Design Wind Speeds In Tropical Cyclone-prone Regions

Simulation methods have recently emerged as the most reliable, and in some cases, the only means available for predicting design wind speeds in tropical cyclone-prone regions of the world. This thesis presents a refined simulation procedure. The windfield model is considerably more complex than thos...

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Main Author: Georgiou, Peter Nicholas
Format: Text
Language:unknown
Published: Scholarship@Western 1986
Subjects:
Online Access:https://ir.lib.uwo.ca/digitizedtheses/1523
https://ir.lib.uwo.ca/context/digitizedtheses/article/2522/viewcontent/NL29510.PDF
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spelling ftunivwestonta:oai:ir.lib.uwo.ca:digitizedtheses-2522 2023-10-01T03:58:05+02:00 Design Wind Speeds In Tropical Cyclone-prone Regions Georgiou, Peter Nicholas 1986-01-01T08:00:00Z application/pdf https://ir.lib.uwo.ca/digitizedtheses/1523 https://ir.lib.uwo.ca/context/digitizedtheses/article/2522/viewcontent/NL29510.PDF unknown Scholarship@Western https://ir.lib.uwo.ca/digitizedtheses/1523 https://ir.lib.uwo.ca/context/digitizedtheses/article/2522/viewcontent/NL29510.PDF Digitized Theses Engineering Civil text 1986 ftunivwestonta 2023-09-03T07:19:45Z Simulation methods have recently emerged as the most reliable, and in some cases, the only means available for predicting design wind speeds in tropical cyclone-prone regions of the world. This thesis presents a refined simulation procedure. The windfield model is considerably more complex than those used in previous simulations. Wind speeds and directions are defined at three levels, (i) at the 700 mb height, where gradient balance is assumed to apply, (ii) at the 500 metre height, where surface friction and translation of the storm system itself combine to modify the circulation in a manner which, in the current simulation, is computed using a recently developed numerical hurricane boundary layer model, and (iii) at the surface or 10 metre height. Within the windfield model, the boundary layer variation of wind speed and direction and the influences on the three circulation levels when landfall is made are defined using data gathered in recently occurring tropical cyclones. The simulation also contains a new filling model taking into account the geographical variation of this phenomenon along the U.S. coastline.;The simulation windfield model is evaluated by comparing actual wind records obtained in recently occurring tropical cyclones with wind speeds and directions predicted by the model itself. The storms chosen for these comparisons include North Atlantic, Northwest Pacific and Australian tropical cyclones. The statistical representation of the tropical cyclone characteristic parameters required in the simulation is reviewed and in some cases new distributions have been proposed. The description of these climatological parameters has application in fields other than the prediction of design wind speeds.;The simulation procedure was applied to the Gulf and Atlantic Coasts of the United States to yield extreme wind speed estimates. The results show significant variation along the coastline and compare reasonably with two recent studies of U.S. hurricane design wind speeds.;Finally, the simulation procedure ... Text North Atlantic The University of Western Ontario: Scholarship@Western Pacific
institution Open Polar
collection The University of Western Ontario: Scholarship@Western
op_collection_id ftunivwestonta
language unknown
topic Engineering
Civil
spellingShingle Engineering
Civil
Georgiou, Peter Nicholas
Design Wind Speeds In Tropical Cyclone-prone Regions
topic_facet Engineering
Civil
description Simulation methods have recently emerged as the most reliable, and in some cases, the only means available for predicting design wind speeds in tropical cyclone-prone regions of the world. This thesis presents a refined simulation procedure. The windfield model is considerably more complex than those used in previous simulations. Wind speeds and directions are defined at three levels, (i) at the 700 mb height, where gradient balance is assumed to apply, (ii) at the 500 metre height, where surface friction and translation of the storm system itself combine to modify the circulation in a manner which, in the current simulation, is computed using a recently developed numerical hurricane boundary layer model, and (iii) at the surface or 10 metre height. Within the windfield model, the boundary layer variation of wind speed and direction and the influences on the three circulation levels when landfall is made are defined using data gathered in recently occurring tropical cyclones. The simulation also contains a new filling model taking into account the geographical variation of this phenomenon along the U.S. coastline.;The simulation windfield model is evaluated by comparing actual wind records obtained in recently occurring tropical cyclones with wind speeds and directions predicted by the model itself. The storms chosen for these comparisons include North Atlantic, Northwest Pacific and Australian tropical cyclones. The statistical representation of the tropical cyclone characteristic parameters required in the simulation is reviewed and in some cases new distributions have been proposed. The description of these climatological parameters has application in fields other than the prediction of design wind speeds.;The simulation procedure was applied to the Gulf and Atlantic Coasts of the United States to yield extreme wind speed estimates. The results show significant variation along the coastline and compare reasonably with two recent studies of U.S. hurricane design wind speeds.;Finally, the simulation procedure ...
format Text
author Georgiou, Peter Nicholas
author_facet Georgiou, Peter Nicholas
author_sort Georgiou, Peter Nicholas
title Design Wind Speeds In Tropical Cyclone-prone Regions
title_short Design Wind Speeds In Tropical Cyclone-prone Regions
title_full Design Wind Speeds In Tropical Cyclone-prone Regions
title_fullStr Design Wind Speeds In Tropical Cyclone-prone Regions
title_full_unstemmed Design Wind Speeds In Tropical Cyclone-prone Regions
title_sort design wind speeds in tropical cyclone-prone regions
publisher Scholarship@Western
publishDate 1986
url https://ir.lib.uwo.ca/digitizedtheses/1523
https://ir.lib.uwo.ca/context/digitizedtheses/article/2522/viewcontent/NL29510.PDF
geographic Pacific
geographic_facet Pacific
genre North Atlantic
genre_facet North Atlantic
op_source Digitized Theses
op_relation https://ir.lib.uwo.ca/digitizedtheses/1523
https://ir.lib.uwo.ca/context/digitizedtheses/article/2522/viewcontent/NL29510.PDF
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