首页> 外文期刊>Transportation Research Record >Field Measurements of Old Brick Culvert Slip Lined with Corrugated Steel Culvert
【24h】

Field Measurements of Old Brick Culvert Slip Lined with Corrugated Steel Culvert

机译:波纹钢涵内衬旧砖涵滑移的实测

获取原文
获取原文并翻译 | 示例
           

摘要

Thousands of culverts in the highway and railway system are in various states of deterioration, ranging from minor serviceability problems to serious functional and safety problems. One of the most effective ways to restore an old culvert to a functional condition is slip lining, the process of lining an old culvert with a new prefabricated one. Field measurements carried out on a 100-year-old brick culvert in Poland slip lined with a corrugated steel plate culvert (CSPS) are described. The new steel culvert is a pipe arch with a span of 4.26 m and height of 2.95 m. The steel culvert was assembled inside the old brick culvert without stopping traffic on the road. The space between the old culvert and the new steel culvert was filled with concrete with a compressive strength of 15 MPa. The old brick culvert was instrumented to measure strains under test load. The new steel culvert was instrumented to measure strains during the backfilling and test load. Earth pressure cells were installed in the foundation below the steel culvert to measure the pressure of the CSPS onto the subsoil. A truck with a total weight of 321 kN was used for the test load. The measured strains during test load were recorded when the truck was placed at various locations. Measurements show interaction between the old and new culvert. The redistribution of stresses that can indicate strengthening of the brick culvert was observed. Long-term measurements were taken 1 year (2001) and about 3 years (2003) after the slip lining was installed. The structure was also analyzed with the finite element method (FEM). The stress distribution obtained from the 2003 test is similar to the distribution obtained from the finite element method.
机译:公路和铁路系统中成千上万的涵洞处于各种退化状态,范围从轻微的使用性问题到严重的功能和安全性问题。将旧涵洞恢复到功能状态的最有效方法之一是衬砌,即用新的预制衬砌衬砌衬砌的过程。描述了在波兰衬瓦上衬有波纹钢板涵(CSPS)的具有100年历史的砖涵进行的现场测量。新的钢涵是跨度为4.26 m,高度为2.95 m的管拱。钢制涵洞装配在旧砖涵内,而不会阻止道路上的交通。在旧涵洞和新涵洞之间的空间中填充了抗压强度为15 MPa的混凝土。用旧的砖涵测量仪器在测试载荷下的应变。新型钢涵用于测量回填和测试载荷期间的应变。土压力传感器安装在钢涵下方的地基中,以测量CSPS施加到地基上的压力。总负载为321 kN的卡车用于测试负载。当卡车被放置在不同的位置时,记录在测试载荷下测得的应变。测量结果显示了新旧涵洞之间的相互作用。观察到应力的重新分布可以指示砖涵的加强。滑衬安装后的一年(2001年)和大约三年(2003年)进行了长期测量。还使用有限元方法(FEM)对结构进行了分析。从2003年测试获得的应力分布与从有限元方法获得的分布相似。

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