47 typedef ::Opm::IdealGas<Scalar> IdealGas;
48 static const int liquidPhaseIdx = 0;
49 static const int gasPhaseIdx = 1;
62 template <
class Evaluation,
class CO2Params>
63 OPM_HOST_DEVICE
static Evaluation
gasDiffCoeff(
const CO2Params& params,
64 const Evaluation& temperature,
65 const Evaluation& pressure,
66 bool extrapolate =
false)
69 Scalar k = 1.3806504e-23;
71 Scalar R_h = 1.72e-10;
72 const Evaluation& mu =
CO2::gasViscosity(params, temperature, pressure, extrapolate);
73 return k / (c * M_PI * R_h) * (temperature / mu);
82 template <
class Evaluation>
83 OPM_HOST_DEVICE
static Evaluation
liquidDiffCoeff(
const Evaluation& ,
const Evaluation& )
109 template <
class Evaluation,
class CO2Params>
110 OPM_HOST_DEVICE
static void
112 const Evaluation& temperature,
113 const Evaluation& pg,
115 const int knownPhaseIdx,
118 const int& activityModel,
119 bool extrapolate =
false)
121 OPM_TIMEFUNCTION_LOCAL(Subsystem::PvtProps);
124 bool iterate =
false;
125 if ((activityModel == 1 &&
salinity > 0.0) || (activityModel == 2 && temperature > 372.15)) {
131 if (knownPhaseIdx < 0) {
132 Evaluation molalityNaCl = massFracToMolality_(
salinity);
138 if (activityModel == 3) {
139 auto [xCO2, yH2O] = mutualSolubilitySpycherPruess2005_(params, temperature, pg, molalityNaCl, extrapolate);
147 auto [xCO2, yH2O] = fixPointIterSolubility_(params, temperature, pg, molalityNaCl, activityModel, extrapolate);
154 auto [xCO2, yH2O] = nonIterSolubility_(params, temperature, pg, molalityNaCl, activityModel, extrapolate);
164 else if (knownPhaseIdx == liquidPhaseIdx && activityModel == 3) {
165 Evaluation x_NaCl = salinityToMolFrac_(
salinity);
166 const Evaluation& A = computeA_(params, temperature, pg, Evaluation(0.0), Evaluation(0.0),
false, extrapolate,
true);
167 ygH2O = A * (1 - xlCO2 - x_NaCl);
173 else if (knownPhaseIdx == gasPhaseIdx && activityModel == 3) {
175 Evaluation x_NaCl = salinityToMolFrac_(
salinity);
176 const Evaluation& A = computeA_(params, temperature, pg, Evaluation(0.0), Evaluation(0.0),
false, extrapolate,
true);
177 xlCO2 = 1 - x_NaCl - ygH2O / A;
184 template <
class Evaluation>
185 static Evaluation
henry(
const Evaluation& temperature,
bool extrapolate =
false)
201 template <
class Evaluation,
class CO2Params>
203 const Evaluation& temperature,
204 const Evaluation& pg,
205 const Evaluation& yH2O,
207 bool extrapolate =
false,
208 bool spycherPruess2005 =
false)
210 OPM_TIMEFUNCTION_LOCAL(Subsystem::PvtProps);
215 const Evaluation pg_bar = pg / 1.e5;
219 const Evaluation a_CO2 = aCO2_(temperature, highTemp);
220 const Evaluation a_CO2_H2O = aCO2_H2O_(temperature, yH2O, highTemp);
221 const Evaluation a_mix = aMix_(temperature, yH2O, highTemp);
222 const Scalar b_CO2 = bCO2_(highTemp);
223 const Evaluation b_mix = bMix_(yH2O, highTemp);
224 const Evaluation Rt15 = R * pow(temperature, 1.5);
227 if (spycherPruess2005) {
228 const Evaluation logVpb_V = log((V + b_CO2) / V);
229 lnPhiCO2 = log(V / (V - b_CO2));
230 lnPhiCO2 += b_CO2 / (V - b_CO2);
231 lnPhiCO2 -= 2 * a_CO2 / (Rt15 * b_CO2) * logVpb_V;
238 - b_CO2 / (V + b_CO2));
239 lnPhiCO2 -= log(pg_bar * V / (R * temperature));
242 lnPhiCO2 = (b_CO2 / b_mix) * (pg_bar * V / (R * temperature) - 1);
243 lnPhiCO2 -= log(pg_bar * (V - b_mix) / (R * temperature));
244 lnPhiCO2 += (2 * (yH2O * a_CO2_H2O + (1 - yH2O) * a_CO2) / a_mix - (b_CO2 / b_mix)) *
245 a_mix / (b_mix * Rt15) * log(V / (V + b_mix));
247 return exp(lnPhiCO2);
263 template <
class Evaluation,
class CO2Params>
265 const Evaluation& temperature,
266 const Evaluation& pg,
267 const Evaluation& yH2O,
269 bool extrapolate =
false,
270 bool spycherPruess2005 =
false)
272 OPM_TIMEFUNCTION_LOCAL(Subsystem::PvtProps);
277 const Evaluation& pg_bar = pg / 1.e5;
281 const Evaluation a_H2O = aH2O_(temperature, highTemp);
282 const Evaluation a_CO2_H2O = aCO2_H2O_(temperature, yH2O, highTemp);
283 const Evaluation a_mix = aMix_(temperature, yH2O, highTemp);
284 const Scalar b_H2O = bH2O_(highTemp);
285 const Evaluation b_mix = bMix_(yH2O, highTemp);
286 const Evaluation Rt15 = R * pow(temperature, 1.5);
289 if (spycherPruess2005) {
290 const Evaluation logVpb_V = log((V + b_mix) / V);
293 + b_H2O/(V - b_mix) - 2*a_CO2_H2O
294 / (Rt15*b_mix)*logVpb_V
295 + a_mix*b_H2O/(Rt15*b_mix*b_mix)
296 *(logVpb_V - b_mix/(V + b_mix))
297 - log(pg_bar*V/(R*temperature));
300 lnPhiH2O = (b_H2O / b_mix) * (pg_bar * V / (R * temperature) - 1);
301 lnPhiH2O -= log(pg_bar * (V - b_mix) / (R * temperature));
302 lnPhiH2O += (2 * (yH2O * a_H2O + (1 - yH2O) * a_CO2_H2O) / a_mix - (b_H2O / b_mix)) *
303 a_mix / (b_mix * Rt15) * log(V / (V + b_mix));
305 return exp(lnPhiH2O);
312 template <
class Evaluation>
313 OPM_HOST_DEVICE
static Evaluation aCO2_(
const Evaluation& temperature,
const bool& highTemp)
316 return 8.008e7 - 4.984e4 * temperature;
319 return 7.54e7 - 4.13e4 * temperature;
326 template <
class Evaluation>
327 OPM_HOST_DEVICE
static Evaluation aH2O_(
const Evaluation& temperature,
const bool& highTemp)
330 return 1.337e8 - 1.4e4 * temperature;
340 template <
class Evaluation>
341 OPM_HOST_DEVICE
static Evaluation aCO2_H2O_(
const Evaluation& temperature,
const Evaluation& yH2O,
const bool& highTemp)
345 Evaluation aCO2 = aCO2_(temperature, highTemp);
346 Evaluation aH2O = aH2O_(temperature, highTemp);
349 Evaluation K_CO2_H2O = 0.4228 - 7.422e-4 * temperature;
350 Evaluation K_H2O_CO2 = 1.427e-2 - 4.037e-4 * temperature;
351 Evaluation k_CO2_H2O = yH2O * K_H2O_CO2 + (1 - yH2O) * K_CO2_H2O;
354 return sqrt(aCO2 * aH2O) * (1 - k_CO2_H2O);
364 template <
class Evaluation>
365 OPM_HOST_DEVICE
static Evaluation aMix_(
const Evaluation& temperature,
const Evaluation& yH2O,
const bool& highTemp)
369 Evaluation aCO2 = aCO2_(temperature, highTemp);
370 Evaluation aH2O = aH2O_(temperature, highTemp);
371 Evaluation a_CO2_H2O = aCO2_H2O_(temperature, yH2O, highTemp);
373 return yH2O * yH2O * aH2O + 2 * yH2O * (1 - yH2O) * a_CO2_H2O + (1 - yH2O) * (1 - yH2O) * aCO2;
376 return aCO2_(temperature, highTemp);
383 OPM_HOST_DEVICE
static Scalar bCO2_(
const bool& highTemp)
396 OPM_HOST_DEVICE
static Scalar bH2O_(
const bool& highTemp)
409 template <
class Evaluation>
410 OPM_HOST_DEVICE
static Evaluation bMix_(
const Evaluation& yH2O,
const bool& highTemp)
414 Scalar bCO2 = bCO2_(highTemp);
415 Scalar bH2O = bH2O_(highTemp);
417 return yH2O * bH2O + (1 - yH2O) * bCO2;
420 return bCO2_(highTemp);
427 template <
class Evaluation>
428 OPM_HOST_DEVICE
static Evaluation V_avg_CO2_(
const Evaluation& temperature,
const bool& highTemp)
430 if (highTemp && (temperature > 373.15)) {
431 return 32.6 + 3.413e-2 * (temperature - 373.15);
441 template <
class Evaluation>
442 OPM_HOST_DEVICE
static Evaluation V_avg_H2O_(
const Evaluation& temperature,
const bool& highTemp)
444 if (highTemp && (temperature > 373.15)) {
445 return 18.1 + 3.137e-2 * (temperature - 373.15);
455 template <
class Evaluation>
456 OPM_HOST_DEVICE
static Evaluation AM_(
const Evaluation& temperature,
const bool& highTemp)
458 if (highTemp && temperature > 373.15) {
459 Evaluation deltaTk = temperature - 373.15;
460 return deltaTk * (-3.084e-2 + 1.927e-5 * deltaTk);
470 template <
class Evaluation>
471 OPM_HOST_DEVICE
static Evaluation Pref_(
const Evaluation& temperature,
const bool& highTemp)
473 if (highTemp && temperature > 373.15) {
474 const Evaluation& temperatureCelcius = temperature - 273.15;
475 static const Scalar c[5] = { -1.9906e-1, 2.0471e-3, 1.0152e-4, -1.4234e-6, 1.4168e-8 };
476 return c[0] + temperatureCelcius * (c[1] + temperatureCelcius * (c[2] +
477 temperatureCelcius * (c[3] + temperatureCelcius * c[4])));
487 template <
class Evaluation>
488 OPM_HOST_DEVICE
static Evaluation activityCoefficientCO2_(
const Evaluation& temperature,
489 const Evaluation& xCO2,
490 const bool& highTemp)
494 Evaluation AM = AM_(temperature, highTemp);
495 Evaluation lnGammaCO2 = 2 * AM * xCO2 * (1 - xCO2) * (1 - xCO2);
496 return exp(lnGammaCO2);
506 template <
class Evaluation>
507 OPM_HOST_DEVICE
static Evaluation activityCoefficientH2O_(
const Evaluation& temperature,
508 const Evaluation& xCO2,
509 const bool& highTemp)
513 Evaluation AM = AM_(temperature, highTemp);
514 Evaluation lnGammaH2O = (1 - 2 * (1 - xCO2)) * AM * xCO2 * xCO2;
515 return exp(lnGammaH2O);
527 template <
class Evaluation>
528 OPM_HOST_DEVICE
static Evaluation salinityToMolFrac_(
const Evaluation&
salinity) {
529 OPM_TIMEFUNCTION_LOCAL(Subsystem::PvtProps);
531 const Scalar Ms = 58.44e-3;
535 const Evaluation x_NaCl = -Mw * X_NaCl / ((Ms - Mw) * X_NaCl - Ms);
545 template <
class Evaluation>
546 OPM_HOST_DEVICE
static Evaluation moleFracToMolality_(
const Evaluation& x_NaCl)
549 return 55.508 * x_NaCl / (1 - x_NaCl);
553 template <
class Evaluation>
554 OPM_HOST_DEVICE
static Evaluation massFracToMolality_(
const Evaluation& X_NaCl)
556 const Scalar MmNaCl = 58.44e-3;
557 return X_NaCl / (MmNaCl * (1 - X_NaCl));
565 template <
class Evaluation>
566 OPM_HOST_DEVICE
static Evaluation molalityToMoleFrac_(
const Evaluation& m_NaCl)
569 return m_NaCl / (55.508 + m_NaCl);
575 template <
class Evaluation,
class CO2Parameters>
576 OPM_HOST_DEVICE
static std::pair<Evaluation, Evaluation> fixPointIterSolubility_(
const CO2Parameters& params,
577 const Evaluation& temperature,
578 const Evaluation& pg,
579 const Evaluation& m_NaCl,
580 const int& activityModel,
581 bool extrapolate =
false)
583 OPM_TIMEFUNCTION_LOCAL(Subsystem::PvtProps);
586 Evaluation xCO2 = 0.009;
587 Evaluation gammaNaCl = 1.0;
590 if (m_NaCl > 0.0 && activityModel == 2) {
591 gammaNaCl = activityCoefficientSalt_(temperature, pg, m_NaCl, Evaluation(0.0), activityModel);
597 bool highTemp =
true;
598 if (activityModel == 1) {
601 const bool iterate =
true;
604 for (
int i = 0; i < max_iter; ++i) {
606 if (m_NaCl > 0.0 && activityModel == 1) {
607 gammaNaCl = activityCoefficientSalt_(temperature, pg, m_NaCl, xCO2, activityModel);
611 auto [xCO2_new, yH2O_new] = mutualSolubility_(params, temperature, pg, xCO2, yH2O, m_NaCl, gammaNaCl, highTemp,
612 iterate, extrapolate);
615 if (abs(xCO2_new - xCO2) < tol && abs(yH2O_new - yH2O) < tol) {
634 template <
class Evaluation,
class CO2Parameters>
635 OPM_HOST_DEVICE
static std::pair<Evaluation, Evaluation> nonIterSolubility_(
const CO2Parameters& params,
636 const Evaluation& temperature,
637 const Evaluation& pg,
638 const Evaluation& m_NaCl,
639 const int& activityModel,
640 bool extrapolate =
false)
643 Evaluation gammaNaCl = 1.0;
644 if (m_NaCl > 0.0 && activityModel > 0 && activityModel < 3) {
645 gammaNaCl = activityCoefficientSalt_(temperature, pg, m_NaCl, Evaluation(0.0), activityModel);
650 const bool highTemp =
false;
651 const bool iterate =
false;
652 auto [xCO2, yH2O] = mutualSolubility_(params, temperature, pg, Evaluation(0.0), Evaluation(0.0), m_NaCl, gammaNaCl,
653 highTemp, iterate, extrapolate);
661 template <
class Evaluation,
class CO2Parameters>
662 OPM_HOST_DEVICE
static std::pair<Evaluation, Evaluation> mutualSolubility_(
const CO2Parameters& params,
663 const Evaluation& temperature,
664 const Evaluation& pg,
665 const Evaluation& xCO2,
666 const Evaluation& yH2O,
667 const Evaluation& m_NaCl,
668 const Evaluation& gammaNaCl,
669 const bool& highTemp,
671 bool extrapolate =
false)
674 const Evaluation& A = computeA_(params, temperature, pg, yH2O, xCO2, highTemp, extrapolate);
675 Evaluation B = computeB_(params, temperature, pg, yH2O, xCO2, highTemp, extrapolate);
681 Evaluation yH2O_new = (1. - B) * 55.508 / ((1. / A - B) * (2 * m_NaCl + 55.508) + 2 * m_NaCl * B);
684 xCO2_new = B * (1 - yH2O);
687 xCO2_new = B * (1 - yH2O_new);
690 return {xCO2_new, yH2O_new};
696 template <
class Evaluation,
class CO2Parameters>
697 OPM_HOST_DEVICE
static std::pair<Evaluation, Evaluation> mutualSolubilitySpycherPruess2005_(
const CO2Parameters& params,
698 const Evaluation& temperature,
699 const Evaluation& pg,
700 const Evaluation& m_NaCl,
701 bool extrapolate =
false)
704 const Evaluation& A = computeA_(params, temperature, pg, Evaluation(0.0), Evaluation(0.0),
false, extrapolate,
true);
705 const Evaluation& B = computeB_(params, temperature, pg, Evaluation(0.0), Evaluation(0.0),
false, extrapolate,
true);
708 Evaluation yH2O = (1 - B) / (1. / A - B);
709 Evaluation xCO2 = B * (1 - yH2O);
713 const Evaluation& gammaNaCl = activityCoefficientSalt_(temperature, pg, m_NaCl, Evaluation(0.0), 3);
716 Evaluation mCO2 = (xCO2 * 55.508) / (1 - xCO2);
718 xCO2 = mCO2 / (m_NaCl + 55.508 + mCO2);
721 const Evaluation& xNaCl = molalityToMoleFrac_(m_NaCl);
722 yH2O = A * (1 - xCO2 - xNaCl);
736 template <
class Evaluation,
class CO2Params>
737 OPM_HOST_DEVICE
static Evaluation computeA_(
const CO2Params& params,
738 const Evaluation& temperature,
739 const Evaluation& pg,
740 const Evaluation& yH2O,
741 const Evaluation& xCO2,
742 const bool& highTemp,
743 bool extrapolate =
false,
744 bool spycherPruess2005 =
false)
746 OPM_TIMEFUNCTION_LOCAL(Subsystem::PvtProps);
748 const Evaluation& deltaP = pg / 1e5 - Pref_(temperature, highTemp);
749 Evaluation v_av_H2O = V_avg_H2O_(temperature, highTemp);
750 Evaluation k0_H2O = equilibriumConstantH2O_(temperature, highTemp);
751 Evaluation phi_H2O =
fugacityCoefficientH2O(params, temperature, pg, yH2O, highTemp, extrapolate, spycherPruess2005);
752 Evaluation gammaH2O = activityCoefficientH2O_(temperature, xCO2, highTemp);
756 if ( temperature > 372.15 && temperature < 382.15 && !spycherPruess2005) {
757 const Evaluation weight = (382.15 - temperature) / 10.;
758 const Evaluation& k0_H2O_low = equilibriumConstantH2O_(temperature,
false);
759 const Evaluation& phi_H2O_low =
fugacityCoefficientH2O(params, temperature, pg, Evaluation(0.0),
false, extrapolate);
760 k0_H2O = k0_H2O * (1 - weight) + k0_H2O_low * weight;
761 phi_H2O = phi_H2O * (1 - weight) + phi_H2O_low * weight;
765 const Evaluation& pg_bar = pg / 1.e5;
767 return k0_H2O * gammaH2O / (phi_H2O * pg_bar) * exp(deltaP * v_av_H2O / (R * temperature));
778 template <
class Evaluation,
class CO2Parameters>
779 static Evaluation computeB_(
const CO2Parameters& params,
780 const Evaluation& temperature,
781 const Evaluation& pg,
782 const Evaluation& yH2O,
783 const Evaluation& xCO2,
784 const bool& highTemp,
785 bool extrapolate =
false,
786 bool spycherPruess2005 =
false)
788 OPM_TIMEFUNCTION_LOCAL(Subsystem::PvtProps);
790 const Evaluation& deltaP = pg / 1e5 - Pref_(temperature, highTemp);
791 Evaluation v_av_CO2 = V_avg_CO2_(temperature, highTemp);
792 Evaluation k0_CO2 = equilibriumConstantCO2_(temperature, pg, highTemp, spycherPruess2005);
793 Evaluation phi_CO2 =
fugacityCoefficientCO2(params, temperature, pg, yH2O, highTemp, extrapolate, spycherPruess2005);
794 Evaluation gammaCO2 = activityCoefficientCO2_(temperature, xCO2, highTemp);
798 if ( temperature > 372.15 && temperature < 382.15 && !spycherPruess2005) {
799 const Evaluation weight = (382.15 - temperature) / 10.;
800 const Evaluation& k0_CO2_low = equilibriumConstantCO2_(temperature, pg,
false, spycherPruess2005);
801 const Evaluation& phi_CO2_low =
fugacityCoefficientCO2(params, temperature, pg, Evaluation(0.0),
false, extrapolate);
802 k0_CO2 = k0_CO2 * (1 - weight) + k0_CO2_low * weight;
803 phi_CO2 = phi_CO2 * (1 - weight) + phi_CO2_low * weight;
807 const Evaluation& pg_bar = pg / 1.e5;
809 return phi_CO2 * pg_bar / (55.508 * k0_CO2 * gammaCO2) * exp(-deltaP * v_av_CO2 / (R * temperature));
815 template <
class Evaluation>
816 OPM_HOST_DEVICE
static Evaluation activityCoefficientSalt_(
const Evaluation& temperature,
817 const Evaluation& pg,
818 const Evaluation& m_NaCl,
819 const Evaluation& xCO2,
820 const int& activityModel)
822 OPM_TIMEFUNCTION_LOCAL(Subsystem::PvtProps);
829 if (activityModel == 1) {
830 lambda = computeLambdaRumpfetal_(temperature);
832 Evaluation m_CO2 = xCO2 * (2 * m_NaCl + 55.508) / (1 - xCO2);
833 convTerm = (1 + (m_CO2 + 2 * m_NaCl) / 55.508) / (1 + m_CO2 / 55.508);
835 else if (activityModel == 2) {
836 lambda = computeLambdaSpycherPruess2009_(temperature);
837 xi = computeXiSpycherPruess2009_(temperature);
838 convTerm = 1 + 2 * m_NaCl / 55.508;
840 else if (activityModel == 3) {
841 lambda = computeLambdaDuanSun_(temperature, pg);
842 xi = computeXiDuanSun_(temperature, pg);
846 throw std::runtime_error(
"Activity model for salt-out effect has not been implemented!");
850 const Evaluation& lnGamma = 2 * lambda * m_NaCl + xi * m_NaCl * m_NaCl;
853 return convTerm * exp(lnGamma);
859 template <
class Evaluation>
860 OPM_HOST_DEVICE
static Evaluation computeLambdaSpycherPruess2009_(
const Evaluation& temperature)
863 static const Scalar c[3] = { 2.217e-4, 1.074, 2648. };
866 return c[0] * temperature + c[1] / temperature + c[2] / (temperature * temperature);
872 template <
class Evaluation>
873 OPM_HOST_DEVICE
static Evaluation computeXiSpycherPruess2009_(
const Evaluation& temperature)
876 static const Scalar c[3] = { 1.3e-5, -20.12, 5259. };
879 return c[0] * temperature + c[1] / temperature + c[2] / (temperature * temperature);
885 template <
class Evaluation>
886 OPM_HOST_DEVICE
static Evaluation computeLambdaRumpfetal_(
const Evaluation& temperature)
889 static const Scalar c[4] = { 0.254, -76.82, -10656, 6312e3 };
891 return c[0] + c[1] / temperature + c[2] / (temperature * temperature) +
892 c[3] / (temperature * temperature * temperature);
902 template <
class Evaluation>
903 OPM_HOST_DEVICE
static Evaluation computeLambdaDuanSun_(
const Evaluation& temperature,
const Evaluation& pg)
905 static const Scalar c[6] =
906 { -0.411370585, 6.07632013E-4, 97.5347708, -0.0237622469, 0.0170656236, 1.41335834E-5 };
908 Evaluation pg_bar = pg / 1.0E5;
909 return c[0] + c[1]*temperature + c[2]/temperature + c[3]*pg_bar/temperature + c[4]*pg_bar/(630.0 - temperature)
910 + c[5]*temperature*log(pg_bar);
920 template <
class Evaluation>
921 OPM_HOST_DEVICE
static Evaluation computeXiDuanSun_(
const Evaluation& temperature,
const Evaluation& pg)
923 static const Scalar c[4] =
924 { 3.36389723E-4, -1.98298980E-5, 2.12220830E-3, -5.24873303E-3 };
926 Evaluation pg_bar = pg / 1.0E5;
927 return c[0] + c[1]*temperature + c[2]*pg_bar/temperature + c[3]*pg_bar/(630.0 - temperature);
936 template <
class Evaluation>
937 static Evaluation equilibriumConstantCO2_(
const Evaluation& temperature,
938 const Evaluation& pg,
939 const bool& highTemp,
940 bool spycherPruess2005 =
false)
942 OPM_TIMEFUNCTION_LOCAL(Subsystem::PvtProps);
943 Evaluation temperatureCelcius = temperature - 273.15;
944 std::array<Scalar, 4> c;
946 c = { 1.668, 3.992e-3, -1.156e-5, 1.593e-9 };
957 c = { 1.169, 1.368e-2, -5.38e-5, 0.0 };
960 c = { 1.189, 1.304e-2, -5.446e-5, 0.0 };
963 Evaluation logk0_CO2 = c[0] + temperatureCelcius * (c[1] + temperatureCelcius *
964 (c[2] + temperatureCelcius * c[3]));
965 Evaluation k0_CO2 = pow(10.0, logk0_CO2);
975 template <
class Evaluation>
976 OPM_HOST_DEVICE
static Evaluation equilibriumConstantH2O_(
const Evaluation& temperature,
const bool& highTemp)
978 Evaluation temperatureCelcius = temperature - 273.15;
979 std::array<Scalar, 5> c;
981 c = { -2.1077, 2.8127e-2, -8.4298e-5, 1.4969e-7, -1.1812e-10 };
984 c = { -2.209, 3.097e-2, -1.098e-4, 2.048e-7, 0.0 };
986 Evaluation logk0_H2O = c[0] + temperatureCelcius * (c[1] + temperatureCelcius * (c[2] +
987 temperatureCelcius * (c[3] + temperatureCelcius * c[4])));
988 return pow(10.0, logk0_H2O);