首页> 外文会议>Highway Geology Symposium >Evaluation of Landslide Impacts to the Green River Bridge A Preliminary Geotechnical Assessment
【24h】

Evaluation of Landslide Impacts to the Green River Bridge A Preliminary Geotechnical Assessment

机译:对绿河桥梁山体滑坡影响的评价初步岩土性评估

获取原文

摘要

On October 7, 2006 an earthquake occurred on Mount Rainier, Washington prompting inspection of all nearby bridges by the Washington Department of Transportation. Two days later, an inspection of the SR 169 Bridge over the Green River Gorge revealed that the natural soils and fill near the southeast corner of the bridge abutment had slid, displacing a small crib wall and exposing a significant portion of the abutment and pier. A second investigation was conducted a few days later to determine if the observed slope movement was part of a larger landslide complex called the Green River Landslide. Detailed investigations revealed that the observed slope movement was due to a shallow depth landslide covering approximately 1.75 acres and was not directly related to the larger landslide complex. The lateral scarp of this small landslide exposed a significant portion of the bridge pier, creating concern over the stability of the bridge and the integrity of the pier footing. As-built plans from 1932 revealed that the bridge pier was supported on a spread footing, but it was unclear as to whether the footing was founded on soil or on bedrock. To determine if the bridge was moving, the nature of the foundation material, and the extent and stability of the landslide a geotechnical investigation was initiated. Access difficulties complicated the investigation and a unique approach including geologic mapping, field-developed cross sections, hand auger probing, ground penetrating radar, seismic refraction surveys, pile integrity testing, and the installation of biaxial tilt meters on the bridge piers was used to investigate the problem. Findings to date indicate that the bedrock elevation is approximately 3 feet below the bottom elevation of the bridge footing, the landslide slip plane appears to be at the interface between the overburden soils and the underlying bedrock, movement within the bridge pier has been negligible, and the landslide was likely initiated by surface water runoff traveling down the side of the bridge abutment.
机译:2006年10月7日,华盛顿州瑞尼尔山的地震发生,促使华盛顿交通部附近所有附近的桥梁检查。两天后,对绿河峡谷的SR 169桥检查显示,天然土壤和填充桥桥的东南角靠近桥梁,使小型婴儿床墙壁脱落,露出一部分高层桥墩。几天后进行了第二次调查,以确定观察到的坡度运动是否是称为绿河滑坡的较大滑坡复合物的一部分。详细的调查显示,观察到的坡度运动是由于铺出约1.75英亩的浅层山体滑坡,并且与较大的滑坡复合物没有直接相关。这种小滑坡的横向围巾暴露了桥墩的重要部分,造成了对桥梁的稳定性和码头脚的完整性的关注。从1932年开始制造的计划透露,桥接码头在蔓延的基础上得到了支持,但目前尚不清楚基于土壤或在基岩上是否成立。为了确定桥接桥是否正在移动,启动了基础材料的性质,以及滑坡的岩石行动程度和稳定性。接入困难复杂化了调查和独特的方法,包括地质映射,现场开发的横截面,手螺旋钻探测,地面穿透雷达,地震折射调查,桩完整性测试以及桥梁码头上的双轴倾斜仪的安装探讨问题。调查结果表明,基岩仰角的底部高度大约是3英尺的桥梁脚,山体滑坡似乎是覆盖覆盖土壤和底层基岩之间的界面,在桥墩内的运动可以忽略不计,而且山体滑坡可能是由桥桥侧行驶的地表水径流发起。

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