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Experimental study of slip-friction connectors for controlling the maximum seismic demand on a liquid storage tank

机译:滑动摩擦连接器控制储液罐最大地震需求的实验研究

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Previous investigations have demonstrated that strong earthquakes can cause severe damage or collapse of storage tanks. Theoretical studies by other researchers have shown that using energy-dissipating anchors can reduce the axial compressive stresses in the tank shell compared to the fully anchored case. Those studies have also shown that using energy-dissipating anchors can reduce the displacement of the tank compared to the unanchored case. However, there is no experimental work to validate the results obtained from these numerical studies. This paper reports on a series of experiments using a shake table on a scale model PVC tank containing water. A comparison of the seismic behaviour of a fully fixed base system (tank with anchorage), a system free to uplift (tank without anchorage) and a partially fixed system (tank with slip-friction connectors) is presented. The slip-friction connectors are calibrated by performing cyclic tests. The experiments were performed using recorded ground motion scaled to the New Zealand design spectra for two Wellington sites. Measurements were made of the axial compressive stresses in the tank shell and the horizontal displacement of the top of the tank. The experiments showed the beneficial effects of using slip-friction connectors in storage tanks, reducing the uplift displacement in comparison with an unanchored tank and reducing the axial stresses compared to a fully fixed tank. A numerical model is proposed which corroborates these results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:先前的调查表明,强烈地震会导致储罐严重损坏或倒塌。其他研究人员的理论研究表明,与完全锚固的情况相比,使用消能锚可以减少罐壳中的轴向压应力。这些研究还表明,与无锚情况相比,使用消能锚可以减少水箱的排水量。但是,没有实验工作来验证从这些数值研究获得的结果。本文报道了在装有水的比例模型PVC罐上使用摇床进行的一系列实验。给出了一个完全固定的基础系统(带锚固的水箱),一个没有隆起的系统(无锚固的水箱)和一个部分固定的系统(带滑动摩擦连接器的水箱)的抗震性能的比较。滑动摩擦连接器通过执行循环测试进行校准。实验是使用记录的地面运动按比例缩放到新西兰在惠灵顿两个地点的设计光谱进行的。测量了罐壳中的轴向压缩应力和罐顶部的水平位移。实验表明,在储罐中使用滑动摩擦连接器具有有益的效果,与无锚储罐相比,减少了升力位移,与完全固定储罐相比,降低了轴向应力。提出了一个数值模型来证实这些结果。 (C)2015 Elsevier Ltd.保留所有权利。

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