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Investigation of Recessed and Concealed Sprinklers Activation in Wind Tunnel Plunge Test and in BRANZFIRE Computer Model

机译:在风洞切入试验和BRANZFIRE计算机模型中研究隐蔽式和隐蔽式洒水喷头的作用

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摘要

Installation of exposed fire sprinklers may cause inconvenience in areas where architectural and interior presentation is significant. In order to overcome this inconvenience, recessed and concealed sprinklers were created and are applied widely. Response Time Index (RTI) and C-factor are the thermal sensitivity (intrinsic parameters) used to characterise a sprinkler. They are also used as input parameters in computer fire models to simulate sprinkler response time. However, the RTI and C-factor are not published by the manufactures. Therefore the RTI and C-factor of the recessed and concealed sprinklers have been analysed and determined in this research. In order to obtain the RTI of the recessed and concealed sprinklers, four of the most commonly used sprinkler models (two recessed and two concealed) in New Zealand have been investigated in plunge test experiment by using a wind tunnel in this research. The UC3 wind tunnel used to conduct the plunge test has been fabricated in this research. This work has demonstrated that the UC3 wind tunnel could provide a very stable and uniform temperature profile in the test section. However, the velocity uniformity of the tunnel needs to be improved in the future. The "apparent" RTI for different recessed and concealed sprinkler models (two recessed and two concealed) have been determined in the plunge test experiment. It should be noted that the "final calculated RTI" for each tested recessed and concealed sprinklers has been denoted as "apparent RTI" in this study. BRANZFIRE computer model has been used to model the fire scenarios in the full scale fire tests conducted by Bill and Heskestad (1995). The best input fire object location, the best input sprinkler distance below the ceiling and the input "apparent C-factor" in BRANZFIRE for the flush, recessed, concealed and the recessed sidewall sprinklers have been determined in this research. This work has generally improved the guidance available to fire safety engineers for the RTI and C-factor of the recessed and concealed sprinklers.
机译:在建筑和室内装饰很重要的区域安装裸露的消防喷淋器可能会带来不便。为了克服这种不便,产生了隐蔽式和隐蔽式洒水装置并被广泛应用。响应时间指数(RTI)和C因子是用于表征洒水喷头的热敏度(固有参数)。它们还用作计算机火灾模型中的输入参数,以模拟洒水器响应时间。但是,制造商未发布RTI和C因子。因此,本研究对隐蔽式和隐蔽式喷头的RTI和C因子进行了分析和确定。为了获得嵌入式和隐藏式洒水器的RTI,在本研究中,通过使用风洞进行了暴跌试验,研究了新西兰最常用的四个喷头模型(两个嵌入式和两个隐藏式)。在这项研究中,制造了用于进行骤降测试的UC3风洞。这项工作表明,UC3风洞可以在测试部分提供非常稳定和均匀的温度曲线。但是,将来需要提高隧道的速度均匀性。在骤降测试实验中,已经确定了不同的嵌入式和隐藏式洒水模型(两个嵌入式和两个隐藏式)的“表观” RTI。应该注意的是,在本研究中,每个经过测试的隐蔽式和隐蔽式喷头的“最终计算出的RTI”已表示为“表观RTI”。在Bill和Heskestad(1995)进行的全面火灾测试中,已使用BRANZFIRE计算机模型来模拟火灾场景。在这项研究中,已经确定了最佳的输入火源位置,最佳的低于天花板的输入喷头距离以及BRANZFIRE中输入的“表观C因子”,用于平齐,凹陷,隐蔽和凹陷的侧壁喷头。这项工作通常改善了消防安全工程师对嵌入式和隐藏式洒水喷头的RTI和C系数的指导。

著录项

  • 作者

    Yu Kevin Xin Jun;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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