SRFForce.C
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27
28#include "SRFForce.H"
29
30// * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
31
32template<class CloudType>
34(
35 CloudType& owner,
36 const fvMesh& mesh,
37 const dictionary& dict
38)
39:
40 ParticleForce<CloudType>(owner, mesh, dict, typeName, false),
41 srfPtr_(nullptr)
42{}
43
44
45template<class CloudType>
47(
48 const SRFForce& srff
49)
50:
52 srfPtr_(nullptr)
53{}
54
55
56// * * * * * * * * * * * * * * * * * Destructor * * * * * * * * * * * * * * //
57
58template<class CloudType>
60{}
61
62
63// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
64
65template<class CloudType>
67{
68 if (store)
69 {
70 const typename SRF::SRFModel& model = this->mesh().template
71 lookupObject<SRF::SRFModel>("SRFProperties");
72 srfPtr_ = &model;
73 }
74 else
75 {
76 srfPtr_ = nullptr;
77 }
78}
79
80
81template<class CloudType>
83(
84 const typename CloudType::parcelType& p,
85 const typename CloudType::parcelType::trackingData& td,
86 const scalar dt,
87 const scalar mass,
88 const scalar Re,
89 const scalar muc
90) const
91{
92 forceSuSp value(Zero);
93
94 const typename SRF::SRFModel& srf = *srfPtr_;
95
96 const vector& omega = srf.omega().value();
97
98 const vector r(p.position());
99
100 // Coriolis and centrifugal acceleration terms
101 value.Su() =
102 mass*(1.0 - td.rhoc()/p.rho())
103 *(2.0*(p.U() ^ omega) + (omega ^ (r ^ omega)));
104
105 return value;
106}
107
108
109// ************************************************************************* //
Templated base class for dsmc cloud.
Definition: DSMCCloud.H:75
ParcelType parcelType
Type of parcel the cloud was instantiated for.
Definition: DSMCCloud.H:220
Abstract base class for particle forces.
Definition: ParticleForce.H:60
Calculates particle SRF reference frame force.
Definition: SRFForce.H:60
virtual forceSuSp calcNonCoupled(const typename CloudType::parcelType &p, const typename CloudType::parcelType::trackingData &td, const scalar dt, const scalar mass, const scalar Re, const scalar muc) const
Calculate the non-coupled force.
Definition: SRFForce.C:83
virtual ~SRFForce()
Destructor.
Definition: SRFForce.C:59
virtual void cacheFields(const bool store)
Cache fields.
Definition: SRFForce.C:66
Top level model for single rotating frame.
Definition: SRFModel.H:67
const dimensionedVector & omega() const
Return the angular velocity field [rad/s].
Definition: SRFModel.C:112
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:126
const Type & value() const
Return const reference to value.
Class used to pass data into container.
Helper container for force Su and Sp terms.
Definition: forceSuSp.H:67
const vector & Su() const
Return const access to the explicit contribution [kg.m/s2].
Definition: forceSuSpI.H:61
Mesh data needed to do the Finite Volume discretisation.
Definition: fvMesh.H:91
volScalarField & p
dynamicFvMesh & mesh
scalarField Re(const UList< complex > &cf)
Extract real component.
Definition: complexField.C:159
static constexpr const zero Zero
Global zero (0)
Definition: zero.H:131
dictionary dict