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Nonlinear dynamic response of concrete gravity dams considering the deconvolution process

机译:考虑到解卷积过程的混凝土重力坝的非线性动力响应

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In order to model any physical system, including concrete dams, one needs to apply simplifications to the real system to make the modeling feasible. To study the dynamic response of concrete dams, relevant assumptions are made regarding foundation modeling, input motion mechanism, dam-reservoir interaction, and material behavior. Some of these simplifications may lead to more conservative and uneconomical outcomes. In this paper, nonlinear time-domain dynamic analyses are conducted to evaluate the effect of the input motion mechanism on the concrete gravity dam response. An ideal model of a dam-reservoir-foundation system, considering the inertia of the foundation, appropriate boundary conditions and precise deconvolved base motions, is selected as the reference model. The process of deconvolution of seismic waves through the frequency- and time domain approaches is discussed, and suggestions for the selection of an appropriate damping model for the rock foundation are presented. The results are compared to those of the standard model of a massless foundation system as recommended by the US Army Corps of Engineers. The numerical results indicate that, generally, the nonlinear response of the two dam models follow similar patterns, but with a larger amplitude for the massless system. It is noted that the consequence of neglecting the dynamic effect of the foundation can be significant. Additionally, the results demonstrate that the degree of overestimation varies dramatically for the various seismic excitations. The average overestimation of the massless system for the crest displacement, crest acceleration, and the contact opening and sliding are 57%, 45%, 152%, and 90%, respectively. It is further shown that the use of the deconvolved input excitation at the base of the finite foundation derived from the frequency domain approach can yield discrepancies between the target and convolved surface ground motions, which can also have a considerable effect on the dam response.
机译:为了模拟任何物理系统,包括混凝土水坝,需要将简化应用于真实系统以使建模可行。为研究混凝土坝的动态响应,对基础建模,输入运动机构,坝储层相互作用和材料行为进行了相关假设。其中一些简化可能导致更保守和不经济的结果。本文进行了非线性时域动态分析,以评估输入运动机制对混凝土重力坝响应的影响。考虑到基础惯性,适当的边界条件和精确的解泛底座运动的理想模型,选择为参考模型。讨论了地震波通过频率和时域方法的解卷积的过程,并提出了选择用于岩石基础的适当阻尼模型的建议。结果与美国陆军工程兵团推荐的大型基础系统标准模型的结果进行了比较。数值结果表明,通常,两个大坝模型的非线性响应遵循类似的模式,但是对于无麻自动系统的幅度较大。注意,忽视基础动态效果的后果可能是显着的。另外,结果表明,估计程度急剧变化,各种地震激发。对嵴位移,波峰加速度和接触开口和滑动的平均高估分别为57%,45%,152%和90%。进一步示出了在来自频域方法的有限基础的基础上使用解向输入激发,可以在目标和卷积表面接地运动之间产生差异,这也可以对坝响应具有相当大的影响。

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