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A comparative study of optimization models for the gas detector layout in offshore platform

机译:A comparative study of optimization models for the gas detector layout in offshore platform

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摘要

The layout of gas detector is an important factor affecting whether hazardous gas can be detected successfully. However, existing standards only put forward general requirements, and the practical application effect is not satisfying. In this paper, three p-median optimization models with different objectives have been proposed, including the minimal cumulative detection time model (MCDT), the minimal cumulative leakage concentration model (MCLC), and the minimal cumulative individual risk model (MCIR). To achieve the balance of computation cost and optimization accuracy, the complete accident scenario set (CASS) has been filtered according to the cumulative probability of all scenarios and further more reduced by the K-means cluster analysis. Since some small leakage which could not reach lower explosion limit (LEL) results in limited risk, a scenario screening has been carried out to take out these scenarios. The gas detector layout optimization of an offshore platform has been carried out as a case study. After that, the results have been contrasted, which demonstrates that these models can effectively improve the detection efficiency and each has its own advantages. MCDT model can provide the fastest detection speed which means it suites the situations that require more time to conduct emergency response and evacuation. MCLC model pays more attention to the overall risk of the region. On the other hand, considering the individual risk as the primary focus, MCIR model is more suitable for toxic gas leakage and poisoning situations.

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