Difference between revisions of "Valko - McCain bubble point pressure correlation"

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__TOC__
 
__TOC__
  
=== Brief ===
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== Valco - McCain bubble point pressure correlation ==
  
 
[[Valco - McCain correlation|Valco - McCain]] is an empirical correlation for the '''bubble point''' pressure published in '''2003''' <ref name={Valco - McCain}/>.
 
[[Valco - McCain correlation|Valco - McCain]] is an empirical correlation for the '''bubble point''' pressure published in '''2003''' <ref name={Valco - McCain}/>.
  
=== Math & Physics ===
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== Math & Physics ==
  
 
:<math> P_{bp} = e^{2.498 + 0.713 \alpha + 0.0075 \alpha^2}</math><ref name= {Valco - McCain}/>
 
:<math> P_{bp} = e^{2.498 + 0.713 \alpha + 0.0075 \alpha^2}</math><ref name= {Valco - McCain}/>
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=== Discussion  ===
 
=== Discussion  ===
 
=== Application range ===  
 
=== Application range ===  
=== Nomenclature ===
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== Nomenclature ==
 
:<math> A_0..A_{3} </math> = coefficients
 
:<math> A_0..A_{3} </math> = coefficients
 
:<math> B_0..B_{3} </math> = coefficients
 
:<math> B_0..B_{3} </math> = coefficients
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:<math> Y_{oil_API} </math> = oil API gravity, dimensionless
 
:<math> Y_{oil_API} </math> = oil API gravity, dimensionless
  
=== References ===
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== References ==
 
<references>
 
<references>
 
<ref name={Valco - McCain}>
 
<ref name={Valco - McCain}>
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{{#seo:
 
{{#seo:
|title=Valco - McCain correlation
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|title=Valco - McCain bubble point pressure correlation
 
|titlemode= replace
 
|titlemode= replace
 
|keywords=Valco - McCain correlation, oil bubble point
 
|keywords=Valco - McCain correlation, oil bubble point
 
|description=Valco - McCain correlation is an empirical correlation for the oil bubble point pressure published in 2003.
 
|description=Valco - McCain correlation is an empirical correlation for the oil bubble point pressure published in 2003.
 
}}
 
}}

Revision as of 12:15, 22 September 2020

Valco - McCain bubble point pressure correlation

Valco - McCain is an empirical correlation for the bubble point pressure published in 2003 [1].

Math & Physics

 P_{bp} = e^{2.498 + 0.713 \alpha + 0.0075 \alpha^2}[1]

where:

A0 = -4.814074834
A1 = 0.7480913 A2 = 0.1743556
A3 = 0.0206

 \alpha1 =  A_0+ A_1 log(R_{sb}) + A_2 log^2(R_{sb}) - A_3 log^3(R_{sb})

B0 = 1.27
B1 = 0.0449
B2 = 4.36e-4
B3 = 4.76e-6

 \alpha2 = B_0 - B_1  Y_{oil_API}+ B_2 Y^2_{oil_API}  - B_3 Y^3_{oil_API}

C0 = 4.51
C1 = 10.84
C2 = 8.39
C3 = 2.34

 \alpha3 = C_0 - C_1 SG_{g} + C_2 SG^2_{g} - C_3 SG^3_{g}

D0 = -7.2254661
D1 = 0.043155
D2 = 8.55e-5
D3 = 6.00696e-8

 \alpha4 = D_0 + D_1 T - D_2 T^2 + D_4 T^3
 \alpha = \alpha1 + \alpha2 + \alpha3 + \alpha4

Discussion

Application range

Nomenclature

 A_0..A_{3} = coefficients
 B_0..B_{3} = coefficients
 C_0..C_{3} = coefficients
 D_0..D_{4} = coefficients
 P = pressure, MPA
 P_{bp} = bubble point pressure, MPA
 R_s = oil gas ration, m3/m3
 SG_g = gas specific gravity, dimensionless
 T = temperature, °R
 Y_{oil_API} = oil API gravity, dimensionless

References

  1. 1.0 1.1 Valkó, P. P.; McCain, W.D. (2003). "Reservoir oil bubblepoint pressures revisited; solution gas–oil ratios and surface gas specific gravities."Free registration required. J. Pet. Sci. Eng. 37 (3–4): 153-169.