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Instruments and Methods Exploring Antarctic subglacial lakes with scientific probes: a formal probabilistic approach for operational risk management

机译:用科学探针探索南极冰湖以下的仪器和方法:操作风险管理的正式概率方法

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摘要

Since their discovery, Antarctic subglacial lakes have become of great interest to the science Community. It is hypothesized that they may hold unique forms of biological life and that they hold detailed sedimentary records of past climate change. According to the latest inventory, a total of 387 subglacial lakes have been identified in Antarctica (Wright and Siegert, 2011). However, exploration using scientific probes has yet to be performed. We propose a generic, formal approach to manage the operational risk of deploying probes during clean access to subglacial lake exploration. A representation of the entire probe deployment process is captured in a Markov chain. The transition from one State to the next depends on several factors, including reliability of components and processes. We use fault trees to quantify the probability of failure of the complex processes that must take place to facilitate the transition from one State to another. Therefore, the formal framework consists of integrating a Markov chain, fault trees, component and Subsystem reliability data and expert judgment. To illustrate its application we describe how the approach can be used to address a series of what-if scenarios, using the intended Ellsworth Subglacial Lake probe deployment as a case study.
机译:自发现以来,南极冰河湖泊已引起科学界的极大兴趣。据推测,它们可能具有独特的生物生命形式,并拥有过去气候变化的详细沉积记录。根据最新清单,南极共发现了387个冰湖以下湖泊(Wright和Siegert,2011)。但是,尚未进行使用科学探针的探索。我们提出了一种通用的正式方法来管理在清洁进入冰湖之下的勘探过程中部署探头的操作风险。在马尔可夫链中捕获了整个探针部署过程的表示。从一个国家到另一个国家的过渡取决于几个因素,包括组件和过程的可靠性。我们使用故障树来量化为促进从一个国家过渡到另一个国家而必须进行的复杂过程的失败概率。因此,正式框架包括整合马尔可夫链,故障树,组件和子系统可靠性数据以及专家判断。为了说明其应用,我们以预期的Ellsworth Subglacial Lake探针部署作为案例研究,描述了该方法如何用于解决一系列假设情况。

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