一些优化:CAN和PLC地址的优化
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CapMachine.Wpf/PPCalculation/REFPROP/FLUIDS/R407C.PPF
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CapMachine.Wpf/PPCalculation/REFPROP/FLUIDS/R407C.PPF
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R407C !Short name
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407C-407C !CAS number
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23% R32/25% R125/52% R134a !Full name
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R407C !Chemical formula
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R407C !Synonym
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86.2036 !Molar mass [g/mol]
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200.0 !Triple point temperature [K]
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229.52 !Normal boiling point [K]
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359.345 !Critical temperature [K]
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4631.7 !Critical pressure [kPa]
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5.26 !Critical density [mol/L]
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0.363 !Acentric factor
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-1. !Dipole moment [Debye]
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IIR !Default reference state
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10.0 !Version number
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???? !UN Number :UN:
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halocb !Family :Family:
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???? !Heating value (upper) at 25 C [kJ/mol] (ISO 6976:2016) :Heat:
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???? !IUPAC Int. Chemical Identifier :InChi:
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???? !InChi Key :InChiKey:
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???? !Alternative fluid for mixing rules :AltID:
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407c407c !Hash number from InChI Key :Hash:
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! compiled by E.W. Lemmon, NIST Physical and Chemical Properties Division, Boulder, Colorado
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! 11-14-02 EWL, original version
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________________________________________________________________________________
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#EOS !---Equation of state---
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FEQ !Helmholtz equation of state for R-407C of Lemmon (2003).
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:DOI: 10.1023/A:1025048800563
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?
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?```````````````````````````````````````````````````````````````````````````````
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?Lemmon, E.W.,
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? "Pseudo Pure-Fluid Equations of State for the Refrigerant Blends R-410A,
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? R-404A, R-507A, and R-407C,"
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? Int. J. Thermophys., 24(4):991-1006, 2003.
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?
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?The estimated uncertainty of density values calculated with the
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? equation of state is 0.1%. The estimated uncertainty of calculated
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? heat capacities and speed of sound values is 0.5%. Uncertainties of
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? bubble and dew point pressures are 0.5%.
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?
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!```````````````````````````````````````````````````````````````````````````````
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200.0 !Lower temperature limit [K]
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500.0 !Upper temperature limit [K]
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50000.0 !Upper pressure limit [kPa]
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17.04 !Maximum density [mol/L]
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CPP !Pointer to Cp0 model
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86.2036 !Molar mass [g/mol]
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200.0 !Triple point temperature [K]
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19.2 !Pressure at triple point [kPa]
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17.04 !Density at triple point [mol/L]
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229.52 !Normal boiling point temperature [K]
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0.363 !Acentric factor
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359.345 4631.7 5.26 !Tc [K], pc [kPa], rhoc [mol/L]
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359.345 5.26 !Reducing parameters [K, mol/L]
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8.314472 !Gas constant [J/mol-K]
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21 4 0 0 0 0 0 0 0 0 0 0 !# terms and # coefs/term for normal terms, Gaussian terms, and Gao terms
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1.0588 0.241 1. 0. !a(i),t(i),d(i),l(i)
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-1.12018 0.69 1. 0.
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0.629064 2.58 1. 0.
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-0.351953 1.15 2. 0.
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0.00455978 0.248 5. 0.
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-1.75725 2.15 1. 1.
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-1.12009 2.43 2. 1.
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0.0277353 5.3 2. 1.
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0.898881 0.76 3. 1.
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-1.17591 1.48 3. 1.
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0.0818591 0.24 5. 1.
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-0.0794097 2.86 5. 1.
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-0.104047e-4 8.0 5. 1.
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0.233779 3.3 1. 2.
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-0.29179 4.7 1. 2.
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0.0154776 0.45 4. 2.
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-0.0314579 8.4 4. 2.
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-0.00442552 16.2 2. 3.
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-0.0101254 26.0 4. 3.
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0.00915953 16.0 5. 3.
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-0.00361575 8.7 6. 3.
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#AUX !---Auxiliary function for Cp0
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CPP !Ideal gas heat capacity function for R407C of Lemmon (2003).
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?
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?```````````````````````````````````````````````````````````````````````````````
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?Lemmon, E.W.
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?
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!```````````````````````````````````````````````````````````````````````````````
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0. !
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10000. !
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0. !
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0. !
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1.0 8.314472 !Reducing parameters for T, Cp0
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1 3 0 0 0 0 0 !Nterms: polynomial, exponential, cosh, sinh
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0.76575 0.4
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1.4245 864.0
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3.9419 1887.0
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3.1209 4802.0
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#AUX !---Auxiliary function for PH0
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PH0 !Ideal gas Helmholtz form for R407C.
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?
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?```````````````````````````````````````````````````````````````````````````````
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?Lemmon, E.W.
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?
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!```````````````````````````````````````````````````````````````````````````````
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0. !
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10000. !
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0. !
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0. !
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1 3 3 0 0 0 0 0 !Nterms: ai*log(tau**ti); ai*tau**ti; ai*log(1-exp(bi*tau))
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-1.0 1.0 !ai, ti for [ai*log(tau**ti)] terms
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2.13194 0.0 !aj, ti for [ai*tau**ti] terms
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8.05008 1.0
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-14.3914 -0.4
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1.4245 -2.40437 !aj, ti for [ai*log(1-exp(ti*tau)] terms
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3.9419 -5.25122
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3.1209 -13.3632
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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#STN !---Surface tension---
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ST1 !Surface tension model for R407C of Lemmon (2003).
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?
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?```````````````````````````````````````````````````````````````````````````````
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?Lemmon, E.W., preliminary equation, 2003.
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?
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!```````````````````````````````````````````````````````````````````````````````
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0. !
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10000. !
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0. !
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0. !
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1 !Number of terms in surface tension model
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359.345 !Critical temperature used in fit (dummy)
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0.064017 1.2557 !Sigma0 and n
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#PS !---Vapor pressure---
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PS5 !Vapor pressure equation for R407C of Lemmon (2003)
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?
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?```````````````````````````````````````````````````````````````````````````````
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?Functional Form: P=Pc*EXP[SUM(Ni*Theta^ti)*Tc/T] where Theta=1-T/Tc, Tc and Pc
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? are the reducing parameters below, which are followed by rows containing Ni and ti.
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?
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!```````````````````````````````````````````````````````````````````````````````
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0. !
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10000. !
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0. !
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0. !
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359.345 4631.7 !Reducing parameters
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4 0 0 0 0 0 !Number of terms in equation
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-0.086077 0.4
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-6.6364 0.965
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-2.4648 3.1
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-3.4776 5.0
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#PL !---Liquid pressure---
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PL5 !Liquid pressure equation for R407C of Lemmon (2003)
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?
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?```````````````````````````````````````````````````````````````````````````````
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?Functional Form: P=Pc*EXP[SUM(Ni*Theta^ti)*Tc/T] where Theta=1-T/Tc, Tc and Pc
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? are the reducing parameters below, which are followed by rows containing Ni and ti.
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?
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!```````````````````````````````````````````````````````````````````````````````
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0. !
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10000. !
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0. !
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0. !
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359.345 4631.7 !Reducing parameters
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4 0 0 0 0 0 !Number of terms in equation
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0.48722 0.54
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-6.6959 0.925
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-1.4165 2.7
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-2.5109 4.7
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@END
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