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A comprehensive numerical design of firefighting systems for onshore petroleum installations

机译:陆上石油设施的消防系统综合数值设计

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摘要

Petroleum facilities containing welded steel bulk flammable liquid product storage tanks possess sundry fire hazards inherent to the facility. These installations urgently require indigenous efficient firefighting systems. So, the efficient design of firewater and firefighting foam system is dynamic in controlling fire-related emergencies. The paper deals with the in-depth conceptualization of the design and analysis of firefighting systems for a typical petroleum handling, processing and storage facility in compliance with international standards. The study is aimed to formulate the elementary technique for designing an optimized firefighting system. The proposed objective was achieved by considering an ideal tank farm site that is most commonly located in a range of terminal stations, pumping stations, petroleum refineries, well sites, etc. Sufficient illumination was enumerated on the standardized classification of the liquid fuel product with respect their flammability range. Special guidelines regarding firefighting system design basis were defined and an optimized firefighting and foam system design was developed. Moreover, sufficient limitations that must be considered during the firefighting of huge tank fires are discussed. This comprehensive numerical design philosophy offers a simple and wide-ranging guide to industrial practitioners by formulating the principles for industrial firefighting system design.
机译:含有焊接钢散装易燃液体产品储罐的石油设施拥有设施固有的阳光火灾危险。这些装置紧急需要土着有效的消防系统。因此,防火液和消防泡沫系统的高效设计是控制与火灾相关的紧急情况的动态。本文涉及用于典型石油处理,加工和储存设施的消防系统的设计和分析的深入概念化,符合国际标准。该研究旨在制定设计优化的消防系统的基本技术。通过考虑最常见于一系列终端站,泵站,石油炼油厂,井网站等的理想坦克农场的拟议目标。在液体燃料产品的标准化分类中列举了足够的照明它们的可燃性范围。定义了有关消防系统设计基础的特殊准则,开发了优化的消防和泡沫系统设计。此外,讨论了在消防巨大坦克火灾中必须考虑的充分限制。这种综合的数字设计理念是通过制定工业消防系统设计的原则,为工业从业者提供简单而广泛的工业直言之指南。

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