Skip to main navigation Skip to search Skip to main content

Geographically Distributed Hybrid Testing of a Multi-Storey Timber Structure on Compliant Soil: Pilot Design

  • Ihsan Engin Bal
  • , Eleni Smyrou
  • , Stylianos Kallioras
  • , Kamer Özdemir
  • , Tansu Gökçe
  • , Adam Crewe
  • , George Mylonakis
  • , Roberto Tomasi
  • , Angelo Aloisio
  • , Solomon Tesfamariam
  • , Stathis Bousias
  • , Oh Sung Kwon
  • , Anastasios Sextos
  • University of Pavia, Department of Civil Engineering and Architecture
  • University of Bristol
  • Khalifa University
  • Norwegian University of Life Sciences
  • University of Waterloo
  • University of Patras
  • University of Toronto

Research output: Contribution to conferencePaperAcademic

Abstract

Timber construction is rapidly advancing in structural engineering due to its benefits, such as light weight, ease of prefabrication, and contribution to societal goals. With an increase in building height, however, knowledge garnered by coupling advance modelling and experimental testing will enable designers to push the boundary further. The ERIES-HYSTERESIS project will use geographically distributed hybrid testing to investigate energy dissipation characteristics and soil-structure interaction (SSI) responses of multi-story buildings constructed with mass timber. Testing large-scale timber structures with SSI considerations poses unique challenges, requiring an innovative hybrid testing methodology. Geographically distributed hybrid simulation involves designing a representative pilot structure and dividing it into subcomponents for simultaneous testing. This paper details the 3D design of the pilot structure, considering constraints required for hybrid testing. SSI is addressed as a critical factor, with the objective of identifying the hierarchy of failure between the soil, the wall-foundation connection and the hold-downs. A balance has been achieved between maintaining a realistic design and ensuring the experimental requirements remain within the capabilities of the involved laboratories.
Original languageEnglish
Pages170-181
Number of pages12
DOIs
Publication statusPublished - 31 Jul 2025
EventEngineering Research Infrastructures for European Synergies - Lisbon, Portugal
Duration: 7 May 20259 May 2025

Conference

ConferenceEngineering Research Infrastructures for European Synergies
Abbreviated titleERIES-IW2025
Country/TerritoryPortugal
CityLisbon
Period7/05/259/05/25

Keywords

  • Earthquake Loads
  • Hybrid Testing
  • Soil-structure Interaction
  • Timber Structures
  • Wind Loads

Research Focus Areas Hanze University of Applied Sciences * (mandatory by Hanze)

  • No Hanze research focus area applicable

Research Focus Areas Research Centre or Centre of Expertise * (mandatory by Hanze)

  • Earthquakes

Fingerprint

Dive into the research topics of 'Geographically Distributed Hybrid Testing of a Multi-Storey Timber Structure on Compliant Soil: Pilot Design'. Together they form a unique fingerprint.

Cite this