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首页> 外文期刊>Journal of Safety Research >A methodology to model causal relationships on offshore safety assessment focusing on human and organizational factors
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A methodology to model causal relationships on offshore safety assessment focusing on human and organizational factors

机译:一种以人为因素和组织因素为基础的海上安全评估因果关系模型的方法

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Introduction: Focusing on people and organizations, this paper aims to contribute to offshore safety assessment by proposing a methodology to model causal relationships. Method: The methodology is proposed in a general sense that it will be capable of accommodating modeling of multiple risk factors considered in offshore operations and will have the ability to deal with different types of data that may come from different resources. Reason's "Swiss cheese" model is used to form a generic offshore safety assessment framework, and Bayesian Network (BN) is tailored to fit into the framework to construct a causal relationship model. The proposed framework uses a five-level-structure model to address latent failures within the causal sequence of events. The five levels include Root causes level, Trigger events level, Incidents level, Accidents level, and Consequences level. To analyze and model a specified offshore installation safety, a BN model was established following the guideline of the proposed five-level framework. A range of events was specified, and the related prior and conditional probabilities regarding the BN model were assigned based on the inherent characteristics of each event. Results: This paper shows that Reason's "Swiss cheese" model and BN can be jointly used in offshore safety assessment. On the one hand, the five-level conceptual model is enhanced by BNs that are capable of providing graphical demonstration of interrelationships as well as calculating numerical values of occurrence likelihood for each failure event. Bayesian inference mechanism also makes it possible to monitor how a safety situation changes when information flow travel forwards and backwards within the networks. On the other hand, BN modeling relies heavily on experts' personal experiences and is therefore highly domain specific. Impact on Industry: "Swiss cheese" model is such a theoretic framework that it is based on solid behavioral theory and therefore can be used to provide industry with a roadmap for BN modeling and implications. A case study of the collision risk between a Floating Production, Storage and Offloading (FPSO) unit and authorized vessels caused by human and organizational factors (HOFs) during operations is used to illustrate an industrial application of the proposed methodology.
机译:简介:本文以人员和组织为重点,旨在通过提出一种因果关系建模方法,为海上安全评估做出贡献。方法:该方法论是从广义上提出的,它将能够适应海上作业中考虑的多种风险因素的建模,并且能够处理可能来自不同资源的不同类型的数据。 Reason的“瑞士奶酪”模型用于形成通用的离岸安全评估框架,贝叶斯网络(BN)经过定制以适合该框架以构建因果关系模型。所提出的框架使用五级结构模型来解决事件因果序列中的潜在故障。这五个级别包括“根本原因”级别,“触发事件”级别,“事件”级别,“事故”级别和“后果”级别。为了对指定的海上安装安全性进行分析和建模,遵循提议的五级框架的指导原则建立了BN模型。指定了一系列事件,并根据每个事件的固有特征分配了有关BN模型的相关先验概率和条件概率。结果:本文表明,Reason的“瑞士奶酪”模型和BN可共同用于海上安全评估。一方面,BN增强了五级概念模型,这些BN能够提供相互关系的图形演示,并能够为每个故障事件计算出现可能性的数值。利用贝叶斯推理机制,还可以监视在信息流在网络中前后传播时安全状况的变化情况。另一方面,BN建模在很大程度上取决于专家的个人经验,因此是高度特定于领域的。对行业的影响:“瑞士奶酪”模型是一种理论框架,它基于可靠的行为理论,因此可用于为行业提供BN建模和含义的路线图。以浮式生产,储存和卸载(FPSO)单元与授权船只在运行过程中由于人为因素和组织因素(HOF)引起的碰撞风险为例,用于说明所提出方法的工业应用。

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