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Experimental investigation on nonlinear dynamic response of concrete gravity dam-reservoir system

机译:混凝土重力坝-水库系统非线性动力响应的试验研究

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The nonlinear response of concrete gravity dam-reservoir system has been investigated by conducting experiments on small scale model of Koyna dam on a horizontal shake table using sinusoidal chirp motions. Two dimensional models of non-overflow section of Koyna dam have been prepared in the laboratory with a scale ratio of 1:150. To satisfy the laws of similitude, an appropriate ratio of cement, sand, bentonite and water has been mixed to find the target properties of model dam. Dam models have been casted over a wooden base plate using a wooden mould. After setting and drying process the wooden mould has been removed and each dam model has been assembled with a reservoir model after placing them over a horizontal shake table. The interaction between dam and reservoir model has been made in such a manner, so that it can transmit the hydro dynamic force of reservoir water to the dam model without allowing any seepage of water across it. Experiments have been performed on the dam-reservoir system with empty and full reservoir water by applying horizontal sinusoidal chirp excitations to the shake table to observe the basic behaviour, crack formation, crack opening, sliding along crack planes and stability after crack formation of the dam model. The numerical analysis of the system has been carried out using ABAQUS 6.10 considering damage plasticity model. The effect of foundation has been neglected assuming a rigid dam foundation as the dam is placed on a rigid plate. The eigen frequencies of the dam model have been calculated and compared with experimental values to calibrate the analysis model. The crack propagation due to tensile damages is computed and the results are compared with the experimental results. The outcome of the response results shows the correctness of the developed experimental model of dam-reservoir system.
机译:通过使用正弦chi运动在水平振动台上对科伊纳水坝的小模型进行实验,研究了混凝土重力坝-水库系统的非线性响应。在实验室中,比例为1:150的Koyna大坝非溢流断面的二维模型已经准备好。为了满足模拟法则,将水泥,沙子,膨润土和水的适当比例混合以找到模型坝的目标特性。使用木模将水坝模型浇铸在木底板上。凝固和干燥过程后,将木制模具移开,将每个大坝模型与水库模型组装在一起,然后将它们放在水平的振动台上。大坝与水库模型之间的相互作用是通过这种方式进行的,因此它可以将水库水的水动力传递给大坝模型,而不会使水流过大坝。通过对振动台施加水平正弦chi激励,对水位为空的水库水库进行了实验,观察了坝体基本行为,裂缝形成,裂缝开度,沿裂缝平面滑动以及裂缝形成后的稳定性。模型。考虑到损伤可塑性模型,使用ABAQUS 6.10对系统进行了数值分析。假设将大坝放置在刚性板上,则假设刚性大坝基础可忽略基础的影响。计算了大坝模型的本征频率,并将其与实验值进行比较以校准分析模型。计算了由于拉伸损伤引起的裂纹扩展,并将结果与​​实验结果进行了比较。响应结果的结果表明所建立的大坝-水库系统试验模型的正确性。

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