opm-common
EclEpsTwoPhaseLawParams.hpp
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27 #ifndef OPM_ECL_EPS_TWO_PHASE_LAW_PARAMS_HPP
28 #define OPM_ECL_EPS_TWO_PHASE_LAW_PARAMS_HPP
29 
30 #include "EclEpsConfig.hpp"
31 #include "EclEpsScalingPoints.hpp"
32 
33 #include <memory>
34 #include <cassert>
35 
37 
38 namespace Opm {
45 template <class EffLawT>
47 {
48  using EffLawParams = typename EffLawT::Params;
49  using Scalar = typename EffLawParams::Traits::Scalar;
50 
51 public:
52  using Traits = typename EffLawParams::Traits;
54 
56  {
57  }
58 
63  void finalize()
64  {
65 #ifndef NDEBUG
66  if (config_.enableSatScaling()) {
67  assert(unscaledPoints_);
68  }
69  assert(effectiveLawParams_);
70 #endif
72  }
73 
78  { config_ = value; }
79 
83  const EclEpsConfig& config() const
84  { return config_; }
85 
89  void setUnscaledPoints(std::shared_ptr<ScalingPoints> value)
90  { unscaledPoints_ = value.get(); }
91 
96  { return *unscaledPoints_; }
97 
102  { scaledPoints_ = value; }
103 
108  { return scaledPoints_; }
109 
114  { return scaledPoints_; }
115 
116  Scalar SnTrapped([[maybe_unused]] bool maximumTrapping) const
117  {
118  return 0.0;
119  }
120 
121  Scalar SnStranded([[maybe_unused]] Scalar sg, [[maybe_unused]] Scalar krg) const
122  {
123  return 0.0;
124  }
125 
126  Scalar SwTrapped() const
127  {
128  return 0.0;
129  }
130 
134  void setEffectiveLawParams(std::shared_ptr<EffLawParams> value)
135  { effectiveLawParams_ = value.get(); }
136 
140  const EffLawParams& effectiveLawParams() const
141  { return *effectiveLawParams_; }
142 
143  template<class Serializer>
144  void serializeOp(Serializer&)
145  {
146  // Do nothing, this class has no dynamic state!
147  // It is still somewhat useful to have this function,
148  // as then we do not need to embed that knowledge in
149  // other classes that may contain this one.
150  }
151 
152 private:
153  EffLawParams* effectiveLawParams_{};
154  EclEpsConfig config_;
155  ScalingPoints* unscaledPoints_{};
156  ScalingPoints scaledPoints_;
157 };
158 
159 } // namespace Opm
160 
161 #endif
void finalize()
Calculate all dependent quantities once the independent quantities of the parameter object have been ...
Definition: EclEpsTwoPhaseLawParams.hpp:63
const EffLawParams & effectiveLawParams() const
Returns the parameter object for the effective/nested material law.
Definition: EclEpsTwoPhaseLawParams.hpp:140
A default implementation of the parameters for the material law adapter class which implements ECL en...
Definition: EclEpsTwoPhaseLawParams.hpp:46
const ScalingPoints & unscaledPoints() const
Returns the scaling points which are seen by the nested material law.
Definition: EclEpsTwoPhaseLawParams.hpp:95
This class implements a small container which holds the transmissibility mulitpliers for all the face...
Definition: Exceptions.hpp:30
Specifies the configuration used by the endpoint scaling code.
Definition: EclEpsConfig.hpp:53
Represents the points on the X and Y axis to be scaled if endpoint scaling is used.
Definition: EclEpsScalingPoints.hpp:150
Default implementation for asserting finalization of parameter objects.
Specifies the configuration used by the endpoint scaling code.
const EclEpsConfig & config() const
Returns the endpoint scaling configuration object.
Definition: EclEpsTwoPhaseLawParams.hpp:83
void setConfig(const EclEpsConfig &value)
Set the endpoint scaling configuration object.
Definition: EclEpsTwoPhaseLawParams.hpp:77
OPM_HOST_DEVICE void finalize()
Mark the object as finalized.
Definition: EnsureFinalized.hpp:82
void setEffectiveLawParams(std::shared_ptr< EffLawParams > value)
Sets the parameter object for the effective/nested material law.
Definition: EclEpsTwoPhaseLawParams.hpp:134
const ScalingPoints & scaledPoints() const
Returns the scaling points which are seen by the physical model.
Definition: EclEpsTwoPhaseLawParams.hpp:107
Default implementation for asserting finalization of parameter objects.
Definition: EnsureFinalized.hpp:48
ScalingPoints & scaledPoints()
Returns the scaling points which are seen by the physical model.
Definition: EclEpsTwoPhaseLawParams.hpp:113
bool enableSatScaling() const
Returns whether saturation scaling is enabled.
Definition: EclEpsConfig.hpp:65
Class for (de-)serializing.
Definition: Serializer.hpp:94
void setScaledPoints(const ScalingPoints &value)
Set the scaling points which are seen by the physical model.
Definition: EclEpsTwoPhaseLawParams.hpp:101
void setUnscaledPoints(std::shared_ptr< ScalingPoints > value)
Set the scaling points which are seen by the nested material law.
Definition: EclEpsTwoPhaseLawParams.hpp:89