Difference between revisions of "HCPVinj"

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(Equation)
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where
 
where
  
 +
:<math> A </math> = Area, m2
 +
:<math> h </math> = Net pay, oil saturated thickness, m
 
:<math> B_w </math> = Injected water formation oil factor, m3/m3
 
:<math> B_w </math> = Injected water formation oil factor, m3/m3
 
:<math> HCPV </math> = Hydrocarbon pore volume, m3
 
:<math> HCPV </math> = Hydrocarbon pore volume, m3
 
:<math> HCPV_{inj} </math> = Injected hydrocarbon pore volumes, fraction
 
:<math> HCPV_{inj} </math> = Injected hydrocarbon pore volumes, fraction
 
:<math> W_i </math> = Cumulative water injection volume, m3
 
:<math> W_i </math> = Cumulative water injection volume, m3
 +
:<math> \phi </math> = Porosity, fraction
 +
:<math> S_o </math> = Oil saturation, fraction
  
 
===Related definitions===
 
===Related definitions===

Revision as of 14:32, 22 March 2022

Brief

HCPVinj is the total volume injected normalized by the hydrocarbon pore volume. The waterflood is driven by pore volumes of injected fluid. Everything that is of practical interest occurs between zero to three pore volumes injected [1].

Equation

 HCPV_{inj} = \frac{W_i * B_w}{HCPV}=\frac{W_i * B_w}{A * h * \phi * S_o}

where

 A = Area, m2
 h = Net pay, oil saturated thickness, m
 B_w = Injected water formation oil factor, m3/m3
 HCPV = Hydrocarbon pore volume, m3
 HCPV_{inj} = Injected hydrocarbon pore volumes, fraction
 W_i = Cumulative water injection volume, m3
 \phi = Porosity, fraction
 S_o = Oil saturation, fraction

Related definitions

Dimensionless injected pore volume:

 W_{iD} = \frac{W_i * B_w}{PV} = \frac{W_i * B_w}{A * h * \phi}

Injected movable pore volume:

 MOPV_{inj} = \frac{W_i * B_w}{MOPV} = \frac{W_i * B_w}{A * h * \phi *(1-S_{wc}-S_{orw})}

where

 S_{wc} = Connate water saturation, fraction
 S_{orw} = Residual oil saturation, fraction

See Also

References

  1. Wolcott, Don (2009). Applied Waterflood Field DevelopmentPaid subscription required. Houston: Energy Tribune Publishing Inc.