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    A Method to Upgrade Iceberg Velocity Statistics to Include Wave-Induced Motion

    Source: Journal of Offshore Mechanics and Arctic Engineering:;1987:;volume( 109 ):;issue: 003::page 278
    Author:
    J. H. Lever
    ,
    D. Sen
    DOI: 10.1115/1.3257021
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Iceberg impact design loads for offshore structures can be estimated by incorporating an ice/structure interaction model in a probabilistic framework, or risk analysis. The relevant iceberg and environmental parameters are input in statistical form. Iceberg velocity statistics are usually compiled from drilling rig radar reports, and hence represent estimates of average hourly drift speeds. Yet it is the instantaneous ice velocity which is the relevant input to the simulation of the iceberg/structure collision process. Thus, risk analyses based on mean drift speed distributions will only yield valid results for the subset of conditions where wave-induced iceberg motion is negligible. This paper describes a method which, for the first time, systematically accounts for wave-induced motion in iceberg impact risk analyses. A linear three-dimensional potential flow model is utilized to upgrade iceberg velocity statistics to include the influence of Grand Banks sea-state conditions on instantaneous ice motion. The results clearly demonstrate the importance of including wave-induced motion in iceberg impact risk analyses.
    keyword(s): Motion , Waves , Icebergs , Ice , Ice-structure interaction , Risk analysis , Radar , Seas , Drilling , Simulation , Stress , Offshore structures , Flow (Dynamics) , Collisions (Physics) AND Design ,
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      A Method to Upgrade Iceberg Velocity Statistics to Include Wave-Induced Motion

    URI
    https://yetl.yabesh.ir/yetl1/handle/yetl/102822
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    • Journal of Offshore Mechanics and Arctic Engineering

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    contributor authorJ. H. Lever
    contributor authorD. Sen
    date accessioned2017-05-08T23:25:24Z
    date available2017-05-08T23:25:24Z
    date copyrightAugust, 1987
    date issued1987
    identifier issn0892-7219
    identifier otherJMOEEX-28042#278_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/102822
    description abstractIceberg impact design loads for offshore structures can be estimated by incorporating an ice/structure interaction model in a probabilistic framework, or risk analysis. The relevant iceberg and environmental parameters are input in statistical form. Iceberg velocity statistics are usually compiled from drilling rig radar reports, and hence represent estimates of average hourly drift speeds. Yet it is the instantaneous ice velocity which is the relevant input to the simulation of the iceberg/structure collision process. Thus, risk analyses based on mean drift speed distributions will only yield valid results for the subset of conditions where wave-induced iceberg motion is negligible. This paper describes a method which, for the first time, systematically accounts for wave-induced motion in iceberg impact risk analyses. A linear three-dimensional potential flow model is utilized to upgrade iceberg velocity statistics to include the influence of Grand Banks sea-state conditions on instantaneous ice motion. The results clearly demonstrate the importance of including wave-induced motion in iceberg impact risk analyses.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleA Method to Upgrade Iceberg Velocity Statistics to Include Wave-Induced Motion
    typeJournal Paper
    journal volume109
    journal issue3
    journal titleJournal of Offshore Mechanics and Arctic Engineering
    identifier doi10.1115/1.3257021
    journal fristpage278
    journal lastpage286
    identifier eissn1528-896X
    keywordsMotion
    keywordsWaves
    keywordsIcebergs
    keywordsIce
    keywordsIce-structure interaction
    keywordsRisk analysis
    keywordsRadar
    keywordsSeas
    keywordsDrilling
    keywordsSimulation
    keywordsStress
    keywordsOffshore structures
    keywordsFlow (Dynamics)
    keywordsCollisions (Physics) AND Design
    treeJournal of Offshore Mechanics and Arctic Engineering:;1987:;volume( 109 ):;issue: 003
    contenttypeFulltext
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