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Geomechanics and FracturingNaturally Fractured Reservoirs

Cubic Matrix Block Interporosity Flow Coefficient Formula

λ=60Lm2rw2kmkf\lambda=\frac{60}{L_m^2}r_w^2\frac{k_m}{k_f}

Cubic Matrix Block Interporosity Flow Coefficient calculates interporosity flow coefficient for naturally fractured reservoirs workflows in geomechanics and fracturing.

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How engineers use this formula

Use this formula when the listed inputs (L_m, r_w, k_m, k_f) are known and the assumptions behind the cited naturally fractured reservoirs relationship match the engineering case being checked.

Assumptions

  • Input values are representative for the well, reservoir, fluid, or equipment case being evaluated.
  • The declared units match the field-unit constants used in the formula.
  • The cited formula applies to the selected petroleum engineering workflow.

Limitations

  • The calculation does not replace a full engineering model or operating procedure.
  • Accuracy depends on the source correlation, assumptions, input quality, and unit consistency.

Common mistakes

  • Mixing unit systems without converting the inputs.
  • Using default example values as field recommendations.
  • Applying the formula outside the source assumptions.

Default example

Using the default inputs, lambda_ip equals 0.000065 dimensionless.

L_mft

10

r_wft

0.33

k_mmD

1

k_fmD

1000

Inputs

L_m

ft

Cubic Matrix Block Side Length

r_w

ft

Wellbore Radius

k_m

mD

Matrix Permeability

k_f

mD

Fracture Permeability

Outputs

lambda_ip

dimensionless

Interporosity Flow Coefficient

L_m

ft

Cubic Matrix Block Side Length

k_m

mD

Matrix Permeability

k_f

mD

Fracture Permeability

Source and review

reviewed

Tiab, D. and Escobar, F.H. 2019. Novel, Integrated and Revolutionary Well Test Interpretation and Analysis, IntechOpen, Equation 6.8.

Source

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