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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Rotor platforms on pile-groups running through resonance: A comparison between unbounded soil and soil-layers resting on a rigid bedrock
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Rotor platforms on pile-groups running through resonance: A comparison between unbounded soil and soil-layers resting on a rigid bedrock

机译:桩基上通过共振运行的转子平台:无边界土壤与坚硬基岩上的土层之间的比较

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摘要

Rotor platforms supported by pile-groups typically run through resonance during start up and shut down. End-bearing pile-groups resting on a rather stiff underground surface cause additional layer-resonances compared with pile-groups driven into a half-space. On the other hand, the system's eigenfrequencies are accompanied by energy dissipation due to radiation damping. Thus the question arises, and is treated in this paper, if this radiation damping for end-bearing pile groups is strong enough to significantly suppress the additional resonance-peaks. The analysis uses dynamical stiffness coefficients in the frequency-domain for unbounded media recently published by Padron et al. [1]. In order to treat transient excitations a transformation into the time-domain is necessary and is here realized through a rational representation which has been described and used in [2] but only for pile groups resting in an elastic half-space, which exhibit a much smoother behavior (with reference to frequency) than the case treated here.
机译:由桩组支撑的转子平台通常在启动和关闭过程中经历共振。与打入半空间的桩组相比,置于相当坚硬的地下表面的端承桩组会产生额外的层共振。另一方面,由于辐射衰减,系统的本征频率伴随着能量耗散。因此,如果端承桩组的辐射衰减足够强以显着抑制额外的共振峰,那么就会出现该问题并在本文中进行处理。该分析在频域中对Padron等人最近发表的无边界媒体使用了动态刚度系数。 [1]。为了处理瞬态激励,有必要转换到时域,并在此处通过[2]中描述和使用的合理表示来实现,但仅适用于位于弹性半空间中的桩组,该桩表现出很大的弹性。行为(参考频率)比此处处理的情况更平滑。

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