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Effect of Foundation Embedment on the Seismic Response of a High Temperature Gas-Cooled Reactor Plant

机译:基础埋设对高温气冷堆厂地震响应的影响

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The effects of soil-structure interaction during seismic events upon the dynamic response of a High Temperature Gas-Cooled Reactor Plant (HTGR) have been investigated for both surface-founded and embedded basemats. The influence from foundation embedment has been quantitatively assessed through a series of theoretical studies on plants of various sizes. The surface-founded analyses were performed using frequency-independent soil impedance parameters; while the embedded plant analyses utilized finite element models simulated on the FLUSH computer program. The seismic response of the surface-founded plants has been used to establish the standard-site design in-structure response spectra. These analyses were performed by using the linear modal formulation based on conventional soil stiffness and damping values. Numerical results are presented in terms of in-structure response spectra along with other pertinent seismic load data at key levels of the plant. Analysis techniques for future studies using viscoelastic halfspace representation and inelastic finite element modeling for soil are also discussed. (ERA citation 08:002283)

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