27 #ifndef OPM_CONSTANT_COMPRESSIBILITY_OIL_PVT_HPP 28 #define OPM_CONSTANT_COMPRESSIBILITY_OIL_PVT_HPP 45 template <
class Scalar>
60 void setVapPars(
const Scalar,
const Scalar)
71 { oilReferenceDensity_[regionIdx] = rhoRefOil; }
76 void setViscosity(
unsigned regionIdx, Scalar muo, Scalar oilViscosibility = 0.0)
78 oilViscosity_[regionIdx] = muo;
79 oilViscosibility_[regionIdx] = oilViscosibility;
86 { oilCompressibility_[regionIdx] = oilCompressibility; }
92 { oilReferencePressure_[regionIdx] = p; }
98 { oilReferenceFormationVolumeFactor_[regionIdx] = BoRef; }
104 { oilViscosibility_[regionIdx] = muComp; }
116 {
return oilViscosity_.size(); }
121 template <
class Evaluation>
125 const Evaluation&)
const 127 throw std::runtime_error(
"Requested the enthalpy of oil but the thermal " 128 "option is not enabled");
130 Scalar hVap(
unsigned)
const 132 throw std::runtime_error(
"Requested the hvap of oil but the thermal " 133 "option is not enabled");
139 template <
class Evaluation>
141 const Evaluation& temperature,
142 const Evaluation& pressure,
143 const Evaluation& )
const 149 template <
class Evaluation>
151 const Evaluation& temperature,
152 const Evaluation& pressure)
const 154 Scalar BoMuoRef = oilViscosity_[regionIdx]*oilReferenceFormationVolumeFactor_[regionIdx];
157 Scalar pRef = oilReferencePressure_[regionIdx];
158 const Evaluation& Y =
159 (oilCompressibility_[regionIdx] - oilViscosibility_[regionIdx])
161 return BoMuoRef * bo / (1.0 + Y * (1.0 + Y / 2.0));
167 template <
class Evaluation>
169 const Evaluation& temperature,
170 const Evaluation& pressure,
171 const Evaluation& )
const 177 template <
class Flu
idState,
class LhsEval =
typename Flu
idState::ValueType>
178 std::pair<LhsEval, LhsEval>
181 const LhsEval& p = decay<LhsEval>(fluidState.pressure(FluidState::oilPhaseIdx));
183 Scalar pRef = oilReferencePressure_[regionIdx];
184 const LhsEval X = oilCompressibility_[regionIdx] * (p - pRef);
185 Scalar BoRef = oilReferenceFormationVolumeFactor_[regionIdx];
186 const LhsEval bo = (1.0 + X * (1.0 + X / 2.0)) / BoRef;
188 const LhsEval Y = (oilCompressibility_[regionIdx] - oilViscosibility_[regionIdx]) * (p - pRef);
189 Scalar BoMuoRef = oilViscosity_[regionIdx]*oilReferenceFormationVolumeFactor_[regionIdx];
190 const LhsEval muo = BoMuoRef * bo / (1.0 + Y * (1.0 + Y / 2.0));
200 template <
class Evaluation>
203 const Evaluation& pressure)
const 206 Scalar pRef = oilReferencePressure_[regionIdx];
207 const Evaluation& X = oilCompressibility_[regionIdx]*(pressure - pRef);
209 Scalar BoRef = oilReferenceFormationVolumeFactor_[regionIdx];
210 return (1 + X*(1 + X/2))/BoRef;
216 template <
class Evaluation>
219 const Evaluation& )
const 225 template <
class Evaluation>
230 const Evaluation& )
const 240 template <
class Evaluation>
243 const Evaluation& )
const 246 template <
class Evaluation>
247 Evaluation diffusionCoefficient(
const Evaluation& ,
251 throw std::runtime_error(
"Not implemented: The PVT model does not " 252 "provide a diffusionCoefficient()");
255 Scalar oilReferenceDensity(
unsigned regionIdx)
const 256 {
return oilReferenceDensity_[regionIdx]; }
258 const std::vector<Scalar>& oilReferenceFormationVolumeFactor()
const 259 {
return oilReferenceFormationVolumeFactor_; }
261 const std::vector<Scalar>& oilCompressibility()
const 262 {
return oilCompressibility_; }
264 const std::vector<Scalar>& oilViscosity()
const 265 {
return oilViscosity_; }
267 const std::vector<Scalar>& oilViscosibility()
const 268 {
return oilViscosibility_; }
271 std::vector<Scalar> oilReferenceDensity_{};
272 std::vector<Scalar> oilReferencePressure_{};
273 std::vector<Scalar> oilReferenceFormationVolumeFactor_{};
274 std::vector<Scalar> oilCompressibility_{};
275 std::vector<Scalar> oilViscosity_{};
276 std::vector<Scalar> oilViscosibility_{};
void setCompressibility(unsigned regionIdx, Scalar oilCompressibility)
Set the compressibility of the oil phase.
Definition: ConstantCompressibilityOilPvt.hpp:85
void setViscosibility(unsigned regionIdx, Scalar muComp)
Set the oil "viscosibility" [1/ (Pa s)].
Definition: ConstantCompressibilityOilPvt.hpp:103
unsigned numRegions() const
Return the number of PVT regions which are considered by this PVT-object.
Definition: ConstantCompressibilityOilPvt.hpp:115
Evaluation saturatedGasDissolutionFactor(unsigned, const Evaluation &, const Evaluation &) const
Returns the gas dissolution factor [m^3/m^3] of the oil phase.
Definition: ConstantCompressibilityOilPvt.hpp:217
Definition: Schedule.hpp:100
This class represents the Pressure-Volume-Temperature relations of the oil phase without dissolved ga...
Definition: ConstantCompressibilityOilPvt.hpp:46
void setViscosity(unsigned regionIdx, Scalar muo, Scalar oilViscosibility=0.0)
Set the viscosity and "viscosibility" of the oil phase.
Definition: ConstantCompressibilityOilPvt.hpp:76
void setReferenceFormationVolumeFactor(unsigned regionIdx, Scalar BoRef)
Set the oil reference formation volume factor [-].
Definition: ConstantCompressibilityOilPvt.hpp:97
std::pair< LhsEval, LhsEval > inverseFormationVolumeFactorAndViscosity(const FluidState &fluidState, unsigned regionIdx)
Returns the formation volume factor [-] and viscosity [Pa s] of the fluid phase.
Definition: ConstantCompressibilityOilPvt.hpp:179
void initEnd()
Finish initializing the oil phase PVT properties.
Definition: ConstantCompressibilityOilPvt.hpp:109
This class implements a small container which holds the transmissibility mulitpliers for all the face...
Definition: Exceptions.hpp:30
Evaluation saturationPressure(unsigned, const Evaluation &, const Evaluation &) const
Returns the saturation pressure of the oil phase [Pa] depending on its mass fraction of the gas compo...
Definition: ConstantCompressibilityOilPvt.hpp:241
A number of commonly used algebraic functions for the localized OPM automatic differentiation (AD) fr...
Definition: EclipseState.hpp:66
Evaluation saturatedInverseFormationVolumeFactor(unsigned regionIdx, const Evaluation &, const Evaluation &pressure) const
Returns the formation volume factor [-] of gas saturated oil.
Definition: ConstantCompressibilityOilPvt.hpp:201
Evaluation internalEnergy(unsigned, const Evaluation &, const Evaluation &, const Evaluation &) const
Returns the specific enthalpy [J/kg] of oil given a set of parameters.
Definition: ConstantCompressibilityOilPvt.hpp:122
void initFromState(const EclipseState &eclState, const Schedule &)
Sets the pressure-dependent oil viscosity and density using the Eclipse PVCDO keyword.
Definition: ConstantCompressibilityOilPvt.cpp:37
void setReferencePressure(unsigned regionIdx, Scalar p)
Set the oil reference pressure [Pa].
Definition: ConstantCompressibilityOilPvt.hpp:91
Evaluation viscosity(unsigned regionIdx, const Evaluation &temperature, const Evaluation &pressure, const Evaluation &) const
Returns the dynamic viscosity [Pa s] of gas saturated oil given a pressure and a phase composition...
Definition: ConstantCompressibilityOilPvt.hpp:140
Evaluation inverseFormationVolumeFactor(unsigned regionIdx, const Evaluation &temperature, const Evaluation &pressure, const Evaluation &) const
Returns the formation volume factor [-] of the fluid phase.
Definition: ConstantCompressibilityOilPvt.hpp:168
Evaluation saturatedViscosity(unsigned regionIdx, const Evaluation &temperature, const Evaluation &pressure) const
Returns the dynamic viscosity [Pa s] of gas saturated oil given a pressure.
Definition: ConstantCompressibilityOilPvt.hpp:150
void setReferenceDensities(unsigned regionIdx, Scalar rhoRefOil, Scalar, Scalar)
Initialize the reference densities of all fluids for a given PVT region.
Definition: ConstantCompressibilityOilPvt.hpp:67
Evaluation saturatedGasDissolutionFactor(unsigned, const Evaluation &, const Evaluation &, const Evaluation &, const Evaluation &) const
Returns the gas dissolution factor [m^3/m^3] of the oil phase.
Definition: ConstantCompressibilityOilPvt.hpp:226