Study on the Predictive Evaluation Method of Nonlinear Sloshing Wave Height of Cylindrical Tanks: Part 1 — Shaking Table Test Results and Verification Results of Analytical Method for Nonlinear Sloshing

H. Morita, Tomoshige Takata, H. Madokoro, H. Sago, Hisatomo Murakami, Shinobu Yokoi, Tomohiko Yamamoto
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Abstract

When cylindrical tanks installed on the ground, such as oil tanks and liquid storage tanks, receive strong seismic waves, including the long-period component, motion of the free liquid surface inside the tank called sloshing may occur. If high-amplitude sloshing occurs and the waves collide with the tank roof, it may lead to accidents such as damage to the tank roof or outflow of internal liquid. Therefore, it is important to predict the wave height of sloshing generated by an earthquake input. Sloshing is vibration of the free liquid surface, and when the sloshing wave height is small, it can be approximated with a linear vibration model. In that case, the velocity-response-spectrum method using velocity potential can estimate the sloshing wave height under an earthquake input. However, when the sloshing wave height increases and the sloshing becomes nonlinear, it is necessary to evaluate the wave height using other methods such as numerical analysis. Taking into consideration that design earthquake levels tend to increase and the use of seismic isolation mechanisms has continued to spread in recent years, the amplitude of the long-period components of an earthquake input which act on cylindrical tanks may also increase. Therefore, although the evaluation of nonlinear sloshing wave height is important, there are few examples which quantitatively evaluate the wave height of nonlinear sloshing. The purpose of this study is to construct a simple evaluation technique of a nonlinear sloshing wave height of cylindrical tanks. In this study, the shaking table test using the small cylindrical tank for studying the behavior of nonlinear sloshing was carried out. Furthermore, verification of the flow-analysis technique described by previous report (PVP2017-65313) was carried out by comparing with test results. As a result, the data for constructing an evaluation technique has been acquired. Moreover, the validity of the flow-analysis technique was has been verified.
圆柱形储罐非线性坍塌波高预测评估方法研究:第 1 部分 - 振动台试验结果和非线性荡波分析方法的验证结果
当安装在地面上的圆柱形储罐(如油罐和液体储罐)接收到包括长周期分量在内的强地震波时,储罐内的自由液面可能会发生称为荡波的运动。如果发生高振幅荡波并与罐顶相撞,可能会导致罐顶损坏或内部液体外流等事故。因此,预测地震输入产生的荡波的波高非常重要。荡波是自由液面的振动,当荡波高度较小时,可以用线性振动模型进行近似。在这种情况下,利用速度势能的速度响应谱法可以估算地震输入下的荡波高度。然而,当荡波高度增大且荡波变得非线性时,就有必要使用其他方法(如数值分析)来评估波高。考虑到设计震级有提高的趋势,以及近年来隔震装置的使用不断普及,作用于圆柱形储罐的地震输入的长周期分量的振幅也可能增大。因此,尽管对非线性坍塌波高的评估非常重要,但很少有定量评估非线性坍塌波高的实例。本研究的目的是构建一种简单的圆柱形储罐非线性荡波高度评估技术。本研究利用小型圆柱形储罐进行了振动台试验,以研究非线性荡波行为。此外,还通过与试验结果进行对比,验证了先前报告(PVP2017-65313)中描述的流动分析技术。因此,获得了构建评估技术的数据。此外,还验证了流量分析技术的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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