Difference between revisions of "Decline Curve Analysis"
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<table width="100%" border="1" cellpadding="3" cellspacing="1"> | <table width="100%" border="1" cellpadding="3" cellspacing="1"> | ||
<tr> | <tr> | ||
− | <th>Note</th> | + | <th>Note <ref name = DDA /></th> |
<th>Rate</th> | <th>Rate</th> | ||
<th>Cumulative</th> | <th>Cumulative</th> | ||
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<tr> | <tr> | ||
− | <td>Hyperbolic decline | + | <td>Hyperbolic decline<BR> 0 < b < 1, b > 1</td> |
<td><math>q(t) = \frac{q_i}{(1+b\ D_i\ t)^{1/b}}</math></td> | <td><math>q(t) = \frac{q_i}{(1+b\ D_i\ t)^{1/b}}</math></td> | ||
<td><math> Q = \frac{q_i}{D_i\ (b-1)} \left ( (1+b\ D_i\ t)^ \left ( 1-\frac{1}{b} \right ) -1 \right )</math></td> | <td><math> Q = \frac{q_i}{D_i\ (b-1)} \left ( (1+b\ D_i\ t)^ \left ( 1-\frac{1}{b} \right ) -1 \right )</math></td> | ||
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<tr> | <tr> | ||
− | <td>Exponential decline | + | <td>Exponential decline<BR>b = 0</td> |
<td><math>q(t) = {q_i}\ e^{-D_i\ t}</math></td> | <td><math>q(t) = {q_i}\ e^{-D_i\ t}</math></td> | ||
<td><math>Q = \frac{q_i}{D_i}(1-e^{-D_i\ t})</math></td> | <td><math>Q = \frac{q_i}{D_i}(1-e^{-D_i\ t})</math></td> | ||
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<tr> | <tr> | ||
− | <td>Harmonic decline | + | <td>Harmonic decline<BR> b = 1</td> |
<td><math>q(t) = \frac{q_i}{1+D_i\ t}</math></td> | <td><math>q(t) = \frac{q_i}{1+D_i\ t}</math></td> | ||
<td><math>Q = \frac{q_i}{D_i} ln{(1+D_i\ t)}</math></td> | <td><math>Q = \frac{q_i}{D_i} ln{(1+D_i\ t)}</math></td> | ||
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|title=KAPPA Dynamic Data Analysis (DDA) book | |title=KAPPA Dynamic Data Analysis (DDA) book | ||
|url=https://www.kappaeng.com/downloads/ddabook | |url=https://www.kappaeng.com/downloads/ddabook | ||
− | |||
}}</ref> | }}</ref> | ||
</references> | </references> | ||
[[Category:E&P Portal]] | [[Category:E&P Portal]] | ||
+ | |||
+ | {{#seo: | ||
+ | |title=Decline Curve Analysis | ||
+ | |titlemode= replace | ||
+ | |keywords=DCA, harmonic decline curve, Decline Curve Analysis, hyperbolic decline curve, exponential decline curve, Arps JJ | ||
+ | |description=Decline Curve Analysis is an empirical method for rate decline analysis and rate forecasting forecasting published by Arps in 1945. | ||
+ | }} |
Latest revision as of 09:06, 6 December 2018
Contents
Brief
Decline Curve Analysis (DCA) is an empirical method for rate decline analysis and rate forecasting published by Arps in 1945 [1].
DCA is applied for Wells and Reservoirs production forecasting.
E&P Portal has DCA available as one of it's engineering tools.
Math & Physics
Note [2] | Rate | Cumulative |
---|---|---|
Hyperbolic decline 0 < b < 1, b > 1 |
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Exponential decline b = 0 |
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Harmonic decline b = 1 |
Discussion
If one has a need to convert decline factor Di to the actual annual decline in %:
Workflow
- Upload the data required
- Open the DCA tool here
- For a single well
- Select a well in a filter
- Input the initial rate,
- Drag the Navigation Point to match the actual data
- Correct the model parameters manually if needed
- Check the difference in cumulative production of actual cure vs decline curve
- Check the Rate vs Cumulaive Plot in linear and log scale
- Save the decline curve model
- Move to the next well
- For a multiple wells
- Select the wells in the filter
- DCA tool will automatically normalize the wells data to zero time and then averages it
- Input the initial rate,
- Drag the Navigation Point to match the actual data
- Correct the model parameters manually if needed
- Check the difference in cumulative production of average cure vs decline curve
- Check the Rate vs Cumulaive Plot in linear and log scale
- Export the type curve if needed
Data required
Nomenclature
- = annual decline, %
- = decline curve parametr, dimensionless
- = decline factor per time t, dimensionless
- = initial rate, any rate units applies
- = rate at time t, any rate units applies
- = cumulatve rate at time t, any rate units applies
- = forecast time, days
References
- ↑ Arps, J. J. (1945). "Analysis of Decline Curves". Transactions of the AIME. Society of Petroleum Engineers. 160 (01).
- ↑ "KAPPA Dynamic Data Analysis (DDA) book".