METHOD FOR EVALUATING DOWNHOLE WORKING CONDITION OF A PDC BIT
20210301643 ยท 2021-09-30
Inventors
- Guodong JI (Beijing, CN)
- Haige WANG (Beijing, CN)
- Meng CUI (Beijing, CN)
- Zhao MENG (Beijing, CN)
- Qiang Wu (Beijing, CN)
- Li Liu (Beijing, CN)
- Jiawei ZHANG (Beijing, CN)
- Changchang CHEN (Beijing, CN)
- Liu CUI (Beijing, CN)
- Jing Yu (Beijing, CN)
Cpc classification
E21B45/00
FIXED CONSTRUCTIONS
E21B2200/20
FIXED CONSTRUCTIONS
E21B10/567
FIXED CONSTRUCTIONS
E21B10/54
FIXED CONSTRUCTIONS
International classification
E21B45/00
FIXED CONSTRUCTIONS
E21B10/567
FIXED CONSTRUCTIONS
Abstract
A method for evaluating a downhole working condition of a PDC bit includes: performing an indoor test, including performing a drilling test in different full-sized cores by using the PDC bit with different degrees of abrasion and balling under condition of given WOB and rotational speed, to acquire change characteristics of a WOB, a rotational speed, a torque, a ROP and a bit vibration of the PDC bit in different time domains; improving and perfecting an existing prediction model and evaluation method for the downhole working condition through data obtained by the test to obtain the method; reading parameters of the WOB, the rotational speed, the torque and the ROP in real time during drilling; determining the downhole working condition of the PDC bit by using the method in the improving and perfecting.
Claims
1. A method for evaluating downhole working condition of a polycrystalline diamond compact (PDC) bit, the method comprising: performing an indoor test, comprising performing a drilling test in different full-sized cores by using the PDC bit with different degrees of abrasion and balling under conditions of given weight on bit (WOB) and rotational speed to acquire change characteristics of a WOB, a rotational speed, a torque, a rate of penetration (ROP), and a vibration severity of the PDC bit in different time domains when the PDC bit drills in different cores under different drilling parameters; improving and perfecting an existing prediction model and evaluation method for the downhole working condition through data obtained by the test to obtain a method for evaluating the downhole working condition of the PDC bit; reading parameters of the WOB, the rotational speed, the torque and the ROP in real time during drilling; and determining the downhole working condition of the PDC bit by using the method obtained in the improving and perfecting.
2. The method of claim 1, wherein, a test device and a test instrument required in the performing the indoor test comprise an acceleration acquisition system fixed on a drill pipe nipple; a first end of a WOB-torque-displacement acquisition system are mounted beneath the drill pipe nipple, and a second end of the WOB-torque-displacement acquisition system is connected to the PDC bit, the PDC bit is connected with a hydraulic system, and the core is provided below the PDC bit and fixed on a rotary table.
3. The method of claim 2, wherein the WOB-torque-displacement acquisition system comprises a dynamic strain gauge, a bridge box and a first data acquisition system; the acceleration acquisition system comprises a wireless acceleration transducer, a wireless gateway, and a second data acquisition system.
4. The method of claim 2, wherein in the performing the indoor test, the PDC bit and the drill pipe nipple are in a stationary state, and the rotary table and the core are rotated at an invariant rotational speed, when the indoor test is performed.
5. The method of claim 4, wherein in the performing the indoor test, the WOB of the PDC bit for the test is adjusted at intervals of 5 KN.
6. The method of claim 4, wherein in the performing the indoor test, the rotational speed for the test is adjusted at interval of 15 revolutions per minute.
7. The method of claim 2, wherein the core includes limestone, hard sandstone, or soft sandstone.
8. The method of claim 2, wherein a manner for processing data of the WOB, the torque and a displacement obtained in the performing the indoor test is as follows: intercepting a WOB data, a torque data and a displacement data in a time domain during which the WOB is stable, and obtaining average values of all intercepted data as the WOB data, the torque data and the displacement data of the test; a manner for processing acceleration data is as follows: obtaining absolute values of tangential acceleration data and radial acceleration data, and obtaining a first root mean squares value and a first maximum value based on the absolute values of the tangential acceleration data and a second root mean squares value and a second maximum value based on the absolute values of the radial acceleration data, obtaining absolute values of axial acceleration data after adjusting a baseline to 0, adding 1 to the absolute values of the axial acceleration data, and obtaining a third root mean square value and a third maximum value based on the absolute values added of the axial acceleration data.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the embodiments of the disclosure or the technical solutions in the prior art, the drawings required in the embodiments will be briefly described below, it is apparent that the drawings in the following description are only some embodiments of the disclosure, for those skilled in the art, other drawings can be obtained according to these drawings without inventive labors.
[0022]
[0023]
[0024] List of reference numerals: 1 drill pipe nipple, 2 first acceleration transducer, 3 second acceleration transducer, 4 WOB-torque-displacement transducer, 5 drill bit, 6 core, and 7 rotary table.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] The technical solutions in the embodiments of the present disclosure will be clearly and completely described below combining with the accompanying drawings in the embodiments of the present disclosure, and it is apparent that the embodiments described are only a part of the embodiments of the present disclosure, and not all of them. All other embodiments, which are obtained by a person skilled in the art based on the embodiments of the present disclosure without inventive labors, shall fall within the protection scope of the present disclosure.
[0026] An object of some embodiments is to provide a method for evaluating a downhole working condition of a PDC bit so as to solve the problem existing in the prior art, and to determine the downhole working condition of the PDC bit by reading parameters such as WOB and rotational speed during drilling.
[0027] In order to make the above objects, features and advantages of the present disclosure more apparent, the present disclosure is further and in detail described combining with the accompanying drawings and specific embodiments thereof.
[0028] It is provided a method for evaluating the downhole working condition of the PDC bit by the present disclosure. As shown in
[0029]
[0030] A manner for processing data such as the WOB, the torque and a displacement obtained in the present disclosure is specified as follows: intercepting WOB data, torque data and displacement data in a time domain when the WOB is stable, and obtaining average values of all intercepted data as the WOB data, the torque data and the displacement data of the test. A manner for processing acceleration data is specified as follows: obtaining absolute values of tangential acceleration data and radial acceleration data, and a first root mean square value and a first maximum value based on the absolute values of the tangential acceleration data and a second root mean square value and a second maximum value based on the absolute values of the radial acceleration data, obtaining absolute values of axial acceleration data after adjusting a baseline to 0, adding 1 to the absolute values of the axial acceleration data, and obtaining a third root mean square value and a third maximum value based on the absolute values added of the axial acceleration data. An existing evaluation method for the downhole working condition are improved and perfecting through data obtained by the test, to obtain a method for evaluating the downhole working condition of the PDC bit. During practical drilling, parameters such as WOB, torque and ROP are recorded to determine the downhole working condition of the bit in real time by the evaluation method.
[0031] The present disclosure has at least the following advantages with respect to the prior art:
[0032] 1) The drilling efficiency is high. When a PDC bit is used, it is required to frequently check working condition of the bit, so as to repair or replace the bit in time. Some important drilling parameters (also known as working condition) decide the performance of the PDC bit. For example, tripping out too early may cause more drilling time and cost, and tripping out too late may cause an accident. Determining the downhole working condition of the PDC bit is important for reduce the drilling time. 2) The drilling cost is low. By timely obtaining the downhole working condition of the PDC bit, the bit can be timely tripped, run and replaced, and thus the occurrence probability of drilling accident is reduced. Also, the drilling cost and the non-productive time caused by bit problem are reduced as the ROP is improved.
[0033] The principle and the embodiments of the present disclosure are explained by using specific examples in the present disclosure, and the above description of the embodiments is only used to help understand the method and the core idea of the present disclosure. Moreover, it is apparent for a person skilled in the art to modify the specific embodiments and the application range according to the idea of the present disclosure. In conclusion, the contents of the description should not be construed as limitations on the disclosure.