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API SPEC 14L: Lock Mandrels and Landing Nipples : Reaffirmed

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273

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API SPEC 20F: Corrosion Resistant Bolting for Use in the Petroleum and Natural Gas Industries : Reaffirmed

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169

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API TR 5NCL Nickel Content Limits for API 5CT Sour Service Products

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149

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API SPEC 19ICD: Inflow Control Devices : Reaffirmed

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189

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API MPMS CH 23.2: Reconciliation of Liquid Tank Car(s) Quantities : Reaffirmed

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218

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API SPEC 16A: Specification for Drill-through Equipment

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322

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API RP 13B-2: Field Testing Oil-based Drilling Fluids wA1

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388

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API TR 16G

API TR 16G: Well Control Equipment Reliability Modeling

CDN $150.26

SKU: 435ea957ec25 Category:

Description

The purpose of this technical report is to document methods of reliability analysis for well control equipment
systems installed for drilling wells.
Well control equipment systems are designed with components that provide wellbore pressure control in support
of well operations. As an example, the following typical systems were modeled and analyzed:
― Surface On-Shore BOP Systems.
― Surface Off-Shore BOP Systems.
― Subsea BOP System with Discrete Hydraulic Control System.
― Offshore DP MODU with a Subsea BOP System with Electro-hydraulic/Multiplex Control System.
Fault trees were developed based on generic (non-original equipment manufacturer specific), and limited to, well control equipment components with a top event of “failing to seal and secure the well” (see Annex B, Annex C, and Annex D). This technical report did not include consequence analysis. The intent of the models is to identify the system’s ability to perform its intended function and document the individual components

Edition

1

Published Date

2023-03-24

Status

Current

Pages

39

Language Detail Icon

English

Format Secure Icon

Secure PDF

Abstract

The purpose of this technical report is to document methods of reliability analysis for well control equipment systems installed for drilling wells. Well control equipment systems are designed with components that provide wellbore pressure control in support of well operations. As an example, the following typical systems were modeled and analyzed: ― Surface On-Shore BOP Systems. ― Surface Off-Shore BOP Systems. ― Subsea BOP System with Discrete Hydraulic Control System. ― Offshore DP MODU with a Subsea BOP System with Electro-hydraulic/Multiplex Control System. Fault trees were developed based on generic (non-original equipment manufacturer specific), and limited to, well control equipment components with a top event of “failing to seal and secure the well” (see Annex B, Annex C, and Annex D). This technical report did not include consequence analysis. The intent of the models is to identify the system’s ability to perform its intended function and document the individual components

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