STEERING SYSATEM AND METHOD
20170350191 · 2017-12-07
Assignee
Inventors
Cpc classification
International classification
Abstract
A system for steering a drilling device comprising a drill pipe, is provided therein, the system comprising: a hoop sleeved on the drill pipe of the drilling device and having an outer diameter substantially equal to an inner diameter of a hole to be drilled; and a steering driving mechanism provided between the hoop and the drill pipe, for controlling a radial displacement of the drill pipe relative to a center axis of the hole to be drilled while drilling. The steering driving mechanism comprises one or more sub-mechanisms for connecting the hoop and the drill pipe and driving the drill pipe to move inside the hole, wherein each of the sub-mechanisms comprises an actuator adjustable in length, and a link element with one end rotatably coupled to the actuator and the other end rotatably coupled to hoop.
Claims
1. A system for steering a drilling device comprising a drill pipe, comprising: a hoop, sleeved on the drill pipe of the drilling device and having an outer diameter substantially equal to an inner diameter of a hole to be drilled; and a steering driving mechanism, between the hoop and the drill pipe, for controlling a radial displacement of the drill pipe relative to a center axis of the hole to be drilled while drilling, wherein the steering driving mechanism comprises one or more sub-mechanisms for connecting the hoop and the drill pipe and driving the drill pipe to move inside the hole to be drilled, wherein each of the sub-mechanisms comprises an actuator adjustable in length, and a link element rotatably coupled to the actuator at a first end thereof.
2. The system according to claim 1, wherein a portion of the actuator is fixedly coupled to the drill pipe, and the link element is rotatably coupled to the hoop at a second end thereof.
3. The system according to claim 1, wherein the actuator comprises a cylinder installed on the drill pipe and a piston rod having one end inside the cylinder and being able to move relative to the cylinder.
4. The system according to claim 3, wherein the drill pipe has two drill pipe grooves on an outer surface thereof; and the actuator further comprises a connecting support, coupled to an end portion of the piston rod, and perpendicular to the piston rod; two blocks, respectively coupled to two ends of the connecting support, provided in the two drill pipe grooves, and being able to slide in the drill pipe grooves; and at least two hinge supports, respectively fixed on the two blocks, the link element being rotatably coupled to the hinge supports at the first end thereof.
5. The system according to claim 1, wherein the hoop has at least one hoop groove on an outer surface thereof for mud to pass through.
6. The system according to claim 1, wherein the steering driving mechanism is able to adjust the radial displacement to a given value based on a current radial displacement and the given value.
7. The system according to claim 1, further comprising two covers for covering two axial end faces of the hoop, respectively.
8. The system according to claim 1, wherein the steering driving mechanism comprises three sub-mechanisms arranged with equal intervals around the drill pipe.
9. A drilling method, comprising: drilling a hole with a drilling device comprising a drill pipe with a hoop sleeved thereon, wherein the hoop has an outer diameter substantially equal to an inner diameter of the hole; and steering the drilling device while drilling by controlling a radial displacement of the drill pipe relative to an center axis of the hole with a steering driving mechanism between the hoop and the drill pipe, wherein the steering driving mechanism comprises one or more sub-mechanisms, each of which comprises an actuator adjustable in length, and a link element rotatably coupled to the actuator.
10. The drilling method according to claim 9, wherein steering the drilling device comprises adjusting the length of each actuator to drive the drill pipe to move inside the hole along a direction different from a drilling direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The present invention can be understood better in light of the following description of exemplary embodiments of the present invention with reference to the accompanying drawings, in which:
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF THE INVENTION
[0018] Hereinafter, a detailed description will be given for one or more embodiments of the present invention. It should be pointed out that in the detailed description of the embodiments, for simplicity and conciseness, it is impossible for the Description to describe all the features of the practical embodiments in details. It should be understood that in the process of a practical implementation of any embodiment, just as in the process of an engineering project or a designing project, in order to achieve a specific goal of the developer and in order to satisfy some system-related or business-related constraints, a variety of decisions will usually be made, which will also be varied from one embodiment to another. In addition, it can also be understood that although the effort made in such developing process may be complex and time-consuming, some variations such as on design, manufacture and production on the basis of the technical contents disclosed in the disclosure are just customary technical means in the art for those of ordinary skilled in the art relating to the contents disclosed in the present invention, which should not be regarded as insufficient disclosure of the present invention.
[0019] Unless defined otherwise, all the technical or scientific terms used in the Claims and the Description should have the same meanings as commonly understood by one of ordinary skilled in the art to which the present invention belongs. The terms “first”, “second” and the like in the Description and the Claims do not mean any sequential order, number or importance, but are only used for distinguishing different components. The terms “a”, “an” and the like do not denote a limitation of quantity, but denote the existence of at least one. The terms “comprises”, “comprising”, “includes”, “including” and the like mean that the element or object in front of the “comprises”, “comprising”, “includes” and “including” cover the elements or objects and their equivalents illustrated following the “comprises”, “comprising”, “includes” and “including”, but do not exclude other elements or objects. The term “coupled” or “connected” or the like is not limited to being connected physically or mechanically, but may be connected electrically, directly or indirectly. Additionally, “a circuit”, or “a circuit system”, or “a controller” or the like may include a single assembly, or a set of active elements and passive elements directly or indirectly connected together, such as one or more integrated circuit chips, for providing the corresponding functions as described.
[0020] The terms “may”, “might”, “can” and “could” in the present application indicate the possibility of occurrence in case of some environments, have a certain property, feature or function; and/or by combining with a qualified verb, indicate one or more capacities, functions or likelihood. Correspondingly, the use of “may” indicates that the modified terms are apparently appropriate, matchable or suitable; at the same time, in view of the presence of some situations, the modified term may be not appropriate, matchable or suitable. For example, in some cases, a result or performance may be expected to appear; while in other cases, it may not appear. This difference is embodied in the terms signifying “may”.
[0021] With reference to
[0022] With reference to
[0023] With reference to
[0024]
[0025] In some embodiments, the rotary steerable system 6 is a closed-loop control system, and based on a present radial displacement and a given value, the steering driving mechanism 3 is able to adjust the radial displacement S to the given value. Preferably the steering driving mechanism 3 adjusts the radial displacement S based on the difference between the current radial displacement and the given value, wherein the given value is determined by the desired build-up rate.
[0026] With reference to
[0027] The sub-mechanisms 30 further drive the drill pipe 2 to move inside the hoop 1. With reference to
[0028] In some embodiments, the second end 322 of the link element 32 is connected to the inner wall of the hoop 1, and the second end 312 of the actuator 31 is connected to the drill pipe 2. Furthermore, as shown in
[0029] Additionally, the position relationship between the actuator 31 and a link element 32 is not limited to that indicated in
[0030] In this embodiment, on basis of the actuator 31, the link element 32 is added for performing a combined control on the drill pipe 32, and both ends of the link element 32 are connected rotatably, such as, pivoted by the hinge 9, which increases the radial movable range of the drill pipe 2 in the hoop 1, thereby improving the precision of the steering driving mechanism 3 controlling the drill pipe 2.
[0031] The drill pipe 2 is not limited to be cylindrical, and in some embodiments, the outer surface of the wall of the drill pipe 2 may have a cross section of a triangle shape, as shown in
[0032] With reference to
[0033] Moreover, as shown in
[0034] With reference to
[0035] In some embodiments, as shown in
[0036] The steering driving mechanism 3 may include two or more sub-mechanisms 30. For example, in the embodiments as shown in
[0037] With reference to
[0038] Further, as shown in
[0039] In some embodiments, as shown in
[0040] In order to enable the mud in the drilling process to pass through the rotary steerable system 6, as shown in
[0041] Another aspect of the present invention further relates to a drilling method using the rotary steerable system. In some embodiments, the drilling method includes: drilling a hole with a drilling device comprising the drill pipe 2 with a hoop 1 sleeved thereon, wherein the hoop 1 has an outer diameter substantially equal to an inner diameter of the hole; steering the drilling device while drilling by controlling a radial displacement S of the drill pipe 2 relative to an center axis of the hole with a steering driving mechanism 3 between the hoop 1 and the drill pipe 2.
[0042] With reference to
[0043] With reference to
[0044] In the drilling process, each of the sub-mechanisms 30 rotates with the drill pipe 2, and the length thereof varies from time to time, such that the drill pipe 2 moves along a preset trace inside the hoop 1, or maintains the relative position between the drill pipe 2 and the hoop 1.
[0045] The step of controlling the radial displacement S includes the following: first, receiving a current radial displacement and a given value; second, calculating the difference between the current radial displacement and the given value; then based on the difference, adjusting a radial displacement S by the steering driving mechanism 3, until the radial displacement S becomes equal to the given value.
[0046] Although the present invention has been described in conjunction with particular embodiments, the skilled in the art should understand that many modifications and variations may be made. Accordingly, it should be noted that the claims are intended to contain all the modifications and variations within the actual concept and scope of the present invention.