NF EN ISO 13628-7

NF EN ISO 13628-7

December 2009
Standard Current

Petroleum and natural gas industries - Design and operation of subsea production systems - Part 7 : completion/workover riser systems

ISO 13628-7:2005 gives requirements and recommendations for the design, analysis, materials, fabrication, testing and operation of subsea completion/workover (C/WO) riser systems run from a floating vessel. It is applicable to all new C/WO riser systems and may be applied to modifications, operation of existing systems and reuse at different locations and with different floating vessels. ISO 13628-7:2005 is intended to serve as a common reference for designers, manufacturers and operators/users, thereby reducing the need for company specifications. ISO 13628-7:2005 is limited to risers, manufactured from low alloy carbon steels. Risers fabricated from special materials such as titanium, composite materials and flexible pipes are beyond the scope of ISO 13628-7:2005. Specific equipment covered by ISO 13628-7:2005 include riser joints, connectors; workover control systems; surface flow trees, surface tree tension frames, lower workover riser packages, lubricator valves, retainer valves, subsea test trees, shear subs, tubing hanger orientation systems, swivels, annulus circulation hoses, riser spiders, umbilical clamps, handling and test tools, tree cap running tools. Associated equipment not covered by ISO 13628-7:2005 include tubing hangers, internal and external tree caps, tubing hanger running tools, surface coiled tubing units, surface wireline units, surface tree kill and production jumpers.

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Main informations

Collections

National standards and national normative documents

Publication date

December 2009

Number of pages

282 p.

Reference

NF EN ISO 13628-7

ICS Codes

75.180.10   Exploratory, drilling and extraction equipment

Classification index

M87-208-7

Print number

1 - 08/01/2010

International kinship

European kinship

EN ISO 13628-7:2006
Sumary
Petroleum and natural gas industries - Design and operation of subsea production systems - Part 7 : completion/workover riser systems

ISO 13628-7:2005 gives requirements and recommendations for the design, analysis, materials, fabrication, testing and operation of subsea completion/workover (C/WO) riser systems run from a floating vessel.

It is applicable to all new C/WO riser systems and may be applied to modifications, operation of existing systems and reuse at different locations and with different floating vessels.

ISO 13628-7:2005 is intended to serve as a common reference for designers, manufacturers and operators/users, thereby reducing the need for company specifications.

ISO 13628-7:2005 is limited to risers, manufactured from low alloy carbon steels. Risers fabricated from special materials such as titanium, composite materials and flexible pipes are beyond the scope of ISO 13628-7:2005.

Specific equipment covered by ISO 13628-7:2005 include riser joints, connectors; workover control systems; surface flow trees, surface tree tension frames, lower workover riser packages, lubricator valves, retainer valves, subsea test trees, shear subs, tubing hanger orientation systems, swivels, annulus circulation hoses, riser spiders, umbilical clamps, handling and test tools, tree cap running tools.

Associated equipment not covered by ISO 13628-7:2005 include tubing hangers, internal and external tree caps, tubing hanger running tools, surface coiled tubing units, surface wireline units, surface tree kill and production jumpers.

Table of contents
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  • Avant-propos
    v
  • Introduction
    vi
  • 1 Domaine d'application
    1
  • 2 Références normatives
    2
  • 3 Termes, définitions, termes abrégés et symboles
    5
  • 3.1 Termes et définitions
    5
  • 3.2 Termes abrégés
    24
  • 3.3 Symboles
    25
  • 4 Exigences système
    34
  • 4.1 Objectif
    34
  • 4.2 Description des systèmes de liaison surface/fond de mer pour C/R
    34
  • 4.3 Ingénierie système
    35
  • 4.4 Définition du système
    37
  • 4.5 Conception du système
    37
  • 4.6 Revue du système
    38
  • 4.7 Modes de fonctionnement
    39
  • 4.8 Principes de conception
    47
  • 4.9 Principes de fonctionnement
    47
  • 4.10 Principes de sécurité
    47
  • 4.11 Exigences relatives aux barrières
    48
  • 4.12 Règlements, codes et normes
    48
  • 4.13 Exigences fonctionnelles
    50
  • 4.14 Exigences relatives à l'organisation et aux qualifications du personnel
    53
  • 4.15 Système qualité
    53
  • 4.16 Documentation, enregistrements et traçabilité
    53
  • 4.17 Vérification
    54
  • 4.18 Responsabilité de l'acheteur/utilisateur
    54
  • 4.19 Responsabilité du fabricant
    54
  • 5 Exigences fonctionnelles
    54
  • 5.1 Objectif
    54
  • 5.2 Exigences fonctionnelles du système
    55
  • 5.3 Exigences relatives au calibrage
    55
  • 5.4 Exigences relatives aux composants
    56
  • 5.5 Système de commande de reconditionnement
    79
  • 6 Exigences de conception
    88
  • 6.1 Objectif
    88
  • 6.2 Principes de conception
    88
  • 6.3 Charges et effets de charge
    92
  • 6.4 Critères de conception des composants
    104
  • 6.5 Critères de conception des tuyaux
    112
  • 6.6 Connecteurs
    119
  • 6.7 Critères de conception d'autres composants
    123
  • 7 Matériaux et fabrication
    124
  • 7.1 Introduction
    124
  • 7.2 Exigences générales relatives aux matériaux
    124
  • 7.3 Produits
    134
  • 7.4 Fabrication
    137
  • 7.5 Contrôle visuel et essais non destructifs
    140
  • 7.6 Qualification des modes opératoires d'assemblage (blocage) et des monteurs
    142
  • 8 Essais
    143
  • 8.1 Généralités
    143
  • 8.2 Exigences d'essai préalable
    143
  • 8.3 Essai de pression
    143
  • 8.4 Propreté hydraulique
    144
  • 8.5 Essais de qualification
    144
  • 8.6 Dispositif de colonne montante et essais de réception en usine
    145
  • 8.7 Système de commande de reconditionnement et essais de réception en usine
    145
  • 8.8 Essais d'intégration du système
    146
  • 8.9 Essai de pression du système
    147
  • 9 Marquage, stockage et expédition
    147
  • 9.1 Joints de colonne montante
    147
  • 9.2 Composants
    149
  • 9.3 Système de commande de reconditionnement et équipement hydraulique
    149
  • 10 Inspection, entretien, réévaluation et suivi
    149
  • 10.1 Généralités
    149
  • 10.2 Inspection et entretien
    149
  • 10.3 Réévaluation des colonnes montantes
    151
  • 10.4 Suivi
    151
  • 11 Documentation
    151
  • 11.1 Objectif
    151
  • 11.2 Généralités
    151
  • 11.3 Base de conception
    152
  • 11.4 Analyse de conception
    153
  • 11.5 Documentation relative aux connecteurs
    154
  • 11.6 Fabrication
    158
  • 11.7 Documentation technique
    158
  • 11.8 Résumé de conception et de fabrication
    159
  • 11.9 Manuel(s) d'installation et d'utilisation
    159
  • 11.10 Résumé des états
    160
  • 11.11 Classement de la documentation
    160
  • Annexe A (informative) Normalisation du raccordement de la colonne montante de C/R (arbrevertical)
    161
  • Annexe B (informative) Modes de fonctionnement et analyse générale du système de colonnemontante
    164
  • Annexe C (informative) Analyse et évaluation de la fatigue
    184
  • Annexe D (normative) Méthodes de résistance structurelle
    218
  • Annexe E (informative) Exemples de calcul pour la conception de la pression de tuyau
    228
  • Annexe F (informative) Instructions d'achat
    232
  • Annexe G (informative) Précharge de boulon
    253
  • Annexe H (informative) Joints d'étanchéité
    259
  • Annexe I (normative) Homologation des raccords
    262
  • Bibliographie
    271
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