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: <math>C_f = \frac{0.853531}{(1 + 2.47664 \times \phi)^{0.92990}}</math>
 
: <math>C_f = \frac{0.853531}{(1 + 2.47664 \times \phi)^{0.92990}}</math>
   −
For hydrocarbon reservoir compressibility can be express by:
+
For [[hydrocarbon reservoir]] compressibility can be express by:
 
:<math>\text{C}_\text{t} = \text{S}_\text{o} \text{C}_\text{o} + \text{S}_\text{g} \text{C}_\text{g} + \text{S}_\text{w} \text{C}_\text{w} + \text{C}_\text{f}</math>
 
:<math>\text{C}_\text{t} = \text{S}_\text{o} \text{C}_\text{o} + \text{S}_\text{g} \text{C}_\text{g} + \text{S}_\text{w} \text{C}_\text{w} + \text{C}_\text{f}</math>
  

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