GB/T 29165.3-2023 English PDFUS$634.00 · In stock
Delivery: <= 5 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 29165.3-2023: Petroleum and natural gas industries - Glass-reinforced plastics (GRP) piping - Part 3: System design Status: Valid GB/T 29165.3: Historical versions
Basic dataStandard ID: GB/T 29165.3-2023 (GB/T29165.3-2023)Description (Translated English): Petroleum and natural gas industries - Glass-reinforced plastics (GRP) piping - Part 3: System design Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: E16 Classification of International Standard: 75.200, 83.140.30 Word Count Estimation: 35,358 Date of Issue: 2023-11-27 Date of Implementation: 2024-03-01 Older Standard (superseded by this standard): GB/T 29165.3-2015 Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration GB/T 29165.3-2023: Petroleum and natural gas industries - Glass-reinforced plastics (GRP) piping - Part 3: System design---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 75:200;83:140:30 CCSE97;G33 National Standards of People's Republic of China Replace GB/T 29165:3-2015 Glass fiber reinforced plastic pipes for the oil and gas industry Part 3: System Design Part 3:System design (ISO 14692-3:2017,IDT) Published on 2023-11-27 2024-03-01 Implementation State Administration for Market Regulation Released by the National Standardization Administration Committee Table of contentsPreface III Introduction V 1 Scope 1 2 Normative references 2 3 Terms, definitions, symbols and abbreviations 2 4 System layout requirements 2 4:1 General 2 4:2 Space requirements 3 4:3 System support 3 4:4 Isolation devices and channels for cleaning operations 4 4:5 Weak points 4 4:6 Fire and explosion 5 5 Hydraulic Design 5 5:1 General 5 5:2 Flow characteristics 5 5:3 Factors limiting flow rate 5 5:4 Erosion 5 5:5 Water hammer 6 6 Generation of design envelope 6 6:1 Partial coefficient 6 6:2 Load component coefficient (f2) 7 6:3 Combinations and values of partial coefficients 8 6:4 Design envelope 8 7 Stress Analysis 9 7:1 Analytical methods 9 7:2 Pipe stress analysis software 10 7:3 Analysis requirements 10 7:4 Deflection factor 10 7:5 Stress-enhancing factors10 7:6 Pipe fitting modeling 10 7:7 Allowable deflection 11 7:8 Allowable stress11 7:9 External pressure14 7:10 Axial compression load (buckling) 14 7:11 Longitudinal pressure expansion16 8 Other design aspects16 8:1 Fire performance16 8:2 Static electricity 18 9 Installer and Runner files 18 Appendix A (normative) cyclic service sub-factor (A3) 20 A:1 Overview 20 A:2 Formula 20 for calculating A3 A:3 Relevant theoretical background20 Appendix B (Normative) Deflection coefficient and stress strengthening coefficient 22 B:1 General 22 B:2 Deflection coefficient 22 B:3 Stress intensification factor 24 B:4 Pipe fitting modeling 25 B:5 Optional combined load test 26 Reference 28ForewordThis 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 3 of GB/T 29165 "Glass fiber reinforced plastic pipes for the oil and gas industry": GB/T 29165 has been The following sections were published: ---Part 1: Vocabulary, symbols, applications and materials; ---Part 2: Assessment and Manufacturing; ---Part 3: System Design; ---Part 4: Assembly, installation and operation: This document replaces GB/T 29165:3-2015 "Glass fiber reinforced plastic pipes for the oil and gas industry - Part 3: System design count": Compared with GB/T 29165:3-2015, in addition to structural adjustments and editorial changes, the main technical changes are as follows: a) The contents of Chapter 5 "System Layout Requirements" have been changed, and contents such as joint selection, electrostatic discharge control and electrochemical corrosion have been deleted: (See Chapter 4, Chapter 5 of the:2015 edition); b) The content of Chapter 6 "Hydraulic Design" has been changed, and content such as hydraulic transient simulation analysis and vacuum circuit breaker have been added (see Chapter 5 Chapter, Chapter 6 of the:2015 edition); c) The content of Chapter 7 "Structural Design" has been changed, and the overview, manufacturer's pressure level, rated pressure, and factored rated pressure have been deleted: force, system design pressure, load requirements, allowable displacement, rated stress and factorized stress, etc:, and the calculation requirements for load generation Contents such as the determination of force limit values and failure envelopes have been optimized and modified (see Chapter 6, Chapter 7 of the:2015 edition); d) Changed the content of Chapter 8 "Stress Analysis" and deleted external pressure/vacuum, thermal load, stress generated by internal pressure, and pipe support The content such as the stress generated has been added to the pipeline stress analysis software, flexibility factors, pressure enhancement factors, pipeline modeling, and allowable deflection: Degree, allowable pressure, external pressure, longitudinal pressure expansion, etc: (see Chapter 7, Chapter 8 of the:2015 edition); e) Added the method for determining the pipe stiffness in the calculation of the estimated vertical deflection of the pipe (see 7:7:2); f) Added the deflection lag coefficient, vertical soil load on the pipeline, and dynamic load on the pipeline in the calculation of the estimated vertical deflection of the pipeline: Determination method of Dedin coefficient and composite soil constraint modulus (see 7:7:2); g) Added the method of determining the shape coefficient in the comprehensive calculation of hoop stress (see 7:8); h) The content of Chapter 11 "Installation and Operating Party Files" has been changed and the requirements for inspection planning have been deleted (see Chapter 9,:2015 version Chapter 11); i) Added Appendix A "Cyclic Service Sub-item Coefficient A3" (see Appendix A); j) Added the method for determining the cyclic long-term strength coefficient fc (see A:2); k) Appendix D "Deflection Analysis Guide" is deleted (see Appendix D of the:2015 version); l) Appendix E "Calculation of Support Stress for Large Diameter Liquid-Filled Pipelines" has been deleted (see Appendix E of the:2015 edition): This document is equivalent to ISO 14692-3:2017 "Glass fiber reinforced plastic pipes for the oil and gas industry - Part 3: System design count": Due to a typographical error in an ISO standard, the following minimal editorial changes have been made to this document: a) The reference chapter or article number in the process box in Figure 1 of ISO 14692:3:2017 is incorrectly marked: In boxes 1 to 7, this document is divided into Don’t change it to “See Chapter 4” “See Chapter 5” “See Part 2 Chapter 4” “See Chapter 6” “See Chapter 7” “See 7:7 and 7:8” "See 7:9 and 7:10" "See Chapter 8": b) The indexing number description of symbols X and Y in Figure 2 of ISO 14692:3:2017 is not given, this document will supplement it, X---cycle times and Y---cycle loading ratio: c) The first "Note 4" in Table 1 of ISO 14692:3:2017 is incorrect, and this document is modified to "Note 3": d) The reference standard number of DNVRP0501 in ISO 14692:3:20175:4:2 is incorrect, and this document is modified to DNVRPO501: ginseng Corresponding modifications will be made in the literature review: e) No explanation is given for index numbers 3 and 4 in Figure 3 of ISO 14692:3:2017: This document is supplemented by 3---Hoop stress (σh) and 4---Longitudinal stress (σa): f) The symbol "εp,avg" in ISO 14692:3:20177:11 is incorrect, this document is modified to "εap,avg": g) The reference number of B:2:2 in ISO 14692:3:2017B:5 is incorrect, and this document is modified to B:2:3: Please note that some content in this document may be subject to patents: The publisher of this document assumes no responsibility for identifying patents: This document is proposed and coordinated by the National Petroleum and Natural Gas Standardization Technical Committee (SAC/TC355): This document was drafted by: China National Petroleum Corporation Engineering Materials Research Institute Co:, Ltd:, Xinjiang PetroChina Pipe Industry Engineering Co:, Ltd:, Wakis (Qingdao) Composite Materials Pipeline Co:, Ltd:, Shengli Xinda New Materials Co:, Ltd:, China National Petroleum Corporation Tarim Oil Tian Branch, China Petroleum & Chemical Corporation Northwest Oilfield Branch: The main drafters of this document: Qi Dongtao, Kong Lushi, Zhao Yan, Jin Liqun, Yang Chunlin, Ge Pengli, Wei Bin, Xu Ting, Zhu Wenfeng, Zhang Li, Lu Hua, Wei Jun, Kong Wei, Kong Lingfeng, Zhang Zhihong: This document was first published in:2015 and this is the first revision:IntroductionGlass fiber reinforced plastic pipe is a composite made of glass fiber reinforced unsaturated polyester, epoxy resin and phenolic resin as matrix materials: Plastic pipes are widely used in the oil and gas industry: In order to standardize the design, manufacturing, evaluation and operation of glass fiber reinforced plastic pipes line, and formulated a series of technical documents for glass fiber reinforced plastic pipes for the oil and gas industry: GB/T 29165 "Oil and natural gas industrial glass Fiber Reinforced Plastic Pipes" aims to provide the oil and gas industry with basic terminology, materials, evaluation, and evaluation of glass fiber reinforced plastic pipes recognized by all parties: Standards for manufacture, design, assembly, installation and operation: According to the characteristics of each stage of the full service cycle of glass fiber reinforced plastic pipes, such as application and Materials, evaluation and manufacturing, system design, assembly, installation and operation are planned to be composed of four parts: ---Part 1: Vocabulary, symbols, applications and materials: The purpose is to provide information on basic terminology and notation for the remaining three parts, and to Application scope and materials are specified and required: ---Part 2: Assessment and Manufacturing: The purpose is to provide quality for the design, assembly and compliance of glass fiber reinforced plastic (GRP) systems: Assessment and product manufacturing: ---Part 3: System Design: The purpose is to provide system design for the entire glass fiber reinforced plastic (GRP) piping system piping: ---Part 4: Assembly, installation and operation: The purpose is to provide constructors and users of glass fiber reinforced plastic (GRP) systems with for guidance: Glass fiber reinforced plastic pipes for the oil and gas industry Part 3: System Design1 ScopeThis document specifies specifications for the design of fiberglass reinforced plastic pipe systems: This document is applicable to system layout, hydraulic design, structural design, stress analysis, and fire protection in the design of glass fiber reinforced plastic pipe systems: and static electricity control, etc: This document is used in conjunction with GB/T 29165:1-2022: The guidelines for the use of this document are shown in Figure 1, which is a detailed flow chart of steps 5 and 6 in Table 1 of GB/T 29165:1-2022: Figure 1 Guide to the use of this document ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 29165.3-2023_English be delivered?Answer: Upon your order, we will start to translate GB/T 29165.3-2023_English as soon as possible, and keep you informed of the progress. 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Otherwise, follow the normal steps: Add to Cart -- Checkout -- Select your currency to pay.Question 5: Should I purchase the latest version GB/T 29165.3-2023?Answer: Yes. Unless special scenarios such as technical constraints or academic study, you should always prioritize to purchase the latest version GB/T 29165.3-2023 even if the enforcement date is in future. Complying with the latest version means that, by default, it also complies with all the earlier versions, technically. |