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    Models for Analysis of Water Hammer in Piping With Entrapped Air

    Source: Journal of Fluids Engineering:;2002:;volume( 124 ):;issue: 001::page 194
    Author:
    M. A. Chaiko
    ,
    K. W. Brinckman
    DOI: 10.1115/1.1430668
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Water hammer transients in a pipe line with an entrapped air pocket are analyzed with three one-dimensional models of varying complexity. The most simple model neglects the influence of gas-liquid interface movement on wave propagation through the liquid region and assumes uniform compression of the entrapped noncondensable gas. In the most complex model, the full two-region wave propagation problem is solved for adjoining gas and liquid regions with time varying domains. An intermediate model which allows for time variation of the liquid domain, but assumes uniform gas compression, is also considered. Calculations are carried out for a wide range of initial system pressure ranging from 0.101 MPa (14.7 psia) to 6.89 MPa (1000 psia). A step increase in pressure equal to 5 times the initial system pressure is imposed at the pipe inlet and the pressure response of the system is investigated. Results show that time variation of the liquid domain and nonuniform gas compression can be neglected for initial air volumes comprising 5% or less of the initial pipe volume. The uniform compression model with time-varying liquid domain captures all of the essential features predicted by the full two-region model for the entire range of pressure and initial gas volume considered in the study, and it is the recommended model for analysis of waterhammer in pipe lines with entrapped air.
    keyword(s): Water hammer , Pipes , Compression , Equations , Pressure AND Waves ,
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      Models for Analysis of Water Hammer in Piping With Entrapped Air

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    https://yetl.yabesh.ir/yetl1/handle/yetl/127022
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    contributor authorM. A. Chaiko
    contributor authorK. W. Brinckman
    date accessioned2017-05-09T00:07:54Z
    date available2017-05-09T00:07:54Z
    date copyrightMarch, 2002
    date issued2002
    identifier issn0098-2202
    identifier otherJFEGA4-27170#194_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/127022
    description abstractWater hammer transients in a pipe line with an entrapped air pocket are analyzed with three one-dimensional models of varying complexity. The most simple model neglects the influence of gas-liquid interface movement on wave propagation through the liquid region and assumes uniform compression of the entrapped noncondensable gas. In the most complex model, the full two-region wave propagation problem is solved for adjoining gas and liquid regions with time varying domains. An intermediate model which allows for time variation of the liquid domain, but assumes uniform gas compression, is also considered. Calculations are carried out for a wide range of initial system pressure ranging from 0.101 MPa (14.7 psia) to 6.89 MPa (1000 psia). A step increase in pressure equal to 5 times the initial system pressure is imposed at the pipe inlet and the pressure response of the system is investigated. Results show that time variation of the liquid domain and nonuniform gas compression can be neglected for initial air volumes comprising 5% or less of the initial pipe volume. The uniform compression model with time-varying liquid domain captures all of the essential features predicted by the full two-region model for the entire range of pressure and initial gas volume considered in the study, and it is the recommended model for analysis of waterhammer in pipe lines with entrapped air.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleModels for Analysis of Water Hammer in Piping With Entrapped Air
    typeJournal Paper
    journal volume124
    journal issue1
    journal titleJournal of Fluids Engineering
    identifier doi10.1115/1.1430668
    journal fristpage194
    journal lastpage204
    identifier eissn1528-901X
    keywordsWater hammer
    keywordsPipes
    keywordsCompression
    keywordsEquations
    keywordsPressure AND Waves
    treeJournal of Fluids Engineering:;2002:;volume( 124 ):;issue: 001
    contenttypeFulltext
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    DSpace software copyright © 2002-2015  DuraSpace
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
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