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Durability Studies on Native Soil-Based Controlled Low Strength Materials

机译:天然土壤控制低强度材料的耐久性研究

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摘要

The Integrated Pipeline Project (IPL) is a collaborative effort between the Tarrant Regional Water District (TRWD) and Dallas Water Utilities (DWU), which bring additional water supplies to the Dallas / Fort Worth area. As part of a sustainability initiative, several studies were conducted to assess the reuse potential of excavated materials along the IPL project. One of these studies involved using the excavated material as an ingredient in Controlled Low Strength Material, often known as CLSM or flowable fill. This flowable fill can be used as bedding and haunch material in pipeline construction. These CLSMs meet the specifications in the short-term; however their long-term performance should be verified in order to be successfully used in the field, especially when these materials are subjected to seasonal changes such as wetting and drying. Hence, durability studies were conducted on CLSMs from two different geologic formations, namely Eagle Ford and Queen City formations. The variations in retained strength and volumetric strain changes, along with the amount of stabilizer leached out of the CLSM samples at different durability cycles, are presented in this paper. It was observed that Eagle Ford soil CLSM lost more than 50% of its initial strength while Queen City sand CLSM lost approximately 50% of its initial strength when subjected to durability studies. The loss in strength was attributed to both volume change and stabilizer loss in case of Eagle Ford soil while stabilizer loss alone caused the loss of strength in the case of Queen City sand.
机译:综合管道项目(IPL)是塔兰特地区水区(TRWD)和达拉斯水务公司(DWU)之间的一项共同努力,为达拉斯/沃思堡地区带来了更多的供水。作为可持续发展计划的一部分,开展了几项研究,以评估IPL项目中挖掘出的材料的再利用潜力。这些研究之一涉及将挖掘的材料用作受控低强度材料(通常称为CLSM或可流动填充物)中的成分。这种可流动的填充物可以用作管道施工中的垫层和起料材料。这些CLSM短期内符合规范。但是,应验证它们的长期性能,以便在现场成功使用,尤其是当这些材料经受诸如湿润和干燥之类的季节性变化时。因此,对来自两种不同地质构造,即Eagle Ford和Queen City构造的CLSM进行了耐久性研究。本文介绍了保持强度和体积应变变化的变化,以及在不同的耐久性循环下从CLSM样品中沥出的稳定剂的量。观察到,经耐久性研究后,Eagle Ford土壤CLSM损失了其初始强度的50%以上,而Queen City沙子CLSM损失了其初始强度的50%左右。强度的损失归因于鹰福特土壤的体积变化和稳定剂的损失,而单独的稳定剂的损失则归因于皇后城沙的强度的损失。

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