX® calculates a total-to-static pressure ratio of 3.4. This is an increase of 31% from the pressure ratio of the currently installed compressor (2.6). ANSYS Mechanical® is used to perform finite element analyses for deformation, stress and vibrational behaviour. The maximum calculated axial deflection is 0.24 mm. The calculated maximum equivalent stress is 218 MPa. All vibration modes occur at frequencies higher than the operating speed of the compressor. The first damped frequency occurs at 837 Hz which represents and over-speed condition of 9.24%. Over-speed simulations to 110% operating speed calculate a maximum stress in the impeller of 264 MPa. This is 1.8 times less than the yield strength of Aluminium 7075 which was used to manufacture the part. Axial forces due to the increased outlet pressure of the compressor are calculated. The total load on the angular contact bearing increased from 376 N, as experienced with the old compressor, to 955 N when using the new compressor. The new impeller and diffuser are designed using the Autodesk Inventor® CAD program. The components are machined using five- and three-axis computer-aided milling. AFRIKAANSE OPSOMMING: n Vorige drie-dimensionele, vloei-meganiese ontwerp word hersien en met eendimensionele berekeninge vergelyk. Een-dimensionele berekeninge is met die CompAero® sagteware pakket gedoen en voorspel ’n totaal-tot-statiese drukverhouding van 3.2. Die drie-dimensionele berekenig is met ANSYS CFX® gedoen en voorspel ’n totaal-tot-statiese drukverhouding van 3.4. Die drukverhouding word met 31% verbeter vanaf die van die kompressor wat huidiglik gebruik word (2.6). ANSYS Mechanical® is gebruik om strukturele analises vir vervorming, spanning en vibrasie uit te voer. Die grootste aksiale vervorming is 0.24 mm. Die grootste spanning word bereken as 218 MPa. Alle modes van vibrasie is hoër as die ontwerpspoed van die kompressorrotor. Die eerste gedempte mode verskyn by 837 Hz wat gelyk is aan ’n oor-spoed toestand van 9.24%. Oor-spoed berekeninge tot en met 110% ontwerpsspoed bereken ’n maksimum spanning van 264 MPa. Hierdie spanning is 1.8 keer kleiner as die swik-krag van Aluminium 7075. Die totale las op die aksiale laër verhoog van 376 N, soos bereken met die ou kompressor, na 955 N as gevolg van die styging in druk. Die nuwe rotor and stator is in Autodesk Inventor® ontwerp en vervaardig met vyf- en drie-as rekenaar-ondersteunde masjienering. 2019-02-27T12:06:59Z 2019-04-17T08:24:17Z 2019-02-27T12:06:59Z 2019-04-17T08:24:17Z 2019-04 Thesis http://hdl.handle.net/10019.1/106027 en_ZA Stellenbosch University xiii, 114 pages : illustrations application/pdf Stellenbosch : Stellenbosch University
spellingShingle Centrifugal compressor
Fnite element analysis
Computational fluid dynamics
Internal combustion engines -- Fluid dynamics -- Design
International combustion engins -- Combustion -- Design
UCTD
Schommarz, Timmo Marc
Analysis, design and manufacturing of solarised gas turbine compressor
title Analysis, design and manufacturing of solarised gas turbine compressor
title_full Analysis, design and manufacturing of solarised gas turbine compressor
title_fullStr Analysis, design and manufacturing of solarised gas turbine compressor
title_full_unstemmed Analysis, design and manufacturing of solarised gas turbine compressor
title_short Analysis, design and manufacturing of solarised gas turbine compressor
title_sort analysis design and manufacturing of solarised gas turbine compressor
topic Centrifugal compressor
Fnite element analysis
Computational fluid dynamics
Internal combustion engines -- Fluid dynamics -- Design
International combustion engins -- Combustion -- Design
UCTD
url http://hdl.handle.net/10019.1/106027
work_keys_str_mv AT schommarztimmomarc analysisdesignandmanufacturingofsolarisedgasturbinecompressor