Method for determining opening sequence and opening efficiency of perforation clusters of fractured intervals
A technology for fracturing intervals and perforation clusters, which is applied in the direction of production fluid, earthwork drilling, wellbore/well components, etc. It can solve the problem of effectively distinguishing whether the perforation clusters are effectively opened or not, and whether there are no fracturing perforation clusters. Whether to open or not and the order of opening and other issues, to achieve the effect of novel design concept, easy calculation method, and convenient method
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Embodiment 1
[0049] The methods for determining the opening sequence and opening efficiency of the perforation clusters in the fracturing section include: the calculation method of the friction resistance of each perforation cluster in the fracturing section, the mathematical modeling of the hydrodynamic balance of the system, and the research and interpretation of the opening sequence and opening efficiency of the perforation clusters. The key methods and technical components are as follows:
[0050] The new method for calculating the friction of each perforation cluster in the fracturing interval mainly includes new methods for calculating the friction along the wellbore, perforation friction, and near-wellbore bending friction during fracturing. First, the formula for calculating friction along the wellbore during the construction process from cluster (i-1) to cluster (i) is:
[0051]
[0052] Among them, Re is the Reynolds number, and its calculation formula is:
[0053] Secondly...
Embodiment 2
[0081] Well A, a shale gas well in a block in the south, is 5012 m deep, with a horizontal section length of 2100 m and a vertical depth of 3106 m. It is divided into 24 stages of fracturing, of which 7 clusters are perforated in the 12th segment. The horizontal stress distribution and perforation parameters of each cluster are shown in Table 1. As shown, the fracturing fluid is slick water with a density of 1.03g / cm 3 , viscosity is 1.6mPas, flow coefficient C d =0.85, casing inner diameter 114.3mm, construction displacement 14m 3 / min, the wellhead pressure is 78MPa.
[0082] Table 1 Perforation parameters of each cluster
[0083]
[0084] According to the implementation method of the present invention, the in-situ stresses of the 7 clusters of perforation positions are first sorted in ascending order, and then through trial calculation and judgment, the final result is obtained at the displacement of 14m 3 The opening sequence and efficiency of each perforation cluste...
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