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RECIPROCITY THEOREM AND SEISMIC LOADS IMPACTING RIGID BASEMENT IN COMPLEX SOIL ENVIRONMENT

机译:复杂土环境中影响刚性基础的静性定理和地震荷载

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Platform model of the soil-structure system with lumped frequency-dependent soil springs is widely used in seismic analysis of NPP structures with rigid basements. However, for embedded basements it is not easy to link lumped seismic loads for this model to the free-field motion. Further difficulties arise in case rigid basement is surrounded by finite volume of the modified soil spoiling the horizontal layering of the initial soil foundation (this case is called "complex soil environment"). The author derives both continuous and mesh solutions for this case, using the reciprocity theorem extended to the frequency domain. In addition to the contact surface of the basement one has another surface limiting the volume of the modified soil. Contact problems with vibrating rigid basement are solved for the modified soil foundation with a new soil in a finite volume around the basement and "empty" outcropped volume (inside the embedded basement). As usual, response forces at the contact surface of the rigid basement are obtained and used to calculate integral impedances. Besides, the response displacements at the second "flexible" surface are also obtained. They are used to average the free-field seismic motion in the initial soil foundation at the second surface, and the result is equal to the lumped seismic load impacting the first surface (according to the reciprocity theorem). This analytical result is in good agreement with previously used mesh algorithms, but helps to develop new algorithms, saving computational resources.
机译:具有集总频率相关性土壤弹簧的土壤-结构系统平台模型被广泛用于刚性地下室NPP结构的地震分析中。但是,对于嵌入式地下室,将此模型的集总地震荷载与自由场运动联系起来并不容易。如果刚性地下室被有限体积的改良土壤包围,破坏了初始土壤基础的水平层状结构(这种情况称为“复杂土壤环境”),则会产生进一步的困难。作者使用扩展到频域的互易定理,为这种情况导出了连续解和网格解。除了基底的接触表面之外,还有一个表面限制了改性土壤的体积。通过在地下室周围有限体积的新土壤和“空”露头体积(埋入地下室内部)中解决的改良土壤基础中,解决了振动刚性地下室的接触问题。像往常一样,获得在刚性基底的接触表面处的响应力,并将其用于计算积分阻抗。此外,还获得了第二“柔性”表面上的响应位移。它们被用来平均第二面初始土壤基础中的自由场地震运动,其结果等于撞击第一面的集总地震荷载(根据互易定理)。该分析结果与以前使用的网格算法非常吻合,但有助于开发新算法,从而节省了计算资源。

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