首页> 外文会议>International Conference on Soil Mechanics and Geotechnical Engineering(16 ICSMGE) vol.3; 2005; Osaka(JP) >Vibration isolation of foundations subjected to impact loads by open trenches using physical models
【24h】

Vibration isolation of foundations subjected to impact loads by open trenches using physical models

机译:使用物理模型通过开放式沟槽对承受冲击载荷的地基进行隔振

获取原文
获取原文并翻译 | 示例

摘要

Surface waves generated during vibration of machine foundations are sometimes troublemaking and cause some damages to the nearby sensitive structures or people. Considering the function of the machines located on the foundations the dynamic loading could be harmonic or impact type. The main part of the generated energy is transferred to the ground by Rayleigh surface waves. One of the most reliable and economic methods for reduction of the effects of these generated waves is using open trenches around the dynamic sources, so called active isolation in literature. In this paper applicability and affecting parameters of the open trenches around the impact dynamic source is studied using physical model tests. Cubic model container filled with loose and dry sand models. Dynamic tests were performed using drop of a tamper producing impact loads. The corresponding tests were performed for identical models with and without isolating trenches around the dynamic source. In order to record the response of the models, all models were well instrumented at different points using acceleration and soil pressure sensors. The dimension and location of the trenches are among the parameters varying for different tests. It is shown that with increasing the depth of trench efficiency of the isolation for impact is increasing. The optimum depth of the trench is affected by many parameters like the type and frequency content of the dynamic loading.
机译:机器基础振动期间产生的表面波有时会造成麻烦,并会损坏附近的敏感结构或人员。考虑到位于地基上的机器的功能,动态载荷可以是谐波或冲击型。产生的能量的主要部分通过瑞利表面波传递到地面。减少这些产生的波影响的最可靠,最经济的方法之一是在动态源周围使用开放沟槽,在文献中称为有源隔离。本文利用物理模型试验研究了冲击动力源周围明渠的适用性和影响参数。装有松散和干燥沙子模型的立方模型容器。动态测试是通过使用产生干扰负载的夯锤下降进行的。对相同的模型执行了相应的测试,在动态源周围没有隔离沟槽的情况下,也没有隔离沟槽。为了记录模型的响应,使用加速度和土壤压力传感器在不同点对所有模型进行了很好的检测。沟槽的尺寸和位置是针对不同测试而变化的参数之一。结果表明,随着沟槽深度的增加,用于隔离的隔离效率也在增加。沟槽的最佳深度受许多参数的影响,例如动态载荷的类型和频率含量。

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