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Does Your Facility Have a Dust Problem: Methods for Evaluating Dust Explosion Hazards

机译:您的设施是否有灰尘问题:评估尘埃爆炸危险的方法

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The hazards of dust explosions prevailing in plants are dependent on a large variety of factors that include process parameters, such as pressure, temperature and flow characteristics, as well as equipment properties, such as geometry layout, the presence of moving elements, dust explosion characteristics and mitigating measures. A good dust explosion risk assessment is a thorough method involving the identification of all hazards, their probability of occurrence and the severity of potential consequences. The consequences of dust explosions are described as consequences for personnel and equipment, taking into account consequences of both primary and secondary events. While certain standards cover all the basic elements of explosion prevention and protection, systematic risk assessments and area classifications are obligatory in Europe, as required by EU ATEX and Seveso II directives. In the United States, NFPA 654 requires that the design of the fire and explosion safety provisions shall be based on a process hazard analysis of the facility, process, and the associated fire or explosion hazards. In this paper, we will demonstrate how applying such techniques as SCRAM (short-cut risk analysis method) can help identify potentially hazardous conditions and provide valuable assistance in reducing high-risk areas. The likelihood of a dust explosion is based on the ignition probability and the probability of flammable dust clouds arising. While all possible ignition sources are reviewed, the most important ones include open flames, mechanical sparks, hot surfaces, electric equipment, smoldering combustion (self-ignition) and electrostatic sparks and discharges. The probability of dust clouds arising is closely related to both process and dust dispersion properties.
机译:植物中尘埃爆炸的危害取决于各种因素,包括工艺参数,如压力,温度和流动特性,以及设备性质,如几何布局,移动元件的存在,灰尘爆炸特性和缓解措施。良好的粉尘爆炸风险评估是一种彻底的方法,涉及鉴定所有危害,其发生概率和潜在后果的严重程度。粉尘爆炸的后果被描述为对人员和设备的后果,考虑到初级和次要事件的后果。虽然某些标准涵盖了爆炸防护和保护的所有基本要素,但欧洲的强制性风险评估和区域分类是欧盟ATEX和SEVESO II指令所要求的欧洲义务。在美国,NFPA 654要求火灾和爆炸安全规定的设计应基于该设施,过程和相关火灾或爆炸危害的过程危害分析。在本文中,我们将展示如何将这种技术施加为扰流(短裁风险分析方法)可以帮助确定潜在的危险条件,并在减少高风险区域方面提供有价值的援助。粉尘爆炸的可能性基于点火概率和易燃尘埃云的可能性。虽然综述了所有可能的点火源,最重要的是,最重要的是包括开放式火焰,机械火花,热表面,电气设备,闷烧燃烧(自燃)和静电火花和放电。产生的灰尘云的可能性与过程和灰尘分散性质密切相关。

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