A hydraulic fracturing design parameter optimization method based on fine reservoir classification
A technology of design parameters and fine classification, which is applied in the direction of earthwork drilling, production fluid, wellbore/well components, etc., can solve the problems of not considering the change of physical properties with position, lack of pertinence of fracturing parameters, etc., and achieve optimal results reliable effect
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[0024] A method for optimizing hydraulic fracturing design parameters based on fine reservoir classification, comprising the following steps in sequence:
[0025] (A) calculate formation factor Kh corresponding to all oil wells on the current reservoir;
[0026] (B) The minimum value of the formation coefficient corresponding to each oil well is a, and the maximum value is b. The reservoirs are divided into four subcategories:
[0027] Class I reservoir: Kh≥a+0.5(b-a);
[0028] Type II reservoir: a+0.25(b-a)≤Kh
[0029] Class III reservoir: a+0.125(b-a)≤Kh
[0031] (C) For each small type of reservoir, the average value of reservoir thickness and permeability is taken, and the fracture length ratio of fracturing fractures is 0.18-0.43, and the conductivity of fracturing fractures is 10D·cm, 20D·cm, Under the conditions of 30D·cm, 40D·cm and 50D·cm, the reservoir numerical simulation software Eclipse was...
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