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Analysis of conditions for drilling a new direction of a well in solid rocks with a removable deflecting complex
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Relevance. Currently, in the practice of geological exploration, if necessary, adjustments to the direction of wells are mainly used continuous action deflectors. However, their application is fraught with certain difficulties. The time spent on lifting operations associated with the need to prepare the well for curvature, deflector descent, study of the curvature interval, etc. are significant and unproductive. The formed curvature of the well with intensity values from 1.5 degrees/m, even after working through the interval with special projectiles, leads to the risk of significant column bends and potential emergencies, especially when using a projectile with a removable core receiver, due to the impossibility of its use in wells with a curvature intensity of more than 0.1–0.3 degrees/m. The design features of the deflectors and orienting devices determine the difficulties with the correct setting and reliable fixing of the devices on the face, there are frequent cases of deviation of the curvature set plane from the design one. Taking into account the above, the development of a special technical tool that allows with high accuracy and moderate intensity of curvature making operational adjustments to the direction of wells without lifting the drilling column using the removable core receiver complex is an urgent and demanding task. Aim. To assess the force effect on the rock-cutting tool during the formation of a new direction of the borehole by a removable deflecting complex; assess the influence of the side armament of the diamond tool on the trajectory of the drilled borehole; justify the optimal location of the armament on the periphery of the diamond rock-cutting tool. Object. Mechanism of formation of a new direction of a well during milling its wall. Methods. Collection, analysis and generalization of information about the operation of continuous action deflectors, analytical studies of force interaction in the bottomhole zone when forming a new direction of wells by milling its wall. Results. The paper introduces the estimate of the time spent on unproductive technological operations when adjusting the direction of wells using continuous action deflectors and a removable deflecting complex. The authors have described the dependence of the formed deflecting force when using a removable deflecting complex on the physico-mechanical and geometric characteristics of the tool, properties of rocks. The paper introduces the dependence to determine the optimal angle of inclination of diamond-cutting stacks to compensate the disorienting force when milling the well wall with a diamond rock-cutting tool.
National Research Tomsk Polytechnic University
Title: Analysis of conditions for drilling a new direction of a well in solid rocks with a removable deflecting complex
Description:
Relevance.
Currently, in the practice of geological exploration, if necessary, adjustments to the direction of wells are mainly used continuous action deflectors.
However, their application is fraught with certain difficulties.
The time spent on lifting operations associated with the need to prepare the well for curvature, deflector descent, study of the curvature interval, etc.
are significant and unproductive.
The formed curvature of the well with intensity values from 1.
5 degrees/m, even after working through the interval with special projectiles, leads to the risk of significant column bends and potential emergencies, especially when using a projectile with a removable core receiver, due to the impossibility of its use in wells with a curvature intensity of more than 0.
1–0.
3 degrees/m.
The design features of the deflectors and orienting devices determine the difficulties with the correct setting and reliable fixing of the devices on the face, there are frequent cases of deviation of the curvature set plane from the design one.
Taking into account the above, the development of a special technical tool that allows with high accuracy and moderate intensity of curvature making operational adjustments to the direction of wells without lifting the drilling column using the removable core receiver complex is an urgent and demanding task.
Aim.
To assess the force effect on the rock-cutting tool during the formation of a new direction of the borehole by a removable deflecting complex; assess the influence of the side armament of the diamond tool on the trajectory of the drilled borehole; justify the optimal location of the armament on the periphery of the diamond rock-cutting tool.
Object.
Mechanism of formation of a new direction of a well during milling its wall.
Methods.
Collection, analysis and generalization of information about the operation of continuous action deflectors, analytical studies of force interaction in the bottomhole zone when forming a new direction of wells by milling its wall.
Results.
The paper introduces the estimate of the time spent on unproductive technological operations when adjusting the direction of wells using continuous action deflectors and a removable deflecting complex.
The authors have described the dependence of the formed deflecting force when using a removable deflecting complex on the physico-mechanical and geometric characteristics of the tool, properties of rocks.
The paper introduces the dependence to determine the optimal angle of inclination of diamond-cutting stacks to compensate the disorienting force when milling the well wall with a diamond rock-cutting tool.
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