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市政道路交通工程高架施工过程风险评估研究分析 被引量:2
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作者 张晓燕 《时代汽车》 2020年第19期181-182,共2页
本文对市政道路交通工程高架施工过程风险评估问题进行了探讨,文章从阐述市政道路交通工程高架施工概况入手,进一步分析了市政道路交通工程高架施工风险评估的操作要点以及高架结构施工过程中的主要风险点,最后提出了加强市政道路交通... 本文对市政道路交通工程高架施工过程风险评估问题进行了探讨,文章从阐述市政道路交通工程高架施工概况入手,进一步分析了市政道路交通工程高架施工风险评估的操作要点以及高架结构施工过程中的主要风险点,最后提出了加强市政道路交通工程高架施工过程风险控制的综合措施。 展开更多
关键词 市政道路交通高架工程 施工过程风险评估 概况 风险点 综合措施
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MWD无线随钻测斜仪信号判断分析及磨损评估方法
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作者 韩利明 《中国化工贸易》 2012年第4期82-83,共2页
正脉冲无线随钻测量仪器是利用泥浆作为传输介质的一种随钻测斜仪。根据仪器的工作原理,采用系统的分析方法,制定切实可行的检查方法,帮助施工人员查找仪器故障,提高工作效率。在无线随钻的使用过程中,泥浆的冲蚀对仪器造成主要磨... 正脉冲无线随钻测量仪器是利用泥浆作为传输介质的一种随钻测斜仪。根据仪器的工作原理,采用系统的分析方法,制定切实可行的检查方法,帮助施工人员查找仪器故障,提高工作效率。在无线随钻的使用过程中,泥浆的冲蚀对仪器造成主要磨损,所以仪器及配件的冲蚀进行评估很有意义,采用评估对于仪器整体状态进行检查,使现场工作人员做到心中有数,适时采取措施。仪器信号波形的初始记录也能够帮助对于仪器进行状态评估。 展开更多
关键词 正脉冲信号判断检查方法泥浆冲蚀程度评估施工过程的检查对比
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基于已有实测数据的深基坑开挖对邻近地铁车站影响的实例简析 被引量:8
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作者 徐良仲 赖小勇 李慧慧 《地基处理》 2021年第3期238-245,共8页
邻近既有地铁车站的基坑,在开挖时会因土体卸荷作用引起地铁车站的变形。本文以杭州地铁6号线旁侧某商业项目基坑工程为例,通过Plaxis 3D有限元软件建立三维模型进行数值模拟,通过施工过程评估来预测基坑后续变形,对深基坑开挖时对邻近... 邻近既有地铁车站的基坑,在开挖时会因土体卸荷作用引起地铁车站的变形。本文以杭州地铁6号线旁侧某商业项目基坑工程为例,通过Plaxis 3D有限元软件建立三维模型进行数值模拟,通过施工过程评估来预测基坑后续变形,对深基坑开挖时对邻近既有地铁车站的影响进行了分析,可供类似工程参考。 展开更多
关键词 深基坑 开挖 地铁车站 施工过程评估
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Wood Preservative Solutions for Creative and Sustainable Bridge Design and Construction
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作者 Ted John LaDoux 《Journal of Civil Engineering and Architecture》 2014年第6期729-737,共9页
Timber bridges can provide an economical alternative to concrete and steel structures, particularly in rural areas where vehicle traffic is light to moderate. The wooden components of bridges have historically been pr... Timber bridges can provide an economical alternative to concrete and steel structures, particularly in rural areas where vehicle traffic is light to moderate. The wooden components of bridges have historically been preserved with either an oil type or waterborne preservative system to protect the wood from decay in order to maintain required performance standards for an extended period of time. The focus of this paper is to describe some of the key preservatives, research and case studies that support use of preserved wood, and some important steps to follow for the appropriate and safe use of preserved wood when the planned application will be in or over aquatic and wetland environments. A wealth of scientific information has been collected and analyzed that clearly suggests the use of preserved wood does not present a significant adverse effect on aquatic and wetland environments. This conclusion is based on two decades of empirical research and case study evaluating the environmental fate and effects of preserved wood, level of migration of contaminates into aquatic and marine environments, and the preserved wood environment. This is particularly true when risks are properly assessed on a project site, the appropriate preservative is selected and the wood is preserved to the Western Wood Preservers Institute's BMPs (best management practices), along with properly installing and maintaining the preserved material. To assist with the assessment process, peer-reviewed risk assessment models for 11 commonly used preservatives have been developed that provide for streamlined data entry by users and allow for evaluation of a structure above and below water. A companion preliminary screening level assessment tool is also available. When these measures are properly utilized engineers, biologists and other responsible officials can be confident that the service life of the preserved wood components will more than likely meet the required performance standards in an environmentally safe manner for up to 50 or more years on a majority of timber bridge projects. 展开更多
关键词 Waterborne wood preservative oil-type wood preservative environmental risk assessment best management practices.
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