LehrMilliesMewes.H
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25
26Class
27 Foam::diameterModels::binaryBreakupModels::LehrMilliesMewes
28
29Description
30 Model of Lehr et al. (2002). The breakup rate is calculated by
31
32 \f[
33 0.5 d_j^{*^{5/3}} \mathrm{exp}\left(-\frac{\sqrt{2}}{d_j^{*^{3}}}\right)
34 \frac{6}{\pi^{3/2}d_i^{*^{3}}}
35 \mathrm{exp}
36 \left(
37 - \frac{9}{4}\left[\mathrm{ln}\left(2^{2/5} d_i^{*}\right)\right]^{2}
38 \right)
39 \left(
40 1
41 + \mathrm{erf}
42 \left[
43 \frac{3}{2}\mathrm{ln} \left(2^{1/15} d_j^{*}\right)
44 \right]
45 \right)^{-1}
46 \frac{1}{L^{3}T}
47 \f]
48
49 with the time scale
50
51 \f[
52 T = \left(\frac{\sigma}{\rho_c}\right)^{2/5} \frac{1}{\epsilon_c^{3/5}}
53 \f]
54
55 the dimensionless diameter
56
57 \f[
58 d^{*} = \frac{d}{L}
59 \f]
60
61 and the length scale
62
63 \f[
64 L = \left(\frac{\sigma}{\rho_c}\right)^{3/5} \frac{1}{\epsilon_c^{2/5}}
65 \f]
66
67 \vartable
68 \rho_c | Density of continuous phase [kg/m3]
69 \sigma | Surface tension [N/m]
70 \epsilon_c | Continuous phase turbulent dissipation rate [m2/s3]
71 d_i | Diameter of daughter bubble i [m]
72 d_j | Diameter of mother bubble j [m]
73 \endvartable
74
75 References:
76 \verbatim
77 Lehr, F., Millies, M., & Mewes, D. (2002).
78 Bubble‐size distributions and flow fields in bubble columns.
79 AIChE Journal, 48(11), 2426-2443.
80 Eq. 12-16, p. 2429-2430.
81 \endverbatim
82
83SourceFiles
84 LehrMilliesMewes.C
85
86\*---------------------------------------------------------------------------*/
87
88#ifndef LehrMilliesMewes_H
89#define LehrMilliesMewes_H
90
91#include "binaryBreakupModel.H"
92
93// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
94
95namespace Foam
96{
97namespace diameterModels
98{
99namespace binaryBreakupModels
100{
101
102/*---------------------------------------------------------------------------*\
103 Class LehrMilliesMewes Declaration
104\*---------------------------------------------------------------------------*/
105
106class LehrMilliesMewes
107:
108 public binaryBreakupModel
109{
110public:
111
112 //- Runtime type information
113 TypeName("LehrMilliesMewes");
114
115 // Constructor
116
118 (
119 const populationBalanceModel& popBal,
120 const dictionary& dict
121 );
122
123
124 //- Destructor
125 virtual ~LehrMilliesMewes() = default;
126
127
128 // Member Functions
129
130 //- Add to binary breakupRate
131 virtual void addToBinaryBreakupRate
133 volScalarField& binaryBreakupRate,
134 const label i,
135 const label j
136 );
137};
138
139
140// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
141
142} // End namespace binaryBreakupModels
143} // End namespace diameterModels
144} // End namespace Foam
145
146// * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * //
147
148#endif
149
150// ************************************************************************* //
Base class for binary breakup models which give the breakup rate between a sizeGroup pair directly,...
Model of Lehr et al. (2002). The breakup rate is calculated by.
LehrMilliesMewes(const populationBalanceModel &popBal, const dictionary &dict)
virtual void addToBinaryBreakupRate(volScalarField &binaryBreakupRate, const label i, const label j)
Add to binary breakupRate.
TypeName("LehrMilliesMewes")
Runtime type information.
Class that solves the univariate population balance equation by means of a class method (also called ...
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:126
Namespace for OpenFOAM.
dictionary dict
#define TypeName(TypeNameString)
Declare a ClassName() with extra virtual type info.
Definition: typeInfo.H:73