Search Results - "Hughes, Matthew W."

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  1. 1

    Groundwater Rise and Associated Flooding in Coastal Settlements Due To Sea‐Level Rise: A Review of Processes and Methods by Bosserelle, Amandine L., Morgan, Leanne K., Hughes, Matthew W.

    Published in Earth's future (01-07-2022)
    “…Coastal settlements are experiencing the effects of climate change‐induced sea‐level rise, including a significant but often poorly‐characterized impact on…”
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    Journal Article
  2. 2

    Magnesium-Based Cements for Martian Construction by Scott, Allan, Oze, Chris, Hughes, Matthew W

    Published in Journal of aerospace engineering (01-07-2020)
    “…AbstractConstruction of habitats and infrastructure on Mars will require the extensive use of in situ materials. Regolith, which covers the planet’s surface,…”
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    Journal Article
  3. 3

    Groundwater monitoring infrastructure: Evaluation of the shallow urban and coastal network in Ōtautahi Christchurch by Bosserelle, Amandine L., Hughes, Matthew W.

    Published in Journal of hydrology. Regional studies (01-10-2024)
    “…Ōtautahi Christchurch, New Zealand Urban shallow groundwater monitoring networks are becoming widespread in New Zealand and globally. A reliable groundwater…”
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    Journal Article
  4. 4

    Comparison of statistical and machine learning approaches to modeling earthquake damage to water pipelines by Bagriacik, Adam, Davidson, Rachel A., Hughes, Matthew W., Bradley, Brendon A., Cubrinovski, Misko

    “…A large dataset of water pipeline damage from the February and June 2011 earthquakes in Christchurch, New Zealand is used to fit and compare four mathematical…”
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    Journal Article
  5. 5

    The 2010–2011 Canterbury Earthquake Sequence: Environmental effects, seismic triggering thresholds and geologic legacy by Quigley, Mark C., Hughes, Matthew W., Bradley, Brendon A., van Ballegooy, Sjoerd, Reid, Catherine, Morgenroth, Justin, Horton, Travis, Duffy, Brendan, Pettinga, Jarg R.

    Published in Tectonophysics (16-03-2016)
    “…Seismic shaking and tectonic deformation during strong earthquakes can trigger widespread environmental effects. The severity and extent of a given effect…”
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  6. 6

    Development and validation of fragility functions for buried pipelines based on Canterbury earthquake sequence data by Bellagamba, Xavier, Bradley, Brendon A, Wotherspoon, Liam M, Hughes, Matthew W

    Published in Earthquake spectra (01-08-2019)
    “…This paper presents parametric fragility functions for buried pressurized water pipelines based on data collected following the 22 February and 13 June 2011…”
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  7. 7

    Mātauranga Māori in geomorphology: existing frameworks, case studies, and recommendations for incorporating Indigenous knowledge in Earth science by Wilkinson, Clare, Hikuroa, Daniel C. H., Macfarlane, Angus H., Hughes, Matthew W.

    Published in Earth surface dynamics (16-07-2020)
    “…Mixed-method bicultural research in Aotearoa New Zealand, including the weaving of Indigenous and other knowledge, is emerging within many academic…”
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  8. 8

    Object-based image analysis for mapping earthquake-induced liquefaction ejecta in Christchurch, New Zealand by Morgenroth, Justin, Hughes, Matthew W., Cubrinovski, Misko

    Published in Natural hazards (Dordrecht) (01-06-2016)
    “…Earthquake-induced liquefaction poses significant risks to the urban environment and infrastructure lifelines. Following significant liquefaction, surface…”
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  9. 9

    Assessing transportation vulnerability to tsunamis: utilising post-event field data from the 2011 Tōhoku tsunami, Japan, and the 2015 Illapel tsunami, Chile by Williams, James H., Wilson, Thomas M., Horspool, Nick, Paulik, Ryan, Wotherspoon, Liam, Lane, Emily M., Hughes, Matthew W.

    Published in Natural hazards and earth system sciences (19-02-2020)
    “…Transportation infrastructure is crucial to the operation of society, particularly during post-event response and recovery. Transportation assets, such as…”
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    Journal Article
  10. 10

    Tsunami impact assessment: development of vulnerability matrix for critical infrastructure and application to Christchurch, New Zealand by Williams, James H., Wilson, Thomas M., Horspool, Nick, Lane, Emily M., Hughes, Matthew W., Davies, Tim, Le, Lina, Scheele, Finn

    Published in Natural hazards (Dordrecht) (01-04-2019)
    “…Tsunamis can have severe impacts on society. In addition to casualties and damage to buildings, they can also damage and disrupt critical infrastructure. To…”
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  11. 11

    Landscape change as a platform for environmental and social healing by Wilkinson, Clare, Macfarlane, Angus H., Hikuroa, Daniel C. H., McConchie, Clint, Payne, Matiu, Holmes, Huata, Mohi, Rose, Hughes, Matthew W.

    Published in Kōtuitui (03-07-2022)
    “…Aotearoa New Zealand is characterised by dynamic landscapes. Major landscape-altering events, such as earthquakes, floods, landslides and tsunami, have deeply…”
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  12. 12

    Automatic landform stratification and environmental correlation for modelling loess landscapes in North Otago, South Island, New Zealand by Hughes, Matthew W., Schmidt, Jochen, Almond, Peter C.

    Published in Geoderma (15-02-2009)
    “…The advent of quantitative soil-landscape modelling techniques has seen the mapping of pedological phenomena placed on a more scientific footing. In New…”
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  13. 13

    Late Quaternary loess landscape evolution on an active tectonic margin, Charwell Basin, South Island, New Zealand by Hughes, Matthew W., Almond, Peter C., Roering, Joshua J., Tonkin, Philip J.

    Published in Geomorphology (Amsterdam, Netherlands) (15-10-2010)
    “…Loess deposits constitute an important archive of aeolian deposition reflecting wider patterns of glacial atmospheric circulation, and more localised…”
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  14. 14

    Practitioner perspectives on sea-level rise impacts on shallow groundwater: Implications for infrastructure asset management and climate adaptation by Bosserelle, Amandine L., Hughes, Matthew W.

    Published in Urban climate (01-11-2024)
    “…Climate change is causing sea levels to rise, posing an unprecedented threat to coastal communities and infrastructure from coastal flooding and other hazards…”
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    The scientific response to the 14 November 2016 Kaikōura tsunami – Lessons learnt from a moderate event by Lane, Emily M., Thomas, Kristie-Lee, Schoenfeld, Marion R., Wilson, Thomas M., Hughes, Matthew W.

    “…The November 14, 2016 Kaikōura earthquake in Aotearoa-New Zealand involved the rupture of 21 faults across North Canterbury, Marlborough, some of which…”
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    Modelling residential habitability and human displacement for tsunami scenarios in Christchurch, New Zealand by Scheele, Finn, Wilson, Thomas, Lane, Emily M., Crowley, Kate, Hughes, Matthew W., Davies, Tim, Horspool, Nick, Williams, James H., Le, Lina, Uma, S.R., Lukovic, Biljana, Schoenfeld, Marion, Thompson, James

    “…Understanding the potential impacts of a large tsunami on a coastal region enables better planning of disaster management strategies. Potential housing damage,…”
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    Journal Article
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