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A comparative study of optimization models for the gas detector placement in process facilities

机译:工艺设施中燃气检测器放置优化模型的比较研究

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Gas detector network is an important layer of protection in process facilities for prevention gas leakage accidents. But traditional standards just provide basic principles for the installation of detectors. In this study, three stochastic programming (SP) models are developed and contrasted, namely minimal detection time P-Median model (MDTP), minimal leakage concentration P-Median model (MLCP), and minimal individual risk P-median model (MIRP). Meanwhile all possible leak scenarios are identified based on the combination of wind field set and leakage sources. And clustering analysis is used to filter similar scenarios and select representative leak scenarios. The leak consequences are predicted by computational fluid dynamics (CFD) method and the results are served as the input data of these SP models. A case study is carried out in a diesel hydrogenation unit.
机译:燃气探测器网络是预防气体泄漏事故的工艺设施中的重要保护层。但传统标准只提供了安装探测器的基本原则。在这项研究中,开发了三种随机编程(SP)模型,形成了最小的检测时间,即最小的检测时间p-中值模型(MDTP),最小漏浓度正值模型(MLCP),以及最小的个体风险P-MEDIAN模型(MIRP) 。同时,基于风场设定和漏电源的组合来识别所有可能的泄漏方案。群集分析用于过滤类似的方案并选择代表泄漏方案。通过计算流体动力学(CFD)方法预测泄漏后果,结果用作这些SP模型的输入数据。在柴油氢化单元中进行案例研究。

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