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Sand casting safety assessment for foundry enterprises: fault tree analysis Heinrich accident triangle HAZOP–LOPA bow tie model

机译:铸造企业的砂型铸造安全性评估:故障树分析Heinrich事故三角形HAZOP-LOPA领结模型

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摘要

Sand casting operations, though commonplace, pose a significant threat of explosion accidents. This paper presents a novel sand casting safety assessment technique based on fault tree analysis, Heinrich accident triangle, hazard and operability–layer of protection analysis (HAZOP–LOPA) and bow tie model components. Minimal cut sets and minimal path sets are first determined based on fault tree analysis, then the frequency of sand casting explosion accidents is calculated based on the Heinrich accident triangle. Third, the risk level of venting quality can be reduced by adopting HAZOP–LOPA; the residual risk level of venting quality remains excessive even after adopting two independent protective layers. The bow tie model is then adopted to determine the causes and consequences of venting quality. Five preventative measures are imposed to enhance the venting quality of foundry sand accompanied by 16 mitigative safety measures. Our results indicate that the risk attributable to low foundry sand venting quality can be minimized via bow tie analysis.
机译:砂型铸造操作虽然很平常,但却构成爆炸事故的重大威胁。本文提出了一种基于故障树分析,Heinrich事故三角形,危害和可操作性-防护层分析(HAZOP-LOPA)和领结模型组件的新型砂铸安全性评估技术。首先基于故障树分析确定最小割集和最小路径集,然后根据海因里希事故三角形计算砂型爆炸事故的发生频率。第三,采用HAZOP-LOPA可以降低通风质量的风险水平;即使采用两个独立的保护层,排气质量的剩余风险水平仍然过高。然后采用领结模型来确定排气质量的原因和后果。采取了五项预防措施,以提高铸造砂的排气质量,同时采取16项缓解措施。我们的结果表明,通过领结分析可以最大程度地降低铸造砂排放质量低下的风险。

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