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Petroleum and natural gas industreis - Casing centralizers - Part 1: Bow-spring casing centralizers
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Basic data
| Standard ID | GB/T 19831.1-2025 (GB/T19831.1-2025) |
| Description (Translated English) | Petroleum and natural gas industreis - Casing centralizers - Part 1: Bow-spring casing centralizers |
| Sector / Industry | National Standard (Recommended) |
| Classification of Chinese Standard | E92 |
| Classification of International Standard | 75.180.10 |
| Word Count Estimation | 30,397 |
| Date of Issue | 2025-12-02 |
| Date of Implementation | 2026-07-01 |
| Older Standard (superseded by this standard) | GB/T 19831.1-2005 |
| Issuing agency(ies) | State Administration for Market Regulation, Standardization Administration of China |
GB/T 19831.1-2025: Petroleum and natural gas industreis - Casing centralizers - Part 1: Bow-spring casing centralizers
---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
ICS 75.180.10
CCSE92
National Standards of the People's Republic of China
Replaces GB/T 19831.1-2005
Oil and gas industry casing centralizer
Part 1.Bow-shaped spring sleeve centralizer
Published on 2025-12-02
Implemented on July 1, 2026
State Administration for Market Regulation
The State Administration for Standardization issued a statement.
Table of contents
Preface III
Introduction V
1.Scope 1
2 Normative References 1
3.Terms and Definitions 1
4.Classification and Model Designation Methods 2
5.Technical Requirements 3
6.Test Methods
7.Inspection Rule 15
8.Marking, Packaging and Storage 16
Appendix A (Informative) Example 17 for Calculating Maximum Starting Force and Minimum Reset Force
Appendix B (Normative) Performance Stability of Misalignment Clearance 19
Foreword
This document complies with the provisions of GB/T 1.1-2020 "Standardization Work Guidelines Part 1.Structure and Drafting Rules of Standardization Documents".
Drafting.
This document is Part 1 of GB/T 19831 "Casing Centralizers for the Oil and Gas Industry". GB/T 19831 has been published as follows.
Part 2.
---Part 1.Bow-shaped spring sleeve centralizer;
---Part 2.Placement of the centralizer and test of the stop ring;
---Part 3.Rigid and Semi-rigid Centralizers.
This document replaces GB/T 19831.1-2005 "Petroleum and Gas Industry Casing Centralizers Part 1.Bow Spring Casing Centralizers"
Compared with GB/T 19831.1-2005, the main technical changes in the "Apparatus" are as follows, except for structural adjustments and editorial modifications.
a) The terminology and definitions of lowering force and resetting force have been changed (see 3.3, 3.6, 3.7, 3.5 in the.2005 edition), and restarting force and support force have been added.
The terminology and definitions for the straightener short section are provided in sections 3.2 and 3.7, and the terms flexure, clamping device, clamping force, and rigid straightener have been removed.
Definitions (see 3.1, 3.2, 3.3, and 3.6 in the.2005 edition);
b) Added classification and model designation methods (see Chapter 4);
c) The function, reset force requirement, and test frequency requirement of the bow-shaped spring sleeve centralizer have been removed (see sections 4.1 and 4.3 of the.2005 edition).
4.4);
d) Added requirements for appearance, dimensions, restart force, lowering force, clearance ratio, and clearance performance stability.
Qualitative requirements and overall strength requirements (see 5.1, 5.2, 5.4~5.8);
e) The specified values for the restoring force and starting force of the bow-shaped spring sleeve centralizer have been changed (see Table 1, Table 1 in the.2005 edition);
f) A calculation method for the starting force of non-standard sized bow-shaped spring sleeve centralizers has been added (see 5.3.2);
g) The requirements for testing equipment have been changed (see 6.1, Chapter 5 of the.2005 edition);
h) Additional test methods for appearance and dimensions have been added (see 6.2, 6.3);
i) A restart force test method has been added, and the starting force and lowering force test methods have been modified (see 6.4.1,.2005 version).
Chapter 6);
j) The requirements for the reset force test have been changed (see 6.4.2, see Chapter 7 of the.2005 edition);
k) A test method for the bow-shaped spring casing centralizer used in enlarged well sections has been added (see 6.5);
l) An evaluation of the performance stability of the clearance deviation has been added (see 6.6);
m) An overall strength test has been added (see 6.7);
n) Added inspection rules (see Chapter 7);
o) The tagging requirements have been changed (see 8.1, Chapter 8 of the.2005 edition);
p) Added requirements for random files, packaging, and storage (see 8.2~8.4);
q) Added requirements for evaluating the stability of the deviation clearance performance (see Appendix B).
Please note that some content in this document may involve patents. The issuing organization of this document assumes no responsibility for identifying patents.
This document was proposed and is under the jurisdiction of the National Technical Committee on Standardization of Petroleum Drilling Equipment and Tools (SAC/TC96).
This document was drafted by. Petroleum Industry Downhole Tool Quality Supervision and Inspection Center, China National Petroleum Corporation Bohai Drilling Engineering Co., Ltd., and [unclear - possibly a company name].
State Continental Shelf Petroleum Engineering Technology Co., Ltd., Hebei Shangshan Petroleum Machinery Co., Ltd., China National Petroleum Corporation Tarim Oil
Northwest Oilfield Branch of China Petroleum & Chemical Corporation, North China Oilfield Branch of China National Petroleum Corporation
Company, Daqing Oilfield Co., Ltd., Shengli Oilfield Bohai Cementing Engineering Technology Co., Ltd., Qianjiang Lianrui Petroleum Machinery Co., Ltd.
Dezhou Longke Petroleum Equipment Co., Ltd.
The main drafters of this document are. Wang Hanyang, Dang Donghong, Wang Dingsheng, Yang Zhongzu, Ren Lu, Li Liangliang, Zhang Shuguang, Rao Kaibo, and Liang Xiaoyang.
Sun Tianshi, Ai Zhengqing, Jiang Benqiang, Ming Xianggui, Ren Qiang, Li Yang, Chen Chao, Luo Yucai, Xin Kai, Wu Xiangbai, Zuo Zhibin, Xia Shizhuang, Yu Xinglong
Liu Xiaoxiao, Li Qin, Yang Chuan, Liu Ming, Liu Zhongfei, Wang Zhiguo, Ma Chunhui, Kong Fangang, Li Weiran, Xu Fei, Luo Tao, Gong Jian.
This document was first published in.2005, and this is its first revision.
Introduction
Casing centralizers are important cementing tools that ensure casing centering and play a crucial role in improving cementing quality. GB/T 19831 "Stone..."
The proposed "Oil and Gas Industry Casing Centralizer" consists of three parts.
---Part 1.Bow-shaped Spring Sleeve Centralizer. The purpose is to constrain and standardize the quality of bow-shaped spring sleeve centralizers.
---Part 2.Placement of the centralizer and test of the retaining ring. The purpose is to determine the installation distance of the centralizer on the sleeve in order to achieve...
For optimal alignment, improve casing centering.
---Part 3.Rigid and Semi-rigid Centralizers. The purpose is to constrain and regulate the quality of rigid and semi-rigid centralizer products.
This document fully considers the operating environment of the bow-shaped spring casing centralizer from well entry to cementing completion, and simulates various operating environments.
By examining the stress conditions, the reliability of the product is fully demonstrated, thereby ensuring the casing centering and improving cementing quality.
Oil and gas industry casing centralizer
Part 1.Bow-shaped spring sleeve centralizer
1 Scope
This document specifies the classification and model designation methods, technical requirements, test methods, and inspection procedures for bow-shaped spring sleeve centralizers used in oil and gas.
Inspection rules and marking, packaging and storage.
This document applies to the design and inspection of bow-shaped spring sleeve centralizers for oil and gas applications.
2 Normative references
The contents of the following documents, through normative references within the text, constitute essential provisions of this document. Dated citations are not included.
For references to documents, only the version corresponding to that date applies to this document; for undated references, the latest version (including all amendments) applies.
This document.
GB/T 9253 Machining, Measurement and Inspection of Casing, Tubing and Line Threads in the Oil and Gas Industry
GB/T 19830 Steel pipes for oil and gas well casing or tubing in the petroleum and natural gas industry
3 Terms and Definitions
The following terms and definitions apply to this document.
3.1
Starting force
Given conditions and installation methods, the maximum force required for a bow-shaped spring casing centralizer mounted on the casing to enter a specific wellbore.
3.2
restarting force
Given conditions and installation methods, the required time for the bow-shaped spring casing centralizer mounted on the casing to restart its movement within a specific wellbore.
The maximum force.
3.3
running force
The average force required for a bow-shaped spring casing centralizer mounted on the casing to move within a specific wellbore.
3.4
Deviation gap standoff
The minimum distance between the wellbore diameter and the outer diameter of the casing.
3.5
deviation gap ratio
The percentage ratio of deviation clearance to annular clearance.
3.6
Restoring force
The arc-shaped spring casing stabilizer installed on the casing exerts a force that causes the casing to move away from the wellbore. This force is equal to the force applied under given conditions and installation methods.
The load required to cause the bow-shaped spring sheet to flex.
...