尼泊尔加德满都Bir医院创伤中心地基动力分析

A. Adhikari, P. Adhikary
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摘要

近二十年来,加德满都大都市人口的迅速增长,对多层建筑的建设提出了要求。随着建筑物高度的增加,力矩和力沿结构高度的变化变得脆弱,当结构位于像加德满都谷地这样的软河流湖泊沉积物中时,这种变化更加明显。同样,如果在设计阶段不采取适当的措施,振动幅度会导致钢筋弯曲,从而损坏基础并最终损坏建筑物。因此,本文旨在计算固有频率下的振动幅度,地震内力及其变化为加德满都的Bir医院创伤中心的高度。用图解法估计了分析所需的弹性参数和弹性模量。剪切模量采用经验公式计算。在实验室中估算了层密度,结构荷载参照印度设计荷载标准。在19.3 Hz时,计算得到的最大振动幅值为12 mm,而在所有部分避免耦合效应的固有频率下,计算得到的最大振动幅值为1.5 mm。地震水平力和弯矩的变化在9-15 m高度最大,说明地震发生时在该高度有破坏的可能。尼泊尔加德满都特里布万大学地质学院学报,2007年第10卷,第55-62页
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Dynamic analysis of foundation of Bir Hospital Trauma Centre, Kathmandu, Nepal
The rapid incrase in population of Kathmandu metropolitan city in last two decades has demanded the construction of multistoried buildings. As the height of building increases, variation in moments and force along the height of the structure becomes vulnerable and is more pronounced when the structure rests in soft fluvio-lacustrine sediments like in the Kathmandu Valley. Similarly, the amplitude of vibration causes bending of rebars which can damage the foundation and ultimately the building, if proper care is not taken during the design phase. Therefore, this paper aims in calculating the amplitude of vibration at natural frequency, seismic interial force and its change for the height of the Bir Hospital Trauma Centre, Kathmandu. The elastic parameter, modulus of elasticity needed for analysis was estimated from a graphical method. Shear modulus was calculated using empirical ralation. Density of strate was estimated in the laboratory and load of the structure was referred from Indian Standard of design loads. The maximum amplitude of vibration calculated was 12 mm at 19.3 Hz whereas it was 1.5 mm at the natural frequency for all portions avoiding coupling effect. The variation in seismic horizontal force and moment was largest at the height of 9-15 m showing the possibility of failure at such height at the time of earthquake. doi: 10.3126/bdg.v10i0.1420 Bulletin of the Department of Geology, Tribhuvan University, Kathmandu, Nepal, Vol. 10, 2007, pp. 55-62
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