...
首页> 外文期刊>Advances in civil engineering >The Dynamic Response Law of Bank Slope under Water-Rock Interaction
【24h】

The Dynamic Response Law of Bank Slope under Water-Rock Interaction

机译:水-岩相互作用下岸坡的动力响应规律

获取原文
           

摘要

During the reservoir operation process, the long-term security and stability of the bank slope is affected by dynamic response characteristics of its seismic action directly. Aimed at the typical bank slope existing in the actual reservoir environment, an experiment considering reservoir water level fluctuation and soaking-air-drying cyclic water-rock interaction has been designed and conducted while the cyclic loading test was performed in different water-rock cycles. Research results indicate the following Firstly, in the process of water-rock interaction, the dynamic characteristics of sandstone show evident degradation trend, with the increase of the damping ratio and Poisson’s ratio and decrease of dynamic elastic modulus, and the former six water-rock cycle degradation effects are particularly obvious. Secondly, the numerical analog computation analysis of dynamic response in typical bank slope shows that as the water-rock interaction period is increased, the dynamic response of the slope hydro-fluctuation belt zone increases gradually, while the other parts weaken. Thirdly, under the long-term water-rock interaction process, the hydro-fluctuation belt zone gradually becomes a “soft layer” which is sensitive to the earthquake effect and dynamic response, resulting in a direct influence on long-term seismic performance of the bank slope. Therefore, it is necessary to make better protection for the bank slope hydro-fluctuation belt zone.
机译:在储层运行过程中,岸坡的长期安全性和稳定性直接受到其地震作用的动态响应特征的影响。针对实际水库环境中存在的典型岸坡,设计并进行了考虑水库水位波动和均干风循环水-岩相互作用的试验,并在不同水-岩循环下进行了循环荷载试验。研究结果表明:首先,在水岩相互作用过程中,砂岩的动力特性表现出明显的退化趋势,其阻尼比和泊松比均增大,动弹性模量减小,前六种水岩循环退化的影响尤为明显。其次,对典型岸坡动力响应的数值模拟分析表明,随着水岩相互作用周期的增加,边坡水力波动带的动力响应逐渐增大,而其他部位的动力响应减弱。第三,在长期的水-岩相互作用过程中,水涨落带带逐渐成为对地震作用和动力响应敏感的“软层”,直接影响了该区的长期抗震性能。岸坡。因此,有必要对岸坡水力波动带区进行更好的保护。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号