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  • open foam矢量运算符号

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    3k 浏览
    残阳沥血

    @我是河滩 是这样的,代码看懂了,谢谢指导。

  • 5 帖子
    4k 浏览
    Z

    @liailei0627 恩恩 谢谢大佬!!

  • 18 帖子
    15k 浏览
    L

    @东岳 最近根据东岳先生的指导,对这个求解器不那么陌生了,也简单做了一个自己的小例子。目前程序能跑起来。拜谢东岳先生!!!
    这是我做出来的一点东西:

    52da8e03-f286-4265-af05-d6e9fc489eb9-image.png

    这个是两相流的含气率分布。但是我看了一些论文在顶部设置的边界条件叫做液相壁面采用无滑移边界条件。气泡达到顶部以上浮速度自由逸出。不太理解这句话对应的OF边界条件是什么?
    PS:目前顶部采用的边界条件为:U.air

    4b6d193c-82a4-4b02-bcff-35f1c7175f10-image.png

    U.water

    6476ca4f-42b8-4589-9b2b-cd630e777ae0-image.png

    p文件:

    1bb31ddf-45fb-4d4e-a0d3-1e02293e4b32-image.png

    目前还是依据算例进行自己改动,仍然没达到气泡以上浮速度自由逸出的效果,请问东岳先生对此有什么好的建议么?
    叨扰叨扰,再次拜谢!!!

  • 如何由UPrime2Mean获得RMS速度?

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    羽之下

    @就是个胖子 嗯,是,可以,只是感觉略微有点麻烦。

  • 6 帖子
    5k 浏览
    bestucanB

    @就是个胖子
    一些太基础以至于很难搜到的点:

    #是注释符号, #!/bin/bash 是指定运行改脚本的shell, $1 是脚本运行的第一个参数,同理$2 $3是第二第三个参数。

    下面这个脚本功能是,编译某个文件夹下,所有以.tex结尾的文件。
    脚本文件的名称叫 latexall.sh。 执行的时候输入命令"latexall ./"
    这时候对于脚本来说$1就变成了“./”即,当前文件夹。
    循环.png
    这是个根据前后缀特征提取字幕文件里的字幕信息的脚本。这些乱七八糟的符号叫“正则表达式”。
    处理字幕.png

  • 1 帖子
    1k 浏览
    Z

    以DTChull算例为例,该船6m长,速度是1.668 m/s 自己根据网上的找的公式算出来的k和omega和算例中给定的差别很大,自己用的公式是6ac30593-c076-46d9-8b9b-af132f89a9f5-图片.png
    3d1cc183-2b26-40b4-9c6c-e71332a0b616-图片.png

  • 使用sixDoFRigidBodyState这个functionObject报错

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    towerT

    @东岳 李老师太客气啦!:shangxue:

  • paraview中出流流量的转换

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    N

    请问大侠,一个对称圆柱的二维计算,怎样计算其出口质量流量,还是说二维计算没有质量流量一说,在preview中计算质量流量,或者怎样转化为三维情况下的结果?

  • DPMFoam one-way coupling

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    linhan.geL

    @东岳 如果是像fluent中DPM里颗粒都是mass point的话就不存在这个问题了。

  • 圆管对流换热,入口段温度分布异常

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    3 帖子
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    C

    externalWallHeatFluxTemperature,将q设为0.

    不过我用这个BC加恒定热流密度,后处理用wallheatflux计算,发现有个min/max区间,integral的值比应该注入的能量少0.3W(48.8W VS 48.5W),不知道这是否正常。

  • 编程小白求问:kEpsilon模型中 k_() 的定义在哪?

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    李东岳

    感谢大家分享!:xiexie: 论坛急需散金币机制。暂且欠每人1000金币!:w:

  • 边界条件设置求教

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    N

    @东岳 好的我试试,谢李老师

  • OpenFoam stuff forward from The Visual Room

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    N

    This is the OpenFOAM language.
    http://www.thevisualroom.com/24_openfoam_language/openfoam_language.html

    What are features of C++?
    What is explicit evaluation?
    What is implicit evaluation?
    What are the higher level data types?
    What are fields?
    What are the three types?
    What are the five basic classes?
    What are the three space-time classes?
    What are the three field algebra classes?
    What are the two discretisation classes?
    What is a geometricField<Type>?
    What is the objectRegistry?
    What is the IOobject?
    How is a dictionary object read?
    How is volVectorField read from disk?
    How is volScalarField constructed?
    What are the read and write options?
    How are objects represented in OpenFOAM?
    How is matrix inversion done in fvm?
    What are lists?
    What are fields?
    How is memory accessed?
    How is IO Communication done?
    How are derivatives of fields evaluated?
    What are the functions for discretisation?
    How can are equations translated into code?
    How is the PISO algorithm programmed?
    What are header files?
    What is wmake?
    1.1.1. What are features of C++?
    Feature Meaning
    typedefs Alias for a possibly complex type name
    function Group of statements that perform a task
    pointers Data type that holds addresses to refer to values in memory (e.g. for dynamic memory allocation)
    data structures Data members grouped under one name (e.g. the nodes in a linked list)
    classes Data members and function members grouped under one name
    constructor Function member that initialises the instance of it’s class
    destructor Function member that destroys the instance of it’s class
    friends Allows a function or class access to private or protected members of a class
    inheritance Allows a class to be created based on another class (so code can be reused)
    virtual member functions Member function that will be redefined in a derived class
    abstract class Class that contains at least one virtual function
    template Family of classes (class template), functions (function template), variables (variable template) or alias of a family of types (alias template)
    namespace Prevents name conflicts in large projects
    1.1.2. What is explicit evaluation?
    Evaluate spatial derivatives at the current timestep
    Uses known values
    1.1.3. What is implicit evaluation?
    Evaluate spatial derivatives at future timestep
    Uses unknown values - generates a matrix equation to be solved
    1.1.4. What are the higher level data types?
    Type Meaning
    volScalarField
    scalar, e.g. pressure
    volVectorField
    vector, e.g. velocity
    volTensorField
    tensor, e.g. Reynolds Stress
    surfaceScalarField
    surface scalar, e.g. flux
    dimensionedScalar
    constant, e.g. viscosity
    1.1.5. What are fields?
    Arrays of data stored at cell centres in the mesh

    Include bouundary information

    Three types
    volScalarField
    volVectorField
    volTensorField
    Values are stored in named dictionary files in named timestep directories e.g. case/0/p for pressure

    1.1.6. What are the three types?
    <Type> refers to:

    scalar
    vector
    tensor
    1.1.7. What are the five basic classes?
    Class Meaning
    fvPatchField
    (and derived classes)

    Boundary conditions
    lduMatrix
    fvMatrix
    (and linear solvers)

    Sparse matrices
    1.1.8. What are the three space-time classes?
    Class Meaning
    polyMesh
    Stands for polyhedral mesh

    Most basic mesh class

    Contains:
    pointField
    faceList
    cellList
    polyPatchList
    fvMesh
    Extends polyMesh contains:
    Cell volumes (volScalarField)
    Cell centres (volVectorField)
    Face area vectors (surfaceVectorField)
    Face centres (surfaceVectorField)
    Face area magnitudes (surfaceScalarField)
    Face motion centres (surfaceScalarField)
    Time
    Class to control time during OpenFOAM
    Declared as variable runTime
    Provides list of saved times runTime.times()
    Timestep = deltaT()
    Return current directory name = name()
    Time increments = operator++() operator+=(scalar)
    Write objects to disk = write()
    Start time, end time = startTime(), endTime()
    1.1.9. What are the three field algebra classes?
    Class Meaning
    Field<Type>
    Array template class, e.g. Field<vector> = vectorField

    Renamed using typedef as:
    scalarField
    vectorField
    tensorField
    symmTensorField
    tensorThirdField
    symmTensorThirdField
    dimensionedField

    geometricField<Type>
    Combination of:
    Field
    GeometricBoundaryField
    fvMesh
    dimensionSet
    Defines values at all locations in domain with aliases:
    volField<Type>
    surfaceField<Type>
    pointField<Type>
    1.1.10. What are the two discretisation classes?
    Class Meaning
    fvc
    Stands for finite volume calculus
    Explicit derivative evaluation
    Input = known geometricField<Type>
    Output = geometricField<Type> object
    fvm
    Stands for finite volume method
    Implicit derivative evaluation
    Input = unknown geometricField<Type>
    Output = fvMatrix<Type> object, which can be inverted in the matrix equation Mx=y
    1.1.11. What is a geometricField<Type>?
    volField<Type>
    surfaceField<Type>
    pointField<Type>
    1.1.12. What is the objectRegistry?
    Object registry of entities (dictionaries, fields) which are to be read in or written out

    1.1.13. What is the IOobject?
    Defines I/O attributes of entities managed by the object registry.

    1.1.14. How is a dictionary object read?
    Code Meaning
    Info << "Reading transportProperties" << endl;
    Send message to screen
    IOdictionary transportProperties
    (
    IOobject
    (
    "transportProperties",
    runTime.constant(),
    mesh,
    IOobject::MUST_READ
    IOobject::NO_WRITE
    )
    );
    Read in at creation
    dimensionedScalar nu
    (
    transportProperties.lookup("nu")
    );
    Lookup viscosity in dictionary
    1.1.15. How is volVectorField read from disk?
    Code Meaning
    volVectorField U
    (
    IOobject
    (
    "U",
    Times[i].name(),
    runTime,
    IOobject::MUST_READ
    ),
    mesh
    )
    volVectorField read in from disk
    Associated with runTime database
    Must be read
    1.1.16. How is volScalarField constructed?
    Code Meaning
    volVectorField magU
    (
    IOobject
    (
    "magU",
    Times[i].name(),
    runTime,
    IOobject::NO_READ
    IOobject::AUTO_WRITE
    ),
    ::mag(U)
    );
    magU.write();
    construct mag(U) object of type volScalarField called magU
    write it out
    1.1.17. What are the read and write options?
    Class Meaning
    NO_READ
    Object created
    MUST_READ
    READ_IF_PRESENT
    Object asked to read
    NO_WRITE
    Object destroyed
    AUTO_WRITE
    Object asked to write
    1.1.18. How are objects represented in OpenFOAM?
    How to create an object that writes the magnitude of a velocity vector?

    Class Meaning
    #include "fvCFD.H"
    int main(int argc, char argv[])
    {

    include "addTimeOptions.H" include "setRootCase.H" include "createTime.H"

    instantList Times = runTime.times();

    include "createMesh.H"

    One block called main is needed
    #include to store commonly used code
    runTime is a variable of the OpenFOAM Time class - for timestepping through code
    for(label i=0; i<runTime.size(); i++)
    {
    runTime.setTime(Times[i],i);
    Info << "Time: " << runTime.value() << endl
    volVectorField U
    (
    IOobject
    (
    "U",
    Times[i].name(),
    runTime,
    IOobject::MUST READ
    ),
    mesh
    );
    Loop over all possible times
    Read in a volVectorField U
    volScalarField magU
    (
    IOobject
    (
    "magU",
    Times[i].name(),
    runTime,
    IOobject::NO READ,
    IOobject::AUTO WRITE
    ),
    ::mag(U)
    );
    magU.write();
    } return 0;}
    Construct a volScalarField magU
    Write out the velocity
    1.1.19. How is matrix inversion done in fvm?
    Each operator in fvm constructs particular entries in known M and y as a fvMatrix object
    fvMatrix is a template class (actual classes are fvScalarMatrix etc)
    fvMatrix handles storage via lduMatrix class
    fvMatrix class also handles solution
    1.1.20. What are lists?
    Class Meaning
    List<Type>
    Array template class
    Allows creation of a list of any object of a class e.g. List<vector>
    PtrList<Type>
    List of pointers
    SLList<Type>
    Non-intrusive singly-linked list
    1.1.21. What are fields?
    Class Meaning
    Field<Type>
    Array template class, e.g. Field<vector> = vectorField

    Renamed as scalarField, vectorField, tensorField, symmTensorField,
    tensorThirdField and symmTensorThirdField

    1.1.22. How is memory accessed?
    Arrays
    Pointers
    References
    1.1.23. How is IO Communication done?
    Code Meaning
    Info << "Time = " << runTime.timeName() << nl << endl;
    Info object is output to the screen
    1.1.24. How are derivatives of fields evaluated?
    Time derivative

    Divergence (div)
    Spatial derivative
    Discretised using the flux at the faces
    e.g. ∇⋅(uq) (the advection term)
    Gradient (grad)
    Spatial derivative
    e.g. ∇p in the momentum equation
    Laplacian
    Spatial derivative

    Discretised as ∇⋅μ∇q
    gradient scheme for ∇q
    interpolation for μ
    discretisation for ∇⋅
    e.g. μ∇2q in the momentum equation

    1.1.25. What are the functions for discretisation?
    Function Meaning
    fvc::ddt(A)
    fvm::ddt(A)
    Time derivative
    ∂A/∂t
    A can be a scalar, vector or tensor
    fvc::ddt(rho,A)
    fvm::ddt(rho,A)
    Density weighted time derivative
    ∂ρA/∂t
    ρ can be any scalar field
    fvc::d2dt2(rho,A)
    fvm::d2dt2(rho,A)
    Second density weighted time derivative
    ∂/∂t(ρ∂A/∂t)
    fvc::grad(A)
    fvm::grad(A)
    Gradient
    A can be a scalar or a vector
    Result is a volVectorField (from scalar) or a volTensorField (from vector)
    fvc::div(A)
    fvm::div(A)
    Divergence
    A can be a vector or a tensor
    Result is a volScalarField (from vector) or a volVectorField (from tensor)
    fvc::laplacian(A)
    fvm::laplacian(A)
    Laplacian
    ∇2A
    fvc::laplacian(mu, A)
    fvm::laplacian(mu, A)
    Laplacian
    ∇⋅(μ∇A)
    fvc::curl(A)
    fvm::curl(A)
    Curl
    ∇×A
    fvm::div(phi,A)
    Divergence using flux to evaluate this
    A can be a scalar, vector or a tensor
    fvm::Sp(rho,A)
    Implicit evaulation of source term
    fvm::SuSp(rho,A)
    Implicit or explicit evaulation of source term (depending on sign of rho
    1.1.26. How can are equations translated into code?
    Equation Code
    ∂q∂t+∇⋅qu=μ∇2q
    fvScalarMatrix transport
    (
    fvm::ddt(q)
    + fvm::div(phi,q)
    - fvm::laplacian(mu,q)
    );

    // phi is the flux from the momentum equation
    ∂T∂t=κ∇2T
    solve(fvm::ddt(T) == kappa*fvc::laplacian(T))

    // T is a volScalarField defined on the mesh
    // A discretised representation of the field variable T
    // solve performs matrix inversion for one step
    ∂k∂t+∇⋅ku−∇⋅[(ν+νt)∇k]=νt[1/2(∇u+∇uT]2−ε/k
    solve(
    fvm::ddt(k)
    + fvm::div(phi,k)
    - fvm::laplacian(nu()+nut,k)
    == nut*magSqr(symm(fvc::grad(U)))
    - fvm::Sp(epsilon/k,k)
    );
    1.1.27. How is the PISO algorithm programmed?
    The PISO (Pressure Implicit with Splitting of Operators) is an efficient method to solve the Navier-Stokes equations

    The algorithm can be summed up as follows:

    Set the boundary conditions.
    Solve the discretized momentum equation to compute an intermediate velocity field.
    Compute the mass fluxes at the cells faces.
    Solve the pressure equation.
    Correct the mass fluxes at the cell faces.
    Correct the velocities on the basis of the new pressure field.
    Update the boundary conditions.
    Repeat from 3 for the prescribed number of times.
    Increase the time step and repeat from 1.
    The implementation:

    Define the equation for U
    fvVectorMatrix UEqn
    (
    fvm::ddt(U)

    fvm::div(phi, U) fvm::laplacian(nu, U)
    );
    Solve the momentum predictor
    solve (UEqn == -fvc::grad(p));
    Calculate the ap coefficient and calculate U
    volScalarField rUA = 1.0/UEqn().A();
    U = rUA*UEqn().H();
    Calculate the flux
    phi = (fvc::interpolate(U) & mesh.Sf()) fvc::ddtPhiCorr(rUA, U, phi);
    adjustPhi(phi, U, p);
    Define and solve the pressure equation and repeat for the prescribed number of non-orthogonal corrector steps
    fvScalarMatrix pEqn
    (
    fvm::laplacian(rUA, p) == fvc::div(phi)
    );
    pEqn.setReference(pRefCell, pRefValue);
    pEqn.solve();
    Correct the flux
    if (nonOrth == nNonOrthCorr)
    {
    phi -= pEqn.flux();
    }
    Calculate continuity errors include "continuityErrs.H"

    Perform the momentum corrector step
    U -= rUA*fvc::grad(p);
    U.correctBoundaryConditions();
    The following is from the OpenFOAM UK Users Group:

    1.1.28. What are header files?
    Sections of code in separate files that are widely used - all function prototypes in a header file

    Equation Code
    #include "CourantNumber.H"
    File containing code for calculating Courant number
    1.1.29. What is wmake?
    wmake is a make system – directs the compiler to compile specific files in particular ways.

    Controlled through files in Make:
    files – specifies which user-written files to compile and what to call the result
    options – specifies additional header files/libraries to be included in the compilation.

  • OpenFOAM删除全部时间步下的某个文件

    1
    1 帖子
    1k 浏览
    李东岳

    有些场数据完全不需要,比如ddt场,可以通过

    find . -name "ddt*" -type f

    确认删除的场,然后

    find . -name "ddt*" -type f -delete

    删除

    参考 https://askubuntu.com/questions/377438/how-can-i-recursively-delete-all-files-of-a-specific-extension-in-the-current-di

  • 1 帖子
    1k 浏览

    按照文献中的案例模拟了一个三维方腔流
    我的垂直速度曲线图和水平速度曲线图
    BOT8L352FD5IWM~S5IFVX42.png MS0N{_5W.png
    和实验结果不一样
    QQ图片20190306104704.png
    是什么原因造成的?

  • 2 帖子
    2k 浏览
    bestucanB

    OpenFOAM手册第六章讲后处理。所有的数据都在文本里存着,所以这个后处理更像是取样(sample)。
    用命令把速度数据提成单个文件,用其他后处理软件读取画图。
    或者把扩展名改成cvs就可以用excel打开。在excel或者matlab里画。

    如果OpenFOAM自带的命令满足不了你的需求。就搜linux上的文本处理软件,根据数据的特征(位置特征、前后缀特征)提取。

  • fvsPatchField与fvPatchField的区别

    2
    2 帖子
    2k 浏览
    Z

    个人感觉fvPatchField是记录定义在网格体中心(cell center)的变量比如U在计算域边界上的值。fvsPatchField是记录定义在网格面中心(face center of cell)的变量比如phi,在计算域边界上的值。

  • OpenFOAM模拟管道流

    7
    7 帖子
    8k 浏览
    L

    @东岳 这个模型我很需要,请问东岳先生是用OF哪个版本的哪个求解器实现的?能否引入侧吹(也就是气泡从侧方吹入,而不是底部吹入)?

  • new cannot satisfy memory request

    1
    1 帖子
    1k 浏览
    李东岳
    new cannot satisfy memory request. This does not necessarily mean you have run out of virtual memory. It could be due to a stack violation caused by e.g. bad use of pointers or an out of date shared library

    如果你遇到这个问题,一种解决方式是把你的求解器重新编译一下,可能是bad use of out of date shared library。原因是你的库重新写了一些代码并重新编译了,但求解器没跟进

  • OpenFOAM中的LISA模型中粒径分布怎么设置

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    2k 浏览

    请教各位老师和同学一个问题:我在使用sprayFoam求解器的时候,想把液滴初次雾化模型 atomizationModel设置为LISA模型,请问该模型得到的液滴直径分布是否会和injectionModel中设置的初始粒径相互冲突吗,foam中是怎么处理的?