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Fatigue Implications of Growth in Heavy Vehicle Loads and Numbers on Steel Bridges

 Fatigue Implications of Growth in Heavy Vehicle Loads and Numbers on Steel Bridges
Autor(en): , , ,
Beitrag für IABSE Symposium: Sustainable Infrastructure - Environment Friendly, Safe and Resource Efficient, Bangkok, Thailand, 9-11 September 2009, veröffentlicht in , S. 11-44
DOI: 10.2749/222137809796088431
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It is known that 75% of the total Australian road freight task passes through NSW and the Pacific Highway is a major recipient of this freight. There are numerous crossings of major rivers between ...
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Autor(en):



Medium: Tagungsbeitrag
Sprache(n): Englisch
Tagung: IABSE Symposium: Sustainable Infrastructure - Environment Friendly, Safe and Resource Efficient, Bangkok, Thailand, 9-11 September 2009
Veröffentlicht in:
Seite(n): 11-44 Anzahl der Seiten (im PDF): 34
Seite(n): 11-44
Anzahl der Seiten (im PDF): 34
Jahr: 2009
DOI: 10.2749/222137809796088431
Abstrakt:

It is known that 75% of the total Australian road freight task passes through NSW and the Pacific Highway is a major recipient of this freight. There are numerous crossings of major rivers between Newcastle and the Queensland border and until the late 1960’s, steel bridges were preferred as lift spans could be easily incorporated in the design.

Over the past 10-15 years, heavy vehicle numbers using the Pacific Highway have increased dramatically, with a stepwise increase in 2001 and exponential growth of about 2% per year otherwise. This growth has been matched by a parallel exponential growth in loads and an even faster growth in axle group repetitions due to the greater utilisation of B-doubles and tri-axle semi-trailers.

Three bridges along the Pacific Highway were investigated using a structural dynamics based approach. The investigation revealed numerous compression/tension stress reversals for each heavy vehicle transit. Whilst the dynamic amplification factor (DAF) for a single controlled heavy vehicle transit was comparable with current Codes, the load effect for fatigue from uncontrolled heavy vehicle traffic significantly exceeds the value which would be predicted using the test vehicle factored for dynamic effects and multiple presence.

Stichwörter:
Finite-Elemente-Methode (FEM) FEM Modalanalyse Dämpfung Stahlfachwerkbrücke