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Zum Einfluss baulicher Randbedingungen auf das dynamische Verhalten von WIB-Eisenbahnbrücken [Teil 2]

Numerische Untersuchungen und Bemessungsvorschläge

Author(s):





Medium: journal article
Language(s): German
Published in: Bautechnik, , n. 12, v. 87
Page(s): 751-760
DOI: 10.1002/bate.201010049
Abstract:

On the influence of constructional elements on the dynamic behaviour of filler beam railway bridges.

Enhancements of the European railway system are amongst other things mainly characterized by increased usage of high speed trains and significantly raised operating speeds. To predict effects of train loading on railway bridges for a dynamic design adequately, knowledge of the system's significant dynamic characteristics is required. Only this ensures that resonance effects, which generally cannot be screened out for high speeds, can be covered analytically by reliable values. Measurements especially carried out on filler beam bridges have shown though that a realistic estimation of eigenfrequencies of bridges is difficult. Actual values and measured ones differ significantly in many cases. In particular non-consideration of structural constraints is seen as reason for this, given that they have an immense effect on a bridge's stiffness and damping characteristics. The first part of the contribution gave a brief survey on the dynamics of high-speed railway bridges. Furthermore results from measurements on filler beam railway decks were presented. In this second part of the contribution the influence of particular constructional elements on the dynamic behaviour of filler beam bridges is investigated, supported by numerical studies. Finally the main outcomes are discussed and proposals for an improved dynamic bridge design are made.

Keywords:
natural frequencies numeric analysis
Available from: Refer to publisher
Structurae cannot make the full text of this publication available at this time. The full text can be accessed through the publisher via the DOI: 10.1002/bate.201010049.
  • About this
    data sheet
  • Reference-ID
    10063932
  • Published on:
    22/12/2010
  • Last updated on:
    30/09/2018
 
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