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Novel technology for flame and gas detection in the petrochemical industry

机译:石化行业火焰和气体检测的新技术

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Abstract: A reliable and high performance novel method of flame and gas optical spectral analysis was developed to meet the specific flame and gas detection of the petrochemical industry. Petrochemical industries, especially the offshore and unmanned areas in onshore refineries, pose a major safety hazard with respect to potential explosions and fire events. Unwanted fuel spills or fugitive flammable vapor clouds, migrating along congested pipe lines and hot production areas may cause upon ignition significant loss or damage. To help prevents events like the catastrophic fire that destroyed the offshore oil platform Piper Alpha in July 1988, a reliable and fast gas and flame detection system can be used to trigger effective risk management actions. The present paper describes a patented method of Triple Optical Spectral Analysis employed for the detection of various gases in the air according to their unique 'spectral finger print' absorption characteristics of radiation, as well as for analysis of emission and absorption radiation from combustion processes for flame detection purpose. The method has been applied in the development of unique gas and flame monitoring system designed for 'high risk - harsh/extreme weather conditions continuous operation'. These systems have been recently installed on several offshore platforms and oil rigs as well as on 'floating production Storage and Offloading' - FPSO vessels. The systems advantages and limitations as well as several installations and test data are presented. Various atmospheric conditions as well as false alarm stimulus are discussed. !12
机译:摘要:提出了一种可靠,高性能的火焰和气体光谱分析新方法,以满足石油化工行业特定的火焰和气体检测需求。石化行业,尤其​​是陆上炼油厂的近海和无人区,对于潜在的爆炸和火灾事件构成了重大的安全隐患。沿拥挤的管道和热的生产区域迁移的有害燃油泄漏或易燃易挥发蒸气云可能会在点燃时造成重大损失或损坏。为了帮助防止发生诸如灾难性大火之类的事件,这些事件在1988年7月摧毁了海上石油平台Piper Alpha,可以使用可靠,快速的气体和火焰检测系统来触发有效的风险管理措施。本文介绍了一种三重光谱分析的专利方法,该方法用于根据空气中各种气体的独特“光谱指纹”吸收特性来检测空气中的各种气体,以及分析来自燃烧过程的发射和吸收辐射。火焰检测的目的。该方法已应用于为“高风险-恶劣/极端天气条件连续运行”而设计的独特的气体和火焰监测系统的开发中。这些系统最近已安装在多个海上平台和石油钻井平台以及“浮式生产储存和卸载” FPSO船上。介绍了系统的优点和局限性以及一些安装和测试数据。讨论了各种大气条件以及错误警报刺激。 !12

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