Avancerad sökning

Hittade 3 uppsatser som matchar ovanstående sökkriterier.

  1. 1. Numerical and experimental dynamic analyses of Hägernäs pedestrian bridge : Including seasonal effects

    Master-uppsats, KTH/Bro- och stålbyggnad

    Författare :AIDA IBISEVIC; HASANHÜSEYIN UGUR; [2019]
    Nyckelord :Pedestrian Timber Arch Bridge; Seasonal Effect; Modal Analysis; Dynamic Analysis; Finite Element Method; Experiments vi;

    Sammanfattning : Wood as a construction material has in recent years increased, in particular concerningpedestrian bridges. By utilizing wood, the ecological footprint can be reduced,and the material can be designed to comply with the increasing aesthetic demandbridge designers are facing. LÄS MER

  2. 2. Numerical and experimental dynamic analyses of the Vega Pedestrian bridge including seasonal effects

    Master-uppsats, KTH/Bro- och stålbyggnad

    Författare :John Hallak Neilson; [2019]
    Nyckelord :;

    Sammanfattning : As timber structures become increasingly relevant and sought after – since they enable improvements in building time while reducing a structure’s life cycle impacts – streamlining their design can have meaningful economic and environmental implications.For timber footbridges, its design is frequently governed by serviceability criteria linked to excessive vibrations. LÄS MER

  3. 3. Numerical and experimental dynamic analyses of the Vega Pedestrian bridge including seasonal effects

    Master-uppsats, KTH/Bro- och stålbyggnad

    Författare :John Peter Hallak Neilson; [2019]
    Nyckelord :Structural dynamics; Timber structures; Seasonal effects; Asphalt; Footbridges; Arch bridges; Dynamic analysis;

    Sammanfattning : As timber structures become increasingly relevant and sought after – since they enable improvements in building time while reducing a structure’s life cycle impacts – streamlining their design can have meaningful economic and environmental implications. For timber footbridges, its design is frequently governed by serviceability criteria linked to excessive vibrations. LÄS MER