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2D dynamic structure-soil-structure interaction for twin buildings in layered half-space Ⅱ: Incident SV-waves

机译:层状半空间中双建筑物的二维动力结构-土-结构相互作用Ⅱ:入射SV波

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摘要

A two-dimensional model for interaction through the soil of two identical vibrating structures, supported by rigid foundations embedded in a layered half-space, is presented for in-plane motions, and incident plane SV-wave. The formulation is based on the Indirect Boundary Element Method (IBEM). A similar model for incident SH-waves was presented in a companion paper. The formulation and results show higher level of coupling than for anti-plane motions. The vertical motions are coupled with the rocking and horizontal motions even for small motions, which is not the case for a stand-alone structure. At close distances, building relative response may be reduced by as much as 30% compared to the stand-alone structure, while otherwise it may be amplified, by as much as 50% for vertically incident SV-wave. For obliquely incident SV-wave, the building relative response of the illuminated structure may increase by 25%, while that of the structure behind would be reduced. Such phenomenon is consistent with earthquake observations in clusters of full-scale identical buildings. The effect of the other structure on the system frequency is small, within 3% for the cases considered.
机译:针对平面内运动和入射平面SV波,提出了一个二维模型,用于通过两个相同的振动结构在土壤中的相互作用,并由嵌入在分层半空间中的刚性基础支撑。该公式基于间接边界元素方法(IBEM)。在随附的论文中介绍了类似的入射SH波模型。公式和结果显示出比反平面运动更高的耦合度。垂直运动与摇摆运动和水平运动都结合在一起,即使是很小的运动,对于独立结构也不是这样。在近距离处,与独立结构相比,建筑物相对响应可能会减少多达30%,否则,对于垂直入射SV波,建筑物的相对响应可能会减少多达50%。对于倾斜入射的SV波,被照明结构的建筑物相对响应可能会增加25%,而后面结构的建筑物相对响应会减少。这种现象与在完全相同的建筑物群中的地震观测结果一致。在考虑的情况下,其他结构对系统频率的影响很小,在3%以内。

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