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Predictions of Damage to Timber-Framed Houses. II

Aligning Social and Engineering Predictions of Earthquake Damage before and after Strengthening

Datos Bibliográficos

ID21738438
AutoresCatalina Miranda (0000-0003-3106-3293, University of Auckland), Charlotte Toma (0000-0001-7115-585X, University of Auckland), Max Stephens (0000-0001-9744-4027, Senior Lecturer, Dept. of Civil and Environmental Engineering, Univ. of Auckland, B906 Structures Hall–Bldg. 906, 262 Khyber Pass, Newmarket, Auckland 1023, New Zealand), Max T Stephens (0000-0002-5616-3701, University of Auckland), Julia Becker (0000-0001-9989-4232, Massey University)
Año2023
Volumen24
Número4
Fecha de publicación2023-11-01
Peer ReviewedSí
Open AccessNo
TipoARTICLE
RevistaNatural Hazards Review (JOURNAL)
Identificadores de la revistaISSN: 1527-6988 • E-ISSN: 1527-6996
EditorialAmerican Society of Civil Engineers (ASCE) (PUBLISHER • US)
DOI10.1061/nhrefo.nheng-1812
OpenAlexW4385212019
IdiomaEN
Citas recibidas1
Referencias citadas29

This paper is the second of two companion papers that seeks to compare homeowners’ expectations of damage and engineering predictions of damage to timber-framed houses before and after undertaking seismic structural strengthening. Part I analyzed the seismic vulnerability of wooden-framed houses located on slopes in Wellington, New Zealand, investigating factors of plan shape relative to the slope, slope variations, and wall distribution, and how they influence the final seismic performance of houses. A structural survey provided data on the form and typical details for the subfloor bracing, and this was then used as the basis for a simple strengthening solution that is numerically investigated here. This companion paper analyzes the improvement of seismic performance after undertaking strengthening to the subfloor structure using a multiple stripe analysis. In the last phase of this work, engineering-based predictions of performance as determined using the numerical models were compared to homeowners’ expectations of damage before and after undertaking strengthening. This comparison paper found that although strengthened timber-framed houses located on slopes satisfy the minimum requirement of New Zealand design codes, there is still a probability of damage occurring, which would not satisfy owners’ expectations of performance in all scenarios

Brace · Bracing · Civil engineering · Forensic engineering · Geotechnical engineering · Seismic analysis · Structural engineering · Computer Science · Engineering · Masonry and Concrete Structural Analysis · Seismic and Structural Analysis of Tall Buildings · Seismic Performance and Analysis · Geology

  • The influence of builders on seismic strengthening of housing

    Open Access•Catalina Miranda, A Opdyke et al.•International Journal of Disaster…•2026

  • Seismic experience and structural preparedness of residential houses in Aotearoa New Zealand

    Open Access•Catalina Miranda, Julia Becker et al.•International Journal of Disaster…•2021

  • Homeowners’ Perceptions of Seismic Building Performance and Implications for Preparedness in New Zealand

    Catalina Miranda, Julia Becker et al.•Natural Hazards Review•2023

  • Older adults' meanings of preparedness

    Open Access•ROBYN TUOHY, Christine Stephens•Ageing and Society•2016

Obras citantes distintas1
Citas por año1
Intervalo de citas2026 - 2026 (1)
Velocidad de citacióncurrent
Altamente citadoNo
Tipos de citaNeutras: 1
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