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Measuring Soil-structure Interaction on Laterally Loaded Piles with Digital Image Correlation

机译:用数字图像相关法测量侧承桩上的土-结构相互作用

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A testing system to investigate soil-structure interaction on laterally loaded piles has been developed at Lafayette College. The two-piece soil box developed for this work allows the direct or indirect loading of single or multiple pile systems. Direct loading is accomplished by attaching hydraulic rams directly to the exposed area of the piles above the soil surface. Indirect loading is accomplished by loading the top section of the two-piece soil box, transferring the load from the ram to the side of the top section of the box and then to the pile through the surrounding soil.The interaction between the piles and the soil is monitored by a variety of sensors that range from common load cells, strain gages and displacement sensors to shape acceleration arrays, sheet pressure sensors and digital image correlation. The shape acceleration array measures the displacement of the pile along its length. Sheet pressure sensors are used to record the pressure distribution of the soil/soil box interaction in front of the directly loaded piles and behind indirectly loaded piles. Digital image correlation is used to measure surface soil movement. By combining the results from the various sensors the interaction of the soil and pile can be better understood.
机译:拉斐特学院已开发出一种测试系统,用于研究侧向荷载桩上的土-结构相互作用。为这项工作开发的两件式土壤箱允许直接或间接加载单个或多个桩系统。直接加载是通过将液压挺杆直接安装在土壤表面上方桩的裸露区域来实现的。间接加载是通过将两件式土壤箱的顶部加载,将负载从夯锤传递到箱顶部的侧面,然后再通过周围的土壤传递到桩上来完成的。土壤受到各种传感器的监视,这些传感器的范围从普通的称重传感器,应变计和位移传感器到形状加速度阵列,薄板压力传感器和数字图像相关性。形状加速阵列测量桩沿桩长的位移。薄板压力传感器用于记录在直接加载的桩的前面和在间接加载的桩的后面的土/土箱相互作用的压力分布。数字图像关联用于测量地表土壤运动。通过组合各种传感器的结果,可以更好地理解土壤和桩的相互作用。

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