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An experimental study on fire resistance of medical modular block

机译:医用组合砌块耐火性的实验研究

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Fire performance and fire safety of high-rise buildings have become major concerns after the disasters of World Trade Center in the U.S. in 2001 and Windsor tower in Spain in 2005. Performance based design (PBD) approaches have been considered as a better method for fire resistance design of structures because it is capable of incorporating test results of most recent fire resistance technologies. However, there is a difficulty to evaluate fireproof performance of large structures, which have multiple structural members such as columns, slabs, and walls. The difficulty is mainly due to the limitation in the testing equipment, such as size of furnace that can be used to carry out fire tests with existing criteria like ISO 834, BS 476, and KS F 2257. In the present research, a large scale calorie meter (10 MW) was used to conduct three full scale fire tests on medical modular blocks. Average fire load of 13.99 kg/m~2 was used in the first test. In the second test, the weighting coefficient of 3.5 (the fire load of 50 kg/ m~2) was used to simulate the worst fire scenario. The flashover of the medical modular block occurred at 62 minutes in the first test and 12 minutes in the second test. The heat resistance capacity of the external wall, the temperatures and defonnations of the structural members satisfied the requirements of fire resistance performance of 90 minutes burning period. The total heat loads and the heat values for each test are calculated by theoretical equations. The duration of burning was predicted. The predicted results were compared with the test results, and they agree quite well.
机译:在2001年美国世界贸易中心和2005年西班牙温莎大厦发生灾难之后,高层建筑的防火性能和防火安全已成为人们关注的主要问题。基于性能的设计(PBD)方法被认为是一种更好的防火方法。结构的抗力设计,因为它能够结合最新的耐火技术的测试结果。但是,难以评估大型结构的防火性能,大型结构具有多个结构构件,例如圆柱,平板和墙壁。困难主要是由于测试设备的局限性,例如可用于以现有标准(例如ISO 834,BS 476和KS F 2257)进行火灾测试的炉子尺寸。在本研究中,大规模热量计(10兆瓦)用于对医疗模块化模块进行三个全面的防火测试。首次测试使用的平均火荷载为13.99 kg / m〜2。在第二个测试中,使用3.5的加权系数(50 kg / m〜2的火荷载)模拟最坏的火灾情况。医疗模块化模块的闪络发生在第一次测试的62分钟和第二次测试的12分钟。外墙的耐热能力,结构构件的温度和变形满足90分钟燃烧期的耐火性能要求。通过理论公式计算每次测试的总热负荷和发热量。可以预测燃烧的持续时间。将预测结果与测试结果进行了比较,它们非常吻合。

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