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Sensitivity studies to quantify the key parameters affecting the well performance were performed finally.
So when the complex geometry of the fracture network is considered, the fracture connectivity performs a more critical influence on the well performance than the facture half-length.
We performed a series of fracture conductivity sensitivity studies to examine the well performance in these two scenarios.
The experimental results on two datasets show the well performance of our method.
This clearly indicates inaccuracies in the well performance data assumed during the design process.
The well performance is largely affected by the geometrical properties of fracture networks.
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Further testing will be conducted when the well performances depart from the baseline well performances obtained from the injection test results.
In the coming decades, optimizing the well performances and managing the reservoir production are the most priorities of each company to provide the requirements to assess more contact with the production layers.
As such, testing and evaluating fractured horizontal wells' productivity become necessary for further improving the wells' performance.
It also allows you to study the effect of reservoir heterogeneity on the fractured well performance.
Once the effects of heat transfer are integrated in to tubing performance predictions, the overall well performance can be calculated.
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