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Shaking-table tests of flat-bottom circular silos containing grain-like material

机译:包含颗粒状物质的平底圆形筒仓的振动台试验

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摘要

According to Eurocode 8, the seismic design of flat-bottom circular silos containing grain-like material is based on a rough estimate of the inertial force imposed on the structure by the ensiled content during an earthquake: 80% of the mass of the content multiplied by the peak ground acceleration. A recent analytical consideration of the horizontal shear force mobilised within the ensiled material during an earthquake proposed by some of the authors has resulted in a radically reduced estimate of this load suggesting that, in practice, the effective mass of the content is significantly less than that specified. This paper describes a series of laboratory tests that featured shaking table and a silo model, which were conducted in order to obtain some experimental data to verify the proposed theoretical formulations and to compare with the established code provisions. Several tests have been performed with different heights of ensiled material – about 0.5 mm diameter Ballotini glass – and different magnitudes of grain–wall friction. The results indicate that in all cases, the effective mass is indeed lower than the Eurocode specification, suggesting that the specification is overly conservative, and that the wall–grain friction coefficient strongly affects the overturning moment at the silo base. At peak ground accelerations up to around 0.35 g, the proposed analytical formulation provides an improved estimate of the inertial force imposed on such structures by their contents.
机译:根据欧洲规范8,包含颗粒状材料的平底圆形筒仓的抗震设计是基于对地震过程中填缝物对结构施加的惯性力的粗略估算:80%的乘积质量通过地面加速度峰值。一些作者提出的对地震过程中在青铜材料内部移动的水平剪切力的最新分析考虑导致对这种载荷的估计值从根本上减少了,这表明,实际上,内含物的有效质量明显小于该载荷的有效质量。指定。本文介绍了一系列以振动台和筒仓模型为特色的实验室测试,旨在获得一些实验数据,以验证所提出的理论公式并与已建立的规范进行比较。已经使用不同高度的青铜材料(直径约0.5毫米的Ballotini玻璃)以及不同大小的晶壁摩擦力进行了多项测试。结果表明,在所有情况下,有效质量的确低于欧洲规范,这表明该规范过于保守,壁-壁摩擦系数强烈影响筒仓底部的倾覆力矩。在最高地面加速度达到约0.35μg时,建议的分析公式可以更好地估算其内容物对此类结构施加的惯性力。

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