GB/T 32575-2016 English PDFUS$1599.00 · In stock
Delivery: <= 10 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 32575-2016: Engineering data handover for power plants Status: Valid
Basic dataStandard ID: GB/T 32575-2016 (GB/T32575-2016)Description (Translated English): Engineering data handover for power plants Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: F20 Classification of International Standard: 27.100 Word Count Estimation: 80,892 Date of Issue: 2016-04-25 Date of Implementation: 2016-11-01 Regulation (derived from): National Standard Announcement No Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China GB/T 32575-2016: Engineering data handover for power plants---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.Engineering data handover for power plants ICS 27.100 F20 National Standards of People's Republic of China Power generation project data transfer 2016-04-25 released 2016-11-01 implementation General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China China National Standardization Management Committee released Directory Preface Ⅴ Introduction Ⅵ 1 Scope 1 2 normative reference document 1 3 Terms and definitions 1 Data Transfer Process 3 4.1 Overview 3 4.2 Transfer strategy development 4 4.3 Transfer requirements to determine 4 4.4 Transfer plan 4 4.4.1 Transfer of content 4 4.4.2 Information granularity 5 4.4.3 Data level 5 4.4.4 Data format 6 4.4.5 Transfer method 6 4.4.6 Transfer of responsibility 7 4.4.7 Transfer time 7 4.4.8 Quality management 7 4.5 Implementation of the transfer plan 8 4.5.1 Management of data transfer implementation 8 4.5.2 Establishment of facility information base for power plant facilities 5 Data transfer content and requirements 8 5.1 Transfer Data Reference Code 8 5.1.1 Data sources/data purposes 8 5.1.2 Data level 9 5.1.3 Data format 9 5.1.4 Transfer time 9 5.1.5 Data status 10 5.2 Device Object Transfer Data List 10 5.2.1 System/Construction (Structure) The function group The handover data list covers Table 10 5.2.2 Process handover data list 5.2.3 List of electrical handover data 5.2.4 Instrument Control Transfer Data List 30 5.2.5 List of building handover data 5.3 Facility Object Data Sheet 37 5.3.1 Device/Component Function Group Data Sheet Description 37 5.3.2 Device/Component Function Group The data sheet covers Table 37 5.3.3 Device/Component Function Group Data Table 44 Appendix A (informative) Data transfer content classification and reference model A.1 Data handover content classification and reference model A.2 Concept Description 64 Appendix B (Informative Annex) Transferring Data List Classification Code B.1 Handle Data List Classification Code Format 66 B.2 Handover data list classification code letter code 66 Reference 73 Figure 1 Power plant lifecycle activity model 3 Figure 2 Data transfer content classification mode diagram 5 Table 1 Power plant operation and maintenance related to data needs Table 2 Quality requirements 8 Table 3 Data source/data usage 9 Table 4 Data Level 9 Table 5 Data format 9 Table 6 Transfer time 9 Table 7 Data Status 10 Table 8 System/Construction (Structure) Building Function Group Handover Data List Coverage 10 Table 9 Process handover data list Table 10 List of electrical handover data Table 11 Instrument Control Transfer Data List 30 Table 12 List of building handover data Table 13 Device Function Group Data Table covers Table 37 Table 14 The functional group data sheet covers Table 41 Table 15 Equipment/Components General Data Sheet 44 Table 16 AA valve, air valve, including automatic, manual actuator, blasting membrane equipment data sheet 45 Table 17 AC heat exchanger, heat transfer surface data table 46 Table 18 AE rotation, drive, lift and rotate device (and operating mechanism) data sheet 47 Table 19 AF Continuous Transmission Equipment, Feeder (Lift) Data Sheet Table 20 AG Generator Unit Table 48 Table 21 AH Heating, Refrigeration and Air Conditioning Equipment Data Sheet 49 Table 22 AJ Broken Equipment Data Sheet 50 Table 23 AK suppression and packaging equipment data sheet 51 Table 24 AM Mixer, Mixer Data Sheet 51 Table 25 AN air compressor unit, fan data table (air compressor) 52 Table 26 AN air compressor unit, fan data table (fan) 52 Table 27 AP pump data sheet Table 28 AT Cleaning, Drying, Filtration and Separation Equipment Data Sheet 54 Table 29 BB storage equipment (box, tank, tank, pool, header, etc.) data sheet 54 Table 30 BN jet pump, injector, injector data sheet Table 31 BP Flow Limiter, Limiter, Throttle Plate (Non-Measuring Orifice Plate)/QB Measuring Orifice Plate, Sensor Data Sheet 56 Table 32 BQ hanger, bracket, bracket, pipe perforation data sheet 56 Table 33 BR Pipeline, Smoke duct, Groove Data Sheet Table 34 BU insulation layer, sheath data sheet 57 Table 35 Direct Measurement Loop Data Sheet Table 36 GA-GF junction box and cable busbar penetration/GG electrical equipment on the junction box and cable perforation data sheet 58 Table 37 GH Installation of electrical equipment according to the process system Table 59 Table 38 GR DC power supply, battery data table 59 Table 39 does not use the switchgear data sheet 60 for the process equipment code Table 40 GT Transformer, Voltage Transformer (PT), Current Transformer (CT) Data Sheet Table 41 GU inverter equipment, rectifier, UPS data sheet 61 Table 42 GV structure grounding and lightning protection equipment, lightning arrester data table 62 Table 43 - M Motor Data Sheet 62 Table 44 MG gearbox, gearbox, gearbox data table 63 Table B.1 Technical field Letter code 66 Table B.2 File Types (Main Class) Letter Code 66 Table B.3 File Types (Main/Subclass) Letter Code 67 ForewordThis standard is drafted in accordance with the rules given in GB/T 1.1-2009. Please note that some of the contents of this document may involve patents. The issuer of this document does not assume responsibility for the identification of these patents. This standard is proposed by the China Electricity Council and centralized. This standard is responsible for drafting units. China Energy Construction Co., Ltd., China Power Engineering Consulting Group Co., Ltd. This standard participates in the drafting unit. China Power Engineering Consulting Group East China Electric Power Design Institute Co., Ltd., China Power Engineering Consulting Group West North Electric Power Design Institute Co., Ltd., Dexin Dongyuan Electric Power Technology Service (Beijing) Co., Ltd., China Power Engineering Consulting Group Northeast Electric Power Design Ltd., China Power Engineering Consulting Group Southwest Electric Power Design Institute Co., Ltd., China Power Engineering Consulting Group North China Electric Power Design Institute Engineering Co., Ltd., China Energy Construction Group Zhejiang Electric Power Design Institute Co., Ltd., China Nuclear Nuclear Power Management Co., Ltd., China Guangdong Nuclear Power Group Co., Ltd., China Nuclear Power Engineering Co., Ltd., Harbin Boiler Works Co., Ltd., Harbin Steam Turbine Factory Co., Ltd. State Energy Construction Group Guangxi Electric Power Design and Research Institute Co., Ltd. The main drafters of this standard. Wang Congsheng, Shi Xiaoheng, Sun Bin, Yuan Quan, Zhang Wequn, Xie Ping, Ding Yaogan, Wang Furong, Sun Jin, Zhang Jinbin, Lu Jian. This standard participates in the drafters. Li Zhi, Liu Xujia, Sun Yongbin, Huang Wei, Liu Junxiang, Dai Yihui, Zhao Fengyu, Yang Xiaohui, Wei BinIntroductionWith the improvement of social information, more and more power generation enterprises realize that information assets and physical assets are equally important and leave effective Of the engineering information assets, not only the information system can not fully benefit, companies can not form an effective accumulation of knowledge, daily production activities by To great influence and constraints. Therefore, the power generation enterprises need to be in the construction process and the completion of the synchronization process to be generated in the process and Power plant operation related to the data, known as "data transfer". In order to enable the plant operation and maintenance system to better inherit the data generated by the construction process, the need for the construction of the data before the content And the form to make provisions to reduce the loss of data and closure, give full play to the construction process of information social benefits. Power generation engineering data The transfer should be in accordance with the established data rules, the project will be generated during the process, the computer can handle, and operation and maintenance needs to use the data, In order to facilitate the implementation of the information system to the owners/operators, to achieve "data transfer", so that it can get a physical power plant at the same time Get a digital power plant. Data transfer is an important part of the investment of the owners of power generation projects. The best way to achieve this is to establish a data "cooperative" environment as soon as possible. for So that the power generation project in the data transfer process to reach a consensus, standardize data transfer methods, the development of this standard. In the.1990s, some international enterprises and standardization organizations began to study the life cycle information management of factories, Factory from the planning and design, equipment manufacturing, construction, installation and commissioning, operation and maintenance to the demolition of the stage of the succession of information requirements, More useful to try and explore. After more than 10 years of development, the international standardization organizations and industry organizations have developed a number of relevant standards and guidelines As a reference for data transfer. These achievements and experiences have been the basis and reference for the development of this standard. In order to ensure the implementation of the data transfer mission, the owner/operator shall transfer the data to the separate project and set up special funds for data transfer. Project participants are responsible for data collection, storage, processing and handover based on handover strategies and programs. Power generation project data transfer1 ScopeThis standard specifies the process, method, content and requirements of power generation project transfer. This standard applies to coal, fuel, gas (including combined cycle) and other power transmission project data transfer. This standard does not apply to the transfer and management of project files, information management after the end of the project, the safety and confidentiality of the information management.2 normative reference documentsThe following documents are indispensable for the application of this document. For dated references, only the dated edition applies to this article Pieces. For undated references, the latest edition (including all modifications) applies to this document. GB/T 18975.1 Life cycle data for industrial automation systems and integrated process plants (including oil and gas production facilities) Integration Part 1. Summary and Fundamental Principles GB/T 18975.2 Life cycle data for industrial automation systems and integrated process plants (including oil and gas production facilities) Integration - Part 2. Data model GB/T 26853.1-2011 Classification and designation of complete sets of equipment, systems and equipment documents Part 1. Rules and classification tables Code for marking system of power plant identification system GB/T 50549-2010 ISO /T S15926.4..2007/Amd1..2010 Industrial automation systems and integrated process plants (including oil and gas production Facilities) Lifecycle data integration Part 4. Initial reference data (Industrialautomationsystemsandintegration- Integrationoflife-cycledataforprocessplantsincludingoilandgasproductionfacilities-Part 4. Ini- tialreferencedata3 terms and definitionsThe terms and definitions defined in GB/T 50549-2010 and the following terms and definitions apply to this document. 3.1 Power plant life cycle powerplantlife-cycle Power plant from planning and design, equipment manufacturing, construction, installation, commissioning, operation and maintenance to the demolition of the entire cycle. 3.2 Facility object facilityobject Power plant systems, equipment, components and structures. 3.2.1 System system By the same kind of physical objects in accordance with a certain relationship, with a certain function of the whole. [GB/T 50549-2010, definition 2.0.7] 3.2.2 Equipment equipment Composed of a number of components from the whole, in the system to play a function or role. ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 32575-2016_English be delivered?Answer: Upon your order, we will start to translate GB/T 32575-2016_English as soon as possible, and keep you informed of the progress. The lead time is typically 6 ~ 10 working days. The lengthier the document the longer the lead time.Question 2: Can I share the purchased PDF of GB/T 32575-2016_English with my colleagues?Answer: Yes. The purchased PDF of GB/T 32575-2016_English will be deemed to be sold to your employer/organization who actually pays for it, including your colleagues and your employer's intranet.Question 3: Does the price include tax/VAT?Answer: Yes. 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