圆柱形储罐顶板非线性晃动波峰冲击载荷预测评估方法研究

H. Morita, Tomoshige Takata, H. Madokoro, H. Sago, Shinobu Yokoi, Tomohiko Yamamoto
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引用次数: 1

摘要

当安装在地面上的圆柱形储罐,如油罐和储液罐,受到包括长周期分量在内的强地震波时,可能会发生储罐内部自由液体表面的运动,称为晃动。如果发生高振幅晃动,波浪与罐顶碰撞,可能会导致罐顶损坏或罐内液体流出等事故。因此,对地震运动产生的晃动波高进行预测具有重要意义。晃动是自由液体表面的一种振动,如果晃动波高很小,可以用线性振动模型来近似。在这种情况下,利用速度势的速度响应谱法可以估计地震运动下的晃动波高。但是,当晃动波高增加时,晃动就会变成非线性的,需要用数值分析等其他方法来计算波高。近年来,日本的设计地震震级有增加的趋势,作用于晃动波高的地震波长周期分量也在增加,而没有引入隔震机制。为了评估作用在储罐顶部的晃动波峰冲击载荷,目前对非线性晃动波峰冲击载荷进行定量评估的应用很少。为了建立一种考虑作用在圆柱罐平顶上的非线性荡荡波高的荡荡冲击载荷评估方法,提出了一种新的考虑荡荡非线性和动力放大系数的荡荡冲击载荷评估流程图。通过圆柱形储罐振动台试验结果和流动分析结果验证了该技术的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the Predictive Evaluation Method of Nonlinear Sloshing Wave Crest Impact Load on the Roof of Cylindrical Tanks
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 of the tank roof or outflow of internal liquid of the tank. Therefore, it is important to predict the wave height of sloshing generated by earthquake motion. Sloshing is a type of vibration of free liquid surface, and if the sloshing wave height is small, it can be approximated with a linear vibration model. In this case, the velocity-response-spectrum method using velocity potential can estimate the sloshing wave height under earthquake motion. However, if the sloshing wave height increases, the sloshing becomes nonlinear, and necessary to evaluate the wave height using other methods such as numerical analysis. Design earthquake magnitude levels in Japan tend to increase in recent years, long-period components of earthquake wave which act on the sloshing wave height also increase instead of introducing seismic isolation mechanisms. To evaluate sloshing wave crest impact load acting on the roof of a tank, there are few applications which quantitatively evaluated the crest impact load of nonlinear sloshing. To construct a simple technique to evaluate the sloshing impact load considering the nonlinear sloshing wave height which acts on a flat roof of cylindrical tanks, it is proposed that flow diagram of evaluating the sloshing impact load which newly took into consideration the nonlinearity of sloshing and the dynamic amplification factor. The applicability of the technique was verified with the shaking table tests results for cylindrical tank and flow-analysis results.
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