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Model Test on the Vibration Reduction Characteristics of a Composite Foundation with Gravel Cushion under Different Seismic Wave Amplitudes

机译:不同地震波振荡下砾石垫复合地基减振特性模型试验

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Gravel cushions have been introduced as a practical and efficient seismic isolation technology to ensure the safety of nuclear power plants. This study investigated the seismic isolation effect of a gravel cushion by conducting a series of shaking table tests on a model foundation with a cushion built of three different types of graded aggregates (single-sized (2–5?mm), two-sized (2–5?mm:5–10?mm?=?3?:?1), and continuously graded) under input El Centro seismic waves with three different peak accelerations (0.1?g, 0.2?g, and 0.3?g). The testing results showed that the seismic isolation effect of the gravel cushion increased with the peak seismic acceleration. The gravel cushion built with single-sized aggregates had better seismic isolation performance than gravel cushions built with two-sized or continuously graded aggregates. Under input seismic waves with 0.1?g peak acceleration, the single-sized aggregate gravel cushion still had a seismic isolation effect with a vibration reduction rate of approximately 11.81%, whereas the other two gravel cushions had no effect. Under input seismic waves with peak accelerations of 0.2?g and 0.3?g, all three gravel cushions had seismic isolation effects with vibration reduction rates of approximately 18.63% and 17.92%, respectively. An empirical model is proposed for predicting the vibration reduction rate of the cushion. Under input seismic waves with 0.3?g peak acceleration, the ultimate vibration reduction rate of the gravel cushion fell between 20.44% and 31.33%. The gravel cushion is an excellent option for nuclear power plant foundations with high requirements for seismic isolation, provided that the required bearing capacity is satisfied.
机译:砾石垫被引入了一种实用和高效的地震隔离技术,以确保核电厂的安全性。本研究调查了砾石垫的地震隔离效果通过在模型基础上进行一系列摇动台测试,其中垫子由三种不同类型的分级(单尺寸(2-5Ωmm),双尺寸( 2-5?mm:5-10?mm?=?3?:?1),并且连续分级)在输入的EL Centro地震波,具有三种不同的峰值加速度(0.1?g,0.2?g,0.3?g) 。测试结果表明,砾石垫的地震隔离效果随着峰的地震加速而增加。由单尺寸的聚集体构建的砾石垫具有比具有双尺寸或连续分级的聚集体构建的砾石垫更好的地震隔离性能。在输入峰值加速度的输入地震波下,单尺寸的聚集砾石垫仍然具有抗震率的隔离效果,减振速度约为11.81%,而另外两个砾石垫无效。在输入地震波下,峰值加速度为0.2?G和0.3?G,所有三个砾石垫的抗震分离效应分别具有约18.63%和17.92%的振动率。提出了一种用于预测垫子的减振率的经验模型。在输入地震波下,达到峰值加速,砾石垫的最终减振率下降了20.44%和31.33%。砾石垫是核电站基础的绝佳选择,具有高要求的地震隔离,只要满足所需的承载力。

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