LIVSCYKELKOSTNAD (LCC) : En jämförelse mellan en tvärspänd plattbro i limträ och en samverkansbro

This essay is a bachelor thesis written for the Degree Program in Constructional Engineering and Design at The Royal Institute of Technology (KTH). This thesis was an assignment given by WSP Sweden and their bridge and water department. The purpose of this report is to conduct an examination on the...

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Main Authors: El Ladki, Inaya, Gümüs, Leylafer
Format: Others
Language:Swedish
Published: KTH, Byggvetenskap 2018
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-231823
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spelling ndltd-UPSALLA1-oai-DiVA.org-kth-2318232020-11-05T05:29:32ZLIVSCYKELKOSTNAD (LCC) : En jämförelse mellan en tvärspänd plattbro i limträ och en samverkansbrosweLIFE CYCLE COST (LCC) : A comparison between a prestressed glulam deck bridge and a composite bridgeEl Ladki, InayaGümüs, LeylaferKTH, ByggvetenskapKTH, Byggvetenskap2018OverpassStress Laminated Timber Bridge DeckComposite BridgeLife Cycle Cost (LCC)Cost of InvestmentCost of MaintenanceCost of OperatingCost of DemolitionLCC CalculationCivil EngineeringSamhällsbyggnadsteknikThis essay is a bachelor thesis written for the Degree Program in Constructional Engineering and Design at The Royal Institute of Technology (KTH). This thesis was an assignment given by WSP Sweden and their bridge and water department. The purpose of this report is to conduct an examination on the Life Cycle Cost (LCC) on a prestressed glulam deck bridge and a composite bridge in the early stages of the design phase. This report illuminates the factors that are most crucial in a LCC-calculation for the selected overpasses, and provides an overview regarding which overpass is most efficient from an economic standpoint. The LCC has been calculated based on an 80-year lifespan for the prestressed glulam deck bridge and a 120-year lifespan for the composite bridge. The cost of investment, operating, maintaining and finally the demolition cost was all considered as well. The bridge works that were examined are real life projects in an early stage of the design phase with plans to be built. In the results, the LCC-analysis shows a clear difference in life cycle costs between the prestressed glulam deck bridge and the composite bridge and show that the cost of investment is the most decisive cost during the bridges’ lifespans. The LCC-calculations show that the total life cycle cost for a prestressed glulam deck bridge is higher than the composite bridges’ total life cycle cost. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-231823TRITA-ABE-MBT ; 1851application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language Swedish
format Others
sources NDLTD
topic Overpass
Stress Laminated Timber Bridge Deck
Composite Bridge
Life Cycle Cost (LCC)
Cost of Investment
Cost of Maintenance
Cost of Operating
Cost of Demolition
LCC Calculation
Civil Engineering
Samhällsbyggnadsteknik
spellingShingle Overpass
Stress Laminated Timber Bridge Deck
Composite Bridge
Life Cycle Cost (LCC)
Cost of Investment
Cost of Maintenance
Cost of Operating
Cost of Demolition
LCC Calculation
Civil Engineering
Samhällsbyggnadsteknik
El Ladki, Inaya
Gümüs, Leylafer
LIVSCYKELKOSTNAD (LCC) : En jämförelse mellan en tvärspänd plattbro i limträ och en samverkansbro
description This essay is a bachelor thesis written for the Degree Program in Constructional Engineering and Design at The Royal Institute of Technology (KTH). This thesis was an assignment given by WSP Sweden and their bridge and water department. The purpose of this report is to conduct an examination on the Life Cycle Cost (LCC) on a prestressed glulam deck bridge and a composite bridge in the early stages of the design phase. This report illuminates the factors that are most crucial in a LCC-calculation for the selected overpasses, and provides an overview regarding which overpass is most efficient from an economic standpoint. The LCC has been calculated based on an 80-year lifespan for the prestressed glulam deck bridge and a 120-year lifespan for the composite bridge. The cost of investment, operating, maintaining and finally the demolition cost was all considered as well. The bridge works that were examined are real life projects in an early stage of the design phase with plans to be built. In the results, the LCC-analysis shows a clear difference in life cycle costs between the prestressed glulam deck bridge and the composite bridge and show that the cost of investment is the most decisive cost during the bridges’ lifespans. The LCC-calculations show that the total life cycle cost for a prestressed glulam deck bridge is higher than the composite bridges’ total life cycle cost.
author El Ladki, Inaya
Gümüs, Leylafer
author_facet El Ladki, Inaya
Gümüs, Leylafer
author_sort El Ladki, Inaya
title LIVSCYKELKOSTNAD (LCC) : En jämförelse mellan en tvärspänd plattbro i limträ och en samverkansbro
title_short LIVSCYKELKOSTNAD (LCC) : En jämförelse mellan en tvärspänd plattbro i limträ och en samverkansbro
title_full LIVSCYKELKOSTNAD (LCC) : En jämförelse mellan en tvärspänd plattbro i limträ och en samverkansbro
title_fullStr LIVSCYKELKOSTNAD (LCC) : En jämförelse mellan en tvärspänd plattbro i limträ och en samverkansbro
title_full_unstemmed LIVSCYKELKOSTNAD (LCC) : En jämförelse mellan en tvärspänd plattbro i limträ och en samverkansbro
title_sort livscykelkostnad (lcc) : en jämförelse mellan en tvärspänd plattbro i limträ och en samverkansbro
publisher KTH, Byggvetenskap
publishDate 2018
url http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-231823
work_keys_str_mv AT elladkiinaya livscykelkostnadlccenjamforelsemellanentvarspandplattbroilimtraochensamverkansbro
AT gumusleylafer livscykelkostnadlccenjamforelsemellanentvarspandplattbroilimtraochensamverkansbro
AT elladkiinaya lifecyclecostlccacomparisonbetweenaprestressedglulamdeckbridgeandacompositebridge
AT gumusleylafer lifecyclecostlccacomparisonbetweenaprestressedglulamdeckbridgeandacompositebridge
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