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Innovative Application of Tire-Derived Aggregate around Corrugated Steel Plate Culverts

机译:瓦楞钢板涵洞周围轮胎衍生骨料的创新应用

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In this paper, a new application of tire-derived aggregate (TDA) backfill around corrugated steel plate (CSP) pipe culverts is proposed and its feasibility is explored experimentally and numerically. Pressure distribution around buried structures depends on the relative stiffness of the structure and the surrounding backfill material. Accordingly, earth pressure around buried culverts can be reduced by installing a layer of compressible material such as TDA above the culverts, developing a positive arching mechanism, causing the earth pressure above the culverts to be less than the theoretical value of the weight of the soil prism above them. Four full-scale tests were conducted to evaluate the effectiveness of using a layer of TDA material in different backfill envelope configurations around 600-mm CSP culverts. In addition, three-dimensional (3D) finite-element models of the tests were developed and verified against the experimental results to study the interaction mechanisms in the considered problem. An intensive parametric study was also conducted to examine the effect of the TDA backfill envelope configuration around the culvert, the influence of the stiffness of the top granular backfill, the performance of the proposed system beneath rigid pavement, the effect of the culvert burial depth, and the performance of the proposed system under embankment loads. The results show that the proposed system can be effectively used to decrease culvert stresses and deformations. (c) 2020 American Society of Civil Engineers.
机译:在本文中,提出了一种新的轮胎衍生的聚集体(TDA)回填件周围的瓦楞钢板(CSP)管涵洞,并在实验上探索其可行性。掩埋结构周围的压力分布取决于结构的相对刚度和周围的回填材料。因此,通过安装一层可压缩材料(例如TDA上方),可以通过安装诸如TDA的诸如TDA之上的焊接机构来减少掩埋涵洞的地球压力,显影阳性拱形机构,导致抑郁症上方的地球压力小于土壤重量的理论值棱镜上方。进行了四种全规模测试以评估在不同回填包络配置中使用一层TDA材料的有效性,包括约600mm CSP涵洞。此外,对测试的三维(3D)有限元模型进行了开发并验证了实验结果,以研究所考虑的问题中的相互作用机制。还进行了一项强化参数研究,以检查TDA回填包络配置围绕涵洞,顶层粒状回填的刚度的影响,所提出的刚性路面下方的性能,涵洞墓深的效果,和堤防负荷下提出的系统的表现。结果表明,所提出的系统可以有效地用于降低涵洞应力和变形。 (c)2020年美国土木工程师协会。

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