Article ID Journal Published Year Pages File Type
585959 Journal of Loss Prevention in the Process Industries 2015 9 Pages PDF
Abstract

•A method to develop DBN of series–parallel systems is proposed.•Common cause failures and imperfect coverage is considered in the model.•DBNs of the conventional BOP and modern BOP are developed.•Sensitivity analysis of failure rates and coverage factor is performed.

A subsea blowout preventer (BOP) stack is used to seal, control and monitor oil and gas wells. It can be regarded as a series–parallel system consisting of several subsystems. This paper develops the dynamic Bayesian network (DBN) of a parallel system with n components, taking account of common cause failures and imperfect coverage. Multiple error shock model is used to model common cause failures. Based on the proposed generic model, DBNs of the two commonly used stack types, namely the conventional BOP and modern BOP are developed. In order to evaluate the effects of the failure rates and coverage factor on the reliability and availability of the stacks, sensitivity analysis is performed.

Related Topics
Physical Sciences and Engineering Chemical Engineering Chemical Health and Safety
Authors
, , , , ,