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Basic data
| Standard ID | GB/T 44250.1-2024 (GB/T44250.1-2024) |
| Description (Translated English) | Internet of things system for long-distance oil and gas pipeline - Part 1: General requirements |
| Sector / Industry | National Standard (Recommended) |
| Classification of Chinese Standard | L77 |
| Classification of International Standard | 35.110 |
| Word Count Estimation | 18,146 |
| Date of Issue | 2024-07-24 |
| Date of Implementation | 2025-02-01 |
| Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration |
GB/T 44250.1-2024: Internet of things system for long-distance oil and gas pipeline - Part 1: General requirements
---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.
GB/T 44250.1-2024 English version. Internet of things system for long-distance oil and gas pipeline - Part 1.General requirements
National Standard of the People's Republic of China
ICS 35.110CCS L 77
IoT system for long-distance oil and gas pipelines
Part 1.General requirements
Internet of things system for long⁃distance oil and gas pipeline-
Part 1.General requirements
2024-07-24 Release
2025-02-01 Implementation
State Administration for Market Regulation
The National Standardization Administration issued
Table of Contents
Preface...
Introduction...
1 Scope...
2 Normative referenced documents...
3 Terms and Definitions...
4 Abbreviations...
5 Overview...
This document was proposed and coordinated by the National Technical Committee for Information Technology Standardization (SAC/TC 28).
This document was drafted by. China National Petroleum and Natural Gas Pipeline Network Corporation, China National Institute of Science and Technology, China Electronics Technology Standards
China National Petroleum Corporation, China National Natural Gas Pipeline Engineering Co., Ltd., China National Petroleum Corporation Natural Gas Sales Branch,
China National Pipeline Network Group Southwest Pipeline Co., Ltd., Sinopec Petroleum Engineering Design Co., Ltd., CNOOC Tianjin Chemical Research and Design Institute Co., Ltd.
Company, University of Electronic Science and Technology of China, Northwest Branch of Exploration and Development Research Institute of China National Petroleum Corporation, Zhejiang Tian
Natural Gas Pipeline Network Co., Ltd., Shanghai Energy Construction Engineering Design and Research Co., Ltd., CNOOC Research Institute Co., Ltd., China National Petroleum Corporation
Planning Institute of Natural Gas Co., Ltd., China University of Petroleum (Beijing), Hangzhou Hikvision Digital Technology Co., Ltd., Shanxi Yicheng Technology
Xin Technology Co., Ltd., CNOOC Information Technology Co., Ltd., Kunlun Digital Intelligence Technology Co., Ltd., Shanghai Microsystem and Information Technology Co., Ltd., Chinese Academy of Sciences
Information Technology Research Institute, Jingfeng Technology (Shenzhen) Co., Ltd., Anhui Telecom Planning and Design Co., Ltd., Wuxi Internet of Things Industry Research Institute,
Chengdu Qinchuan Internet of Things Technology Co., Ltd., Chongqing Quality and Standardization Research Institute, China National Petroleum Corporation Changqing
Oilfield Branch, Paifang Technology (Beijing) Co., Ltd., Jiangsu Zhongtian Technology Co., Ltd., Shandong Provincial Computing Center (National Super
Computing Jinan Center), Huawei Technologies Co., Ltd., Beijing Ankong Oil and Gas Technology Co., Ltd., and Aode Group Co., Ltd.
The main drafters of this document are. Li Li, Zhuo Lan, Chen Pengchao, Sun Wei, Yang Yufeng, Cai Yongjun, Yang Hong, Ma Yunbin, Li Guangqun, Ren Wu, Zhang Hui,
Wen Kai, Liu Bing, Fu Genli, Yao Gang, Liu Shuo, Nie Zhongwen, Yin Hong, Xue Luning, Liu Jinlan, Zhang Shaofeng, Ren Junmin, Chen Shuyi, Gong Jing, Wang Xiaochun,
Yang Baolong, Sun Yongkang, Wang Wen, Zhang Wei, Li Rui, Cui Yanxing, He Xiaoyong, Jia Zhihui, Jiang Xubiao, Liu Qiong, Dong Wei, Fu Min, Li Gang, Li Jian, Zhang Cheng,
Song Xuefeng, Zhou Xuejing, Liu Hongye, Li Min, He Wei, Li Xiaoyu, Lin Fanlian, Jin Liping, Yu Nengchao, Wu Haili, Ma Jianjun, Wu Anni, Zhou Runzhi,
Wu Mingjuan, Bi Zhenfei, Yang Shunkun, Cai Rui, Wu Tongda, Shao Zehua, Wen Yunhao, Liang Yongzeng, Li Xiaoming.
Introduction
Long-distance oil and gas pipelines are an important part of the energy supply system, and their safe and efficient operation is related to the national energy supply security.
The pipelines are numerous, long, and wide, and the environment along the pipelines is complex. IoT technology can effectively monitor, analyze, and warn of the safety status of pipelines.
GB/T 44250 "Internet of Things System for Long-distance Oil and Gas Pipelines" can guide the development of long-distance oil and gas pipelines.
The research and development, demonstration, planning and construction of pipeline IoT system technology will help promote the standardized application of IoT technology in long-distance oil and gas pipelines.
Relying on the Internet of Things technology, a smart pipeline network with comprehensive perception capabilities is formed to promote the digital transformation and intelligentization of the oil and gas long-distance pipeline industry.
develop.
GB/T 44250 is intended to consist of 2 parts.
--Part 1.General requirements. Aims to clarify the composition of the oil and gas long-distance pipeline IoT system and standardize the overall technical requirements of each element.
Require.
-- Part 2.Technical requirements for sensing terminals. Aims to standardize the technical requirements for sensing terminals used in the IoT system for long-distance oil and gas pipelines.
The technical parameters of scene perception terminals such as pipeline body, surrounding geological environment, large storage tanks, and key equipment should be clarified.
IoT system for long-distance oil and gas pipelines
Part 1.General requirements
1 Scope
This document specifies the data collection, edge services, data processing, business applications, human-computer interaction, data
Overall technical requirements for transmission, operation and maintenance management, and system security.
This document applies to the planning, design, construction, application and operation and maintenance of the Internet of Things system for long-distance oil and gas pipelines.
This document does not apply to the technical content of industrial control systems for long-distance oil and gas pipelines.
2 Normative references
The contents of the following documents constitute the essential clauses of this document through normative references in this document.
For referenced documents without a date, only the version corresponding to that date applies to this document; for referenced documents without a date, the latest version (including all amendments) applies to
This document.
GB/T 22239-2019 Information security technology Network security level protection basic requirements
GB/T 37024-2018 Information security technology Internet of Things perception layer gateway security technical requirements
GB/T 37025-2018 Information security technology Internet of Things data transmission security technical requirements
GB/T 37044-2018 Information security technology Internet of Things security reference model and general requirements
GB/T 41780.1-2022 IoT Edge Computing Part 1.General Requirements
GB/T 43697-2024 Data security technology data classification and grading rules
3 Terms and definitions
The following terms and definitions apply to this document.
3.1
Long-distance oil and gas pipeline
A pipeline that transports crude oil, natural gas or liquid petroleum products (finished oil) that have been purified at mines between different areas.
[Source. SY/T 7031-2016, 2.1, modified]
3.2
Station
Facilities and sites for pressurizing, depressurizing, storing, injecting, distributing, metering, heating, cooling or cleaning pipeline oil and gas.
[Source. SY/T 7031-2016, 2.9]
3.3
high consequence areas
Areas where pipeline leakage may cause significant adverse impacts on the public and the environment.
[Source. GB 32167-2015, 3.8]
3.4
high risk pipeline segment
A section of pipeline with a higher potential for loss as measured by the probability (likelihood) of failure and the magnitude of the consequences.
...