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Tori Tomiczek

Dados Biográficos

ID9720226
NOMETori Tomiczek
PRENOMESTori
SOBRENOMETomiczek
ASSINATURATOMICZEK T
AFILIAÇÕESUnited States Naval Academy
ORCID0000-0003-4116-7547
VERIFICADOSim
TOTAL DE OBRAS5
TOTAL DE CITAÇÕES0
TOTAL COMO AUTOR5
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO2020
ANO MAIS RECENTE DE PUBLICAÇÃO2023
ÍNDICE H0
  • A Framework for Characterizing Uncertainty Factors in Postdisaster Structural Performance Assessment Data

    Open Access•Tori Tomiczek, Jennifer Helgeson et al.•ARTICLE•Natural Hazards Review•2023

    Forum papers are thought-provoking opinion pieces or essays founded in fact, sometimes containing speculation, on a civil engineering topic of general interest and relevance to the readership of the journal. The views expressed in this Forum article do not necessarily reflect the views of ASCE or the Editorial Board of the journal

  • Resilience as Property Value Rebound

    Alexander Laun, Thomas A Mazzuchi et al.•ARTICLE•Natural Hazards Review•2023

    For residential structures in America’s coastal communities, resilience is an essential system quality. Such resilience is best conceptualized as a given system’s ability to anticipate, respond to, recover from, and adapt to disruption. Practically, the quantification of parcel-scale resilience requires detailed temporal data and the ability to assess various indicators of system performance variability. This paper considers expanded datasets rel…

  • Probabilistic Risk Assessment of Coupled Natural-Physical-Social Systems

    Ehsan Fereshtehnejad, Ioannis Gidaris et al.•ARTICLE•Natural Hazards Review•2021

    The combined effect of storm surge and wave action during severe storms in coastal regions can cause significant damage to civil infrastructures with cascading consequences to coastal communities and their residents with respect to emergency response, repair, and recovery. This coupling of natural, physical, and social systems presents an important yet relatively underexplored problem in the probabilistic risk assessment of coastal systems. Not o…

  • Rapid Damage Assessments of Shorelines and Structures in the Florida Keys after Hurricane Irma

    Tori Tomiczek, Kiera O’Donnell et al.•ARTICLE•Natural Hazards Review•2020

    The 2017 Atlantic hurricane season was the most active since 2005 and was classified as an extremely active year of coastal storms. Hurricane Irma caused significant damage in the Caribbean islands and Florida Keys. After the storm, the authors developed standardized metrics with which to assess physical damage to natural and artificial shorelines and near-coast residential structures. These metrics were used to collect damage data for 332 shorel…

  • Community Resilience-Focused Technical Investigation of the 2016 Lumberton, North Carolina, Flood

    Open Access•John W van de Lindt, Walter Gillis Peacock et al.•ARTICLE•Natural Hazards Review•2020

    In early October 2016, Hurricane Matthew crossed North Carolina as a Category 1 storm, with some areas receiving 0.38–0.46 m (15–18 in.) of rainfall on already saturated soil. The NIST-funded Center for Risk-Based Community Resilience Planning teamed with researchers from NIST’s Engineering Laboratory (Disaster and Failure Studies Program, Community Resilience Group, and the Applied Economics Office) to conduct a field study focused on the impact…

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  • Rapid Damage Assessments of Shorelines and Structures in the Florida Keys after Hurricane Irma

    Tori Tomiczek, Kiera O’Donnell et al.•ARTICLE•Natural Hazards Review•2020

    The 2017 Atlantic hurricane season was the most active since 2005 and was classified as an extremely active year of coastal storms. Hurricane Irma caused significant damage in the Caribbean islands and Florida Keys. After the storm, the authors developed standardized metrics with which to assess physical damage to natural and artificial shorelines and near-coast residential structures. These metrics were used to collect damage data for 332 shorel…

  • Community Resilience-Focused Technical Investigation of the 2016 Lumberton, North Carolina, Flood

    Open Access•John W van de Lindt, Walter Gillis Peacock et al.•ARTICLE•Natural Hazards Review•2020

    In early October 2016, Hurricane Matthew crossed North Carolina as a Category 1 storm, with some areas receiving 0.38–0.46 m (15–18 in.) of rainfall on already saturated soil. The NIST-funded Center for Risk-Based Community Resilience Planning teamed with researchers from NIST’s Engineering Laboratory (Disaster and Failure Studies Program, Community Resilience Group, and the Applied Economics Office) to conduct a field study focused on the impact…

  • Probabilistic Risk Assessment of Coupled Natural-Physical-Social Systems

    Ehsan Fereshtehnejad, Ioannis Gidaris et al.•ARTICLE•Natural Hazards Review•2021

    The combined effect of storm surge and wave action during severe storms in coastal regions can cause significant damage to civil infrastructures with cascading consequences to coastal communities and their residents with respect to emergency response, repair, and recovery. This coupling of natural, physical, and social systems presents an important yet relatively underexplored problem in the probabilistic risk assessment of coastal systems. Not o…

  • A Framework for Characterizing Uncertainty Factors in Postdisaster Structural Performance Assessment Data

    Open Access•Tori Tomiczek, Jennifer Helgeson et al.•ARTICLE•Natural Hazards Review•2023

    Forum papers are thought-provoking opinion pieces or essays founded in fact, sometimes containing speculation, on a civil engineering topic of general interest and relevance to the readership of the journal. The views expressed in this Forum article do not necessarily reflect the views of ASCE or the Editorial Board of the journal

  • Resilience as Property Value Rebound

    Alexander Laun, Thomas A Mazzuchi et al.•ARTICLE•Natural Hazards Review•2023

    For residential structures in America’s coastal communities, resilience is an essential system quality. Such resilience is best conceptualized as a given system’s ability to anticipate, respond to, recover from, and adapt to disruption. Practically, the quantification of parcel-scale resilience requires detailed temporal data and the ability to assess various indicators of system performance variability. This paper considers expanded datasets rel…

Environmental resource management (4 obras) · Environmental Science (4 obras) · Geography (4 obras) · Infrastructure Resilience and Vulnerability Analysis (4 obras) · Computer Science (3 obras) · Engineering (3 obras) · Meteorology (3 obras) · Natural disaster (3 obras) · Natural hazard (3 obras) · Storm (3 obras)

Ethnos_APP • Projeto Open Source • Licença MIT • Frontend v2.0.0 • Privacidade e Cookies • Documentação da API: api.ethnos.app/docs • Código da API: GitHub • DOI: 10.5281/zenodo.17049435 • Código do Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae