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    Influence of Turbulent Mechanical Stresses on Microorganisms

    Source: Applied Mechanics Reviews:;1998:;volume( 051 ):;issue: 001::page 121
    Author:
    J. Bałdyga
    ,
    R. Pohorecki
    DOI: 10.1115/1.3098987
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: Many phenomena depend on the features of the fine-scale structure of turbulence, including its intermittency. This article discusses the problem of the turbulent “shear” in biotechnology including the effect of the shear stress on particles (cells, flocs, cells immobilized on microcarriers). Traditionally, the effect of intermittency has not been taken into account in the shear problem and the theory of isotropic turbulence introduced by Kolmogorov (1941) based on average values of the rate of kinetic energy dissipation, velocity fluctuactions, rates of strain, turbulent stresses etc. has been applied. In this paper a multifractal formalism is employed to describe intermittency; the results of multifractal approach are then compared with predictions of other models of intermittent and non-intermittent turbulence. The multifractal model of intermittent turbulence has been used to derive equations describing flow-particle interactions, including: equations describing turbulent stresses acting upon particles in the inertial and viscous subranges of turbulence; mass transfer to small particles suspended in turbulent fluid; turbulent rupture of flocs; particles encounters in turbulent flow including the average number of collisions per unit time in the inertial and viscous subranges of turbulence and the severity of collisions; mechanical stress generated by bubble coalescence. Generally, the article shows how the traditional approach to the shear problem in turbulence, based on the Kolmogorov theory, can be extended by including the influence of intermittency. This review article includes 47 references.
    keyword(s): Turbulence , Stress , Microorganisms , Particulate matter , Shear (Mechanics) , Collisions (Physics) , Equations , Flocs , Biotechnology , Rupture , Energy dissipation , Bubbles , Kinetic energy , Flow (Dynamics) , Mass transfer AND Fluids ,
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      Influence of Turbulent Mechanical Stresses on Microorganisms

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    https://yetl.yabesh.ir/yetl1/handle/yetl/119813
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    contributor authorJ. Bałdyga
    contributor authorR. Pohorecki
    date accessioned2017-05-08T23:55:30Z
    date available2017-05-08T23:55:30Z
    date copyrightJanuary, 1998
    date issued1998
    identifier issn0003-6900
    identifier otherAMREAD-25743#121_1.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/119813
    description abstractMany phenomena depend on the features of the fine-scale structure of turbulence, including its intermittency. This article discusses the problem of the turbulent “shear” in biotechnology including the effect of the shear stress on particles (cells, flocs, cells immobilized on microcarriers). Traditionally, the effect of intermittency has not been taken into account in the shear problem and the theory of isotropic turbulence introduced by Kolmogorov (1941) based on average values of the rate of kinetic energy dissipation, velocity fluctuactions, rates of strain, turbulent stresses etc. has been applied. In this paper a multifractal formalism is employed to describe intermittency; the results of multifractal approach are then compared with predictions of other models of intermittent and non-intermittent turbulence. The multifractal model of intermittent turbulence has been used to derive equations describing flow-particle interactions, including: equations describing turbulent stresses acting upon particles in the inertial and viscous subranges of turbulence; mass transfer to small particles suspended in turbulent fluid; turbulent rupture of flocs; particles encounters in turbulent flow including the average number of collisions per unit time in the inertial and viscous subranges of turbulence and the severity of collisions; mechanical stress generated by bubble coalescence. Generally, the article shows how the traditional approach to the shear problem in turbulence, based on the Kolmogorov theory, can be extended by including the influence of intermittency. This review article includes 47 references.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleInfluence of Turbulent Mechanical Stresses on Microorganisms
    typeJournal Paper
    journal volume51
    journal issue1
    journal titleApplied Mechanics Reviews
    identifier doi10.1115/1.3098987
    journal fristpage121
    journal lastpage140
    identifier eissn0003-6900
    keywordsTurbulence
    keywordsStress
    keywordsMicroorganisms
    keywordsParticulate matter
    keywordsShear (Mechanics)
    keywordsCollisions (Physics)
    keywordsEquations
    keywordsFlocs
    keywordsBiotechnology
    keywordsRupture
    keywordsEnergy dissipation
    keywordsBubbles
    keywordsKinetic energy
    keywordsFlow (Dynamics)
    keywordsMass transfer AND Fluids
    treeApplied Mechanics Reviews:;1998:;volume( 051 ):;issue: 001
    contenttypeFulltext
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