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Uncertainty In A Geophysical Survey For A Bridge Foundation Design

机译:桥梁基础设计地球物理测量的不确定性

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In the preparation stage of a bridge replacement located in Boise Idaho, the Idaho Transportation Department (ITD) commissioned a geophysical survey to address uncertainties in the soil profile across the river. Differing site conditions can impact the final design and cost of a project. To address the geologic uncertainties under the planned bridge replacement, the refraction method was selected. Selection of a geophysical method bears its own risk. Refractions are used to map the top of the competent geologic formation below those soils incapable of supporting the structure. The refraction method requires that P-wave velocity increase at the boundary to be mapped. That requirement was not met in this project. Unexpected pore pressures in the formation to be mapped reduced the P-wave velocity by 30%, causing the plan to fail. Fortunately, surface wave analysis provided an viable alternative to work with the data, but with less depth of penetration due to the lack of low frequency content in the air gun source.
机译:在位于爱达荷州博伊西市的一座桥梁更换的准备阶段,爱达荷州运输部(ITD)委托进行了一项地球物理勘测,以解决整个河流土壤剖面的不确定性。不同的现场条件可能会影响项目的最终设计和成本。为了解决计划中的桥梁更换下的地质不确定性,选择了折射方法。选择地球物理方法有其自身的风险。折射用于在无法支撑结构的土壤下方绘制主管地质构造的顶部图。折射方法要求在被测边界处P波速度增加。该项目未满足该要求。要映射的地层中意外的孔隙压力使P波速度降低了30%,从而导致计划失败。幸运的是,表面波分析提供了一种可行的替代方法来处理数据,但由于气枪源中缺乏低频成分,因此穿透深度较小。

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