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A study to investigate the cause of failure and collapse of UMNO Tower Penang

机译:调查槟城巫统塔倒塌的原因的研究

摘要

Wind-related disaster had become significant impacts in our society which responsible for the tremendous physical destruction, loss of life, injury and economic damage. OnudJune 13th 2013, a severe thunderstorm hits Penang which lasted for about an hour. In this tragedy, the lightning arrestor pole together with several accompanying structure, the fin-shaped wall attached to a 21-storey UMNO Tower Penang came crashing down during a thunderstorm, crushing vehicles, killing two and five were severely wounded. Therefore this study was carried out to investigate the effect of wind speed to theudbuilding tower. Computational Fluid Dynamic has been used in order to examine the effect of wind to the tower. Variations of directions are tested to the tower model. From the result it clearly shows that wind load may increase up 2.71 times from North West Direction from the normal wind act to tower. Additionally historical wind speed data at the nearest meteorological station after the building was also examined. From that it was observed historical wind speed is greater compare to the design wind speed. It may also seem that this value is not the worst that can cause the structure to collapse.udHistorical wind speed also showed foremost wind blow come from North West Direction. It can be concluded that the possibility of the collapse are highly foreseeableuddue to repeatable wind speed. The effect of the geometrical shape of the tower may also increase the wind load effect to the tower. Based on the result it can be conclude the repeatable load acting to structural component of the tower may weaken the structuraludcomponent. Therefore consideration of wind load direction is highly recommended during the design stage.
机译:与风有关的灾难已对我们的社会产生了重大影响,造成了巨大的人身破坏,生命损失,伤害和经济损失。 2013年6月13日,一场严重的雷暴袭击槟城,持续了大约一个小时。在这场悲剧中,避雷针杆和几个伴随的结构,附在一座21层高的槟城巫统塔上的鳍状墙在雷暴期间倒塌,压碎车辆,炸死2到5人重伤。因此,本研究旨在研究风速对建筑塔的影响。计算流体动力学已用于检查风对塔的影响。方向变化针对塔架模型进行了测试。从结果可以清楚地看出,从正常风向到塔架,风向可能从西北方向增加到2.71倍。此外,还检查了建筑物后最近的气象站的历史风速数据。由此观察到,历史风速比设计风速更大。该值似乎也不是导致结构崩溃的最差值。 ud历史风速也显示,最主要的风吹来自西北方向。可以得出结论,由于可重复的风速,倒塌的可能性是可以预见的。塔架的几何形状的影响也可以增加对塔架的风荷载作用。根据结果​​可以得出结论,作用于塔架结构构件的可重复载荷可能会削弱结构构件。因此,强烈建议在设计阶段考虑风向。

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