EN ISO TR 10400-2011 en Petroleum and natural gas industries - Equations and calculations for the properties of casing tubing drill pipe and line pipe used as casing or tubing《石油和天.pdf
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1、PUBLISHED DOCUMENTPD CEN ISO/TR 10400:2011Petroleum and natural gas industries Equations and calculations for the properties of casing, tubing, drill pipe and line pipe used as casing or tubingICS 75.180.10g49g50g3g38g50g51g60g44g49g42g3g58g44g55g43g50g56g55g3g37g54g44g3g51g40g53g48g44g54g54g44g50g4
2、9g3g40g59g38g40g51g55g3g36g54g3g51g40g53g48g44g55g55g40g39g3g37g60g3g38g50g51g60g53g44g42g43g55g3g47g36g58National forewordThis Published Document is the UK implementation of CEN ISO/TR 10400:2011. It is identical to ISO/TR 10400:2007. It supersedes PD ISO/TR 10400:2007, which is withdrawn.The UK pa
3、rticipation in its preparation was entrusted by Technical Committee PSE/17, Materials and equipment for petroleum, petrochemical and natural gas industries, to Panel PSE/17/-/5, Casing, tubing and drill pipe.A list of organizations represented on this committee can be obtained on request to its secr
4、etary.This publication does not purport to include all the necessary provisions of a contract. Users are responsible for its correct application.PD CEN ISO/TR 10400:2011This Published Document waspublished under the authorityof the Standards Policy andStrategy Committeeon 31 January 2008 BSI 2011Ame
5、ndments/corrigenda issued since publicationDate Comments 30 June 2011 This corrigendum renumbers PD ISO/TR 10400:2007 as PD CEN ISO/TR 10400:2011ISBN 978 0 580 72219 6TECHNICAL REPORT RAPPORT TECHNIQUE TECHNISCHER BERICHT CEN ISO/TR 10400 February 2011 ICS 75.180.10 English Version Petroleum and nat
6、ural gas industries - Equations and calculations for the properties of casing, tubing, drill pipe and line pipe used as casing or tubing (ISO/TR 10400:2007) Industries du ptrole et du gaz naturel - quations et calculs relatifs aux proprits des tubes de cuvelage, des tubes de production, des tiges de
7、 forage et des tubes de conduites utiliss comme tubes de cuvelage et tubes de production (ISO/TR 10400:2007) Erdl- und Erdgasindustrie - Formeln und Berechnungen der Eigenschaften von Futterrohren, Steigrohren, Bohrgestngen und Leitungsrohren (ISO/TR 10400:2007)This Technical Report was approved by
8、CEN on 27 December 2010. It has been drawn up by the Technical Committee CEN/TC 12. CEN members are the national standards bodies of Austria, Belgium, Bulgaria, Croatia, Cyprus, Czech Republic, Denmark, Estonia, Finland, France, Germany, Greece, Hungary, Iceland, Ireland, Italy, Latvia, Lithuania, L
9、uxembourg, Malta, Netherlands, Norway, Poland, Portugal, Romania, Slovakia, Slovenia, Spain, Sweden, Switzerland and United Kingdom. EUROPEAN COMMITTEE FOR STANDARDIZATION COMIT EUROPEN DE NORMALISATION EUROPISCHES KOMITEE FR NORMUNG Management Centre: Avenue Marnix 17, B-1000 Brussels 2011 CEN All
10、rights of exploitation in any form and by any means reserved worldwide for CEN national Members. Ref. No. CEN ISO/TR 10400:2011: EForeword The text of ISO/TR 10400:2007 has been prepared by Technical Committee ISO/TC 67 “Materials, equipment and offshore structures for petroleum, petrochemical and n
11、atural gas industries” of the International Organization for Standardization (ISO) and has been taken over as CEN ISO/TR 10400:2011 by Technical Committee CEN/TC 12 “Materials, equipment and offshore structures for petroleum, petrochemical and natural gas industries” the secretariat of which is held
12、 by AFNOR. Attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. CEN and/or CENELEC shall not be held responsible for identifying any or all such patent rights. Endorsement notice The text of ISO/TR 10400:2007 has been approved by CEN a
13、s a CEN ISO/TR 10400:2011 without any modification. iiPD CEN ISO/TR 10400:2011iiiContents Page Foreword .v Introductionvi 1 Scope1 2 Conformance .2 2.1 Normative references2 2.2 Units of measurement.2 3 Normative references2 4 Terms and definitions .3 5 Symbols5 6 Triaxial yield of pipe body 14 6.1
14、General .14 6.2 Assumptions and limitations .15 6.3 Data requirements .15 6.4 Design equation for triaxial yield of pipe body 16 6.5 Application of design equation for triaxial yield of pipe body to line pipe .17 6.6 Example calculations17 7 Ductile rupture of the pipe body 21 7.1 General .21 7.2 As
15、sumptions and limitations .21 7.3 Data requirements .22 7.4 Design equation for capped-end ductile rupture .24 7.5 Adjustment for the effect of axial tension and external pressure25 7.6 Example calculations28 8 External pressure resistance .30 8.1 General .30 8.2 Assumptions and limitations .30 8.3
16、Data requirements .31 8.4 Design equation for collapse of pipe body.31 8.5 Equations for empirical constants 37 8.6 Application of collapse pressure equations to line pipe.38 8.7 Example calculations39 9 Joint strength.39 9.1 General .39 9.2 API casing connection tensile joint strength .40 9.3 API t
17、ubing connection tensile joint strength46 9.4 Line pipe connection joint strength 47 10 Pressure performance for couplings 47 10.1 General .47 10.2 Internal yield pressure of round thread and buttress couplings48 10.3 Internal pressure leak resistance of round thread or buttress couplings.49 11 Calc
18、ulated masses 51 11.1 General .51 11.2 Nominal masses 51 11.3 Calculated plain-end mass .51 11.4 Calculated finished-end mass52 11.5 Calculated threaded and coupled mass52 PD CEN ISO/TR 10400:2011iv 11.6 Calculated upset and threaded mass for integral joint tubing and extreme-line casing .53 11.7 Ca
19、lculated upset mass54 11.8 Calculated coupling mass 55 11.9 Calculated mass removed during threading.59 11.10 Calculated mass of upsets .64 12 Elongation 68 13 Flattening tests 68 13.1 Flattening tests for casing and tubing.68 13.2 Flattening tests for line pipe.69 14 Hydrostatic test pressures .70
20、14.1 Hydrostatic test pressures for plain-end pipe, extreme-line casing and integral joint tubing 70 14.2 Hydrostatic test pressure for threaded and coupled pipe 70 15 Make-up torque for round thread casing and tubing.72 16 Guided bend tests for submerged arc-welded line pipe72 16.1 General72 16.2 B
21、ackground74 17 Determination of minimum impact specimen size for API couplings and pipe 74 17.1 Critical thickness .74 17.2 Calculated coupling blank thickness.76 17.3 Calculated wall thickness for transverse specimens 77 17.4 Calculated wall thickness for longitudinal specimens 78 17.5 Minimum spec
22、imen size for API couplings.79 17.6 Impact specimen size for pipe81 17.7 Larger size specimens 81 17.8 Reference information.81 Annex A (informative) Discussion of equations for triaxial yield of pipe body 82 Annex B (informative) Discussion of equations for ductile rupture 95 Annex C (informative)
23、Rupture test procedure 131 Annex D (informative) Discussion of equations for fracture 133 Annex E (informative) Discussion of historical API collapse equations.140 Annex F (informative) Development of probabilistic collapse performance properties154 Annex G (informative) Calculation of design collap
24、se strength from collapse test data 188 Annex H (informative) Calculation of design collapse strengths from production quality data.191 Annex I (informative) Collapse test procedure.205 Annex J (informative) Discussion of equations for joint strength .210 Annex K (informative) Tables of calculated p
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