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Monte Carlo reliability analysis of a safety plant of the Italian Gran Sasso high energy physics national laboratory by means of the MARA code

机译:利用MARA规范对意大利Gran Sasso高能物理国家实验室的安全工厂进行Monte Carlo可靠性分析

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The Gran Sasso National Laboratory (LNGS) of the Istituto Nazionale di Fisica Nucleare (INFN), the Italian government agency for nuclear physics, is the biggest underground physics laboratory in the world. The Laboratory is located inside the left motorway tunnel crossing the Gran Sasso mountain in the motorway connecting Rome to Teramo in central Italy. The Laboratory consists of three big Halls, connected through a network of tunnels, where nuclear physics experiments are performed. The unique access of the Laboratory is through the left motorway tunnel. The physics experiments run inside the Laboratory involve the use of considerable quantity of flammable, toxic and other dangerous materials that in case of an accident could pose hazards to the personnel as well as to the highway users. This situation requires that detailed safety analyses be made in order to evaluate the risk associated to the experimental activities and that state-of the-art safety systems be installed for prevention of accident occurrences, early accident detection, warning and protection so as to minimize the consequences of an accident inside the Laboratory. Then, reliability and availability analyses of the safety systems are mandatory in order to keep the control of their overall performance. In this paper we present the results of a Monte Carlo reliability analysis activity which was performed on the high-expansion foam fire-fighting safety system installed in one of the main halls of the Laboratory. The analysis was carried out by means of the MARA (Montecarlo Availability Reliability Analysis) code.
机译:意大利核物理政府机构(Istituto Nazionale di Fisica Nucleare)的Gran Sasso国家实验室(LNGS)是世界上最大的地下物理实验室。该实验室位于穿越高速公路的格兰萨索山的左侧高速公路隧道内,该高速公路将罗马连接到意大利中部的泰拉莫。实验室由通过隧道网络连接的三个大大厅组成,在这里进行核物理实验。实验室的独特通道是通过左侧的高速公路隧道。在实验室内部进行的物理实验涉及使用大量易燃,有毒和其他危险材料,如果发生事故,可能会对人员和高速公路使用者造成危害。这种情况需要进行详细的安全分析,以评估与实验活动相关的风险,并且必须安装最新的安全系统,以防止事故发生,及早进行事故检测,警告和保护,以最大程度地减少事故的发生。实验室内部事故的后果。然后,必须对安全系统进行可靠性和可用性分析,以保持对其整体性能的控制。在本文中,我们介绍了蒙特卡洛可靠性分析活动的结果,该活动是对安装在实验室主厅之一中的高膨胀泡沫消防安全系统进行的。该分析是通过MARA(蒙特卡洛可用性可靠性分析)代码进行的。

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