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Experimental investigations of backfill conditions on the performance of high-density polyethelene pipes

机译:回填条件对高密度聚乙烯管材性能的实验研究

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摘要

In this study, a series of laboratory tests on 100-mm-diameter high-density polyethylene (HDPE) 100 PE flexible pipe buried in poorly graded Sile quartz sand with different relative densities are described. The laboratory tests were performed in a 40-mm-thick plexiglass fronted test tank that replicated a classical trench section in field conditions. The HDPE flexible pipe was positioned against the glass with its longitudinal axis perpendicular to the glass. This allowed direct observation of the backfill-pipe interactions. Three high-definition photogrammetric cameras were used to capture the photogrammetric images through the glass allowing the discrete measurement and image processing of the deformation patterns of the pipe conduit during the pipe installation and incremental surcharge loading. Vertical loads were applied in increments of 10-150 kPa using air pressure membranes. Electric resistant strain gauges measured the bending moments of the pipe walls under vertical surcharge loadings. For each loading step, the vertical deformation of the pipe crown was also measured using linear position transducers. According to the test results, it is understood that the installation technique and backfill relative density have an important effect on circumferential strains, performance, and deformation characteristics of HDPE pipes. It was also observed that close-range image processing is a very simple and appropriate method for measuring three-dimensional pipe deformations under various conditions.
机译:在这项研究中,描述了一系列的实验室测试,这些测试是将100毫米直径的高密度聚乙烯(HDPE)100 PE挠性管埋在等级低劣的Sile石英砂中,并具有不同的相对密度。实验室测试是在40毫米厚的有机玻璃正面测试槽中进行的,该测试槽在野外条件下复制了经典的沟槽部分。将HDPE挠性管靠在玻璃上,使其纵轴垂直于玻璃。这样可以直接观察回填管的相互作用。使用三台高清摄影测量相机通过玻璃捕获摄影测量图像,从而可以在管道安装和增量附加载荷期间对管道的变形模式进行离散测量和图像处理。使用气压膜以10-150 kPa的增量施加垂直载荷。电阻应变仪测量垂直附加载荷下管壁的弯矩。对于每个加载步骤,还使用线性位置传感器测量管冠的垂直变形。根据测试结果,可以理解,安装技术和回填相对密度对HDPE管的周向应变,性能和变形特性具有重要影响。还观察到近距离图像处理是在各种条件下测量三维管道变形的非常简单且合适的方法。

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