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Structural Fire Experimental Capabilities at the NIST National Fire Research Laboratory

机译:NIST国家火灾研究实验室的结构火灾实验能力

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The NIST National Fire Research Laboratory (NFRL) is a unique facility used to conduct real scale fire measurements. In 2015, the NFRL was expanded to enable research on the response of real-scale structural systems to realistic fire and mechanical loading under controlled laboratory conditions. The scientific objectives of the expanded NFRL are to develop an experimental database on the performance of materials, components, connections, assemblies, and systems under fire load. This data can be used by the international research community to validate and verify physics-based predictive models. The lab features two high bay test areas, a 18 m x 27 m strong floor with 1218 anchor points, a 9 m x 18 m strong wall with 420 anchor points, a hydraulic loading system, four large exhaust hoods instrumented for fire calorimetry, an emission control system for scrubbing acid gases and particles generated by real fuels, controlled gas and liquid fuel burners, water suppression systems, overhead cranes and conditioning space. The laboratory expansion was designed to accommodate experiments on real-scale structural systems and components up to two stories in height and 2 bays x 3 bays in plan. Through application of controlled loads, true service conditions can be simulated, and structures can be exposed to controlled and realistic fire conditions that grow, spread and decay with heat release rates as large as 20 MW. Measurement capabilities have been developed to characterize the response of structural systems and components up to failure and to characterize the fire heat release rate and thermal environment in real time. A detailed description of the laboratory is presented with an emphasis on measurement capabilities.
机译:NIST国家火灾研究实验室(NFRL)是用于进行真实规模火灾测量的独特设施。 2015年,NFRL得以扩展,从而能够在受控的实验室条件下研究实际规模的结构系统对实际火灾和机械载荷的响应。扩展后的NFRL的科学目标是针对火荷载下的材料,组件,连接,组件和系统的性能开发实验数据库。国际研究团体可以使用此数据来验证和验证基于物理学的预测模型。该实验室具有两个高湾测试区域,一个18 mx 27 m的坚固地板,带有1218个锚固点,一个9 mx 18 m的坚固壁,具有420个锚固点,一个液压加载系统,四个用于防火量热的大型排气罩,排放控制用于洗涤实际燃料产生的酸性气体和颗粒的系统,受控的气体和液体燃料燃烧器,水抑制系统,桥式起重机和调节空间。实验室的扩展旨在容纳对实际规模的结构系统和组件进行的实验,该实验的结构高度和高度分别为2层和2层x 3层。通过施加受控负载,可以模拟真实的服务条件,并且可以使结构暴露于受控且逼真的火灾条件下,这些条件会随着热量释放速率的增加,扩散和扩散而增大,扩散和衰减。已经开发出测量功能,以表征结构系统和组件对故障的响应,并实时表征火灾的热释放速率和热环境。介绍了实验室的详细说明,重点是测量功能。

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