Investigating Inundation Impacts Caused by Extreme Sea Level Rise at Nacka Municipality

Numerous efforts have been employed to explore plausible future sea level rise range as well as improving the ice sheet dynamic that was considered as the biggest challenge in sea level projections. These results in the availability of numerous corresponding Global Mean Sea Level (GMSL), a property...

Full description

Bibliographic Details
Main Author: Amri, Hilfi
Format: Bachelor Thesis
Language:English
Published: KTH, Mark- och vattenteknik 2017
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-210921
id ftkthstockholm:oai:DiVA.org:kth-210921
record_format openpolar
spelling ftkthstockholm:oai:DiVA.org:kth-210921 2023-05-15T16:41:26+02:00 Investigating Inundation Impacts Caused by Extreme Sea Level Rise at Nacka Municipality Amri, Hilfi 2017 application/pdf http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-210921 eng eng KTH, Mark- och vattenteknik TRITA-LWR Degree Project, 1651-064X 2017:14 http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-210921 info:eu-repo/semantics/openAccess Civil Engineering Samhällsbyggnadsteknik Student thesis info:eu-repo/semantics/bachelorThesis text 2017 ftkthstockholm 2022-08-11T12:41:09Z Numerous efforts have been employed to explore plausible future sea level rise range as well as improving the ice sheet dynamic that was considered as the biggest challenge in sea level projections. These results in the availability of numerous corresponding Global Mean Sea Level (GMSL), a property that exhibits the problem of deep uncertainty. In the front of deep uncertainty problems, the paradigm "predict then act" is no longer sufficient, as decision makers are prompted with the more recent framework that could encompass the latter problem, in this case, the Robust Decision Making (RDM) approach. Nacka Municipality, one of the rapid growing municipalities in Stockholm, must face future sea level rise problem under this circumstance, which requires an input to be able to act against sea level rise while also sustaining the development in the area. This work will connect three main methods to provide an appropriate flood map for robust decision-making processes, namely the localization of GMSL, extreme value analysis, and hydrodynamic models. Localizing the GMSL is done by incorporating several important aspects (i.e. Vertical Land Motion, Ocean Dynamics, and Ice Melt Dynamic). Extreme value analysis was conducted to project the extreme value of sea level and the wind according to the desired return period outcome. While hydrodynamic model will provide a more representative interaction between the phase: sea, wind and bed properties. The latter will be done using a product created from the Danish Hydrological Institute (DHI) named MIKE 21 FM. The latter features flexible mesh as the main element and allows to incorporate the momentum equation into place. Furthermore, results will be based on two scenarios: extreme and low in two different time frame, namely 2100 and 2150. Results will explore the area span of the flood as well as the potentially impacted buildings. Additionally, both scenario results will be adjoined per time frame to provide a span of flood area between the low and the extreme scenarios. ... Bachelor Thesis Ice Sheet Royal Institute of Technology, Stockholm: KTHs Publication Database DiVA Nacka ENVELOPE(11.833,11.833,79.717,79.717)
institution Open Polar
collection Royal Institute of Technology, Stockholm: KTHs Publication Database DiVA
op_collection_id ftkthstockholm
language English
topic Civil Engineering
Samhällsbyggnadsteknik
spellingShingle Civil Engineering
Samhällsbyggnadsteknik
Amri, Hilfi
Investigating Inundation Impacts Caused by Extreme Sea Level Rise at Nacka Municipality
topic_facet Civil Engineering
Samhällsbyggnadsteknik
description Numerous efforts have been employed to explore plausible future sea level rise range as well as improving the ice sheet dynamic that was considered as the biggest challenge in sea level projections. These results in the availability of numerous corresponding Global Mean Sea Level (GMSL), a property that exhibits the problem of deep uncertainty. In the front of deep uncertainty problems, the paradigm "predict then act" is no longer sufficient, as decision makers are prompted with the more recent framework that could encompass the latter problem, in this case, the Robust Decision Making (RDM) approach. Nacka Municipality, one of the rapid growing municipalities in Stockholm, must face future sea level rise problem under this circumstance, which requires an input to be able to act against sea level rise while also sustaining the development in the area. This work will connect three main methods to provide an appropriate flood map for robust decision-making processes, namely the localization of GMSL, extreme value analysis, and hydrodynamic models. Localizing the GMSL is done by incorporating several important aspects (i.e. Vertical Land Motion, Ocean Dynamics, and Ice Melt Dynamic). Extreme value analysis was conducted to project the extreme value of sea level and the wind according to the desired return period outcome. While hydrodynamic model will provide a more representative interaction between the phase: sea, wind and bed properties. The latter will be done using a product created from the Danish Hydrological Institute (DHI) named MIKE 21 FM. The latter features flexible mesh as the main element and allows to incorporate the momentum equation into place. Furthermore, results will be based on two scenarios: extreme and low in two different time frame, namely 2100 and 2150. Results will explore the area span of the flood as well as the potentially impacted buildings. Additionally, both scenario results will be adjoined per time frame to provide a span of flood area between the low and the extreme scenarios. ...
format Bachelor Thesis
author Amri, Hilfi
author_facet Amri, Hilfi
author_sort Amri, Hilfi
title Investigating Inundation Impacts Caused by Extreme Sea Level Rise at Nacka Municipality
title_short Investigating Inundation Impacts Caused by Extreme Sea Level Rise at Nacka Municipality
title_full Investigating Inundation Impacts Caused by Extreme Sea Level Rise at Nacka Municipality
title_fullStr Investigating Inundation Impacts Caused by Extreme Sea Level Rise at Nacka Municipality
title_full_unstemmed Investigating Inundation Impacts Caused by Extreme Sea Level Rise at Nacka Municipality
title_sort investigating inundation impacts caused by extreme sea level rise at nacka municipality
publisher KTH, Mark- och vattenteknik
publishDate 2017
url http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-210921
long_lat ENVELOPE(11.833,11.833,79.717,79.717)
geographic Nacka
geographic_facet Nacka
genre Ice Sheet
genre_facet Ice Sheet
op_relation TRITA-LWR Degree Project, 1651-064X
2017:14
http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-210921
op_rights info:eu-repo/semantics/openAccess
_version_ 1766031869689724928