Investigation of Bridge Scour Mitigation with Nature Binding Materials: Biopolymers

Bin Zhang, Kejun Wen, Junjie Li, Farshad Amini
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Abstract

The use of biopolymers to tackle geotechnical problems is an essential step toward the development of sustainable geotechnical systems. The strength and erosion resistance of biopolymer-treated Hot Coffee soil sampled from the bridge site in Jackson, Mississippi were examined in this research. The optimum biopolymer concentration and moisture content were tested for Agar Gum, Xanthan Gum, and Guar Gum treatment of Hot Coffee soil, respectively. The mechanical behavior and erosion resistance of biopolymer-treated soil samples were evaluated through the unconfined compressive strength test, splitting tensile test, triaxial test, and pocket erodometer test. The results indicated that all three biopolymers improved Hot Coffee soil strength, but Guar Gum improved soil unconfined compressive and tensile strength greatly. The addition of 1% Guar Gum can improve the unconfined compression stress (UCS) and split the tensile strength of Hot Coffee soil to roughly 4,000 kPa and 600 kPa, respectively. At the same time, the cohesion of Hot Coffee soil treated with biopolymer was enhanced. The cohesion of the soil treated with 1.5% Xanthan Gum increased from 0 to 41.5 kPa. In addition, the erosion resistance of biopolymer-treated soil was also increased. With a 1.5% Xanthan Gum addition, the erosion resistance level of Hot Coffee soil reduced from very high erodibility to medium erodibility. Therefore, biopolymers have great potential for bridge scour mitigation.
利用自然结合材料减轻桥梁冲刷的研究:生物聚合物
使用生物聚合物解决岩土工程问题是开发可持续岩土工程系统的重要一步。本研究考察了从密西西比州杰克逊市桥址取样的经生物聚合物处理的热咖啡土的强度和抗侵蚀性。分别测试了琼脂胶、黄原胶和瓜尔胶处理热咖啡土壤的最佳生物聚合物浓度和含水量。通过无侧限抗压强度试验、劈裂拉伸试验、三轴试验和袋式侵蚀仪试验,对生物聚合物处理过的土壤样品的机械性能和抗侵蚀性进行了评估。结果表明,三种生物聚合物都能提高热咖啡土壤的强度,但瓜尔胶能大大提高土壤的抗压和抗拉强度。添加 1%的瓜尔胶可以将热咖啡土壤的无侧限压缩应力(UCS)和劈裂抗拉强度分别提高到约 4,000 kPa 和 600 kPa。同时,用生物聚合物处理过的热咖啡土壤的内聚力也得到了增强。用 1.5% 的黄原胶处理的土壤的内聚力从 0 千帕增加到 41.5 千帕。此外,生物聚合物处理过的土壤的抗侵蚀性也得到了提高。添加 1.5% 的黄原胶后,Hot Coffee 土壤的抗侵蚀性从极高侵蚀性降低到中等侵蚀性。因此,生物聚合物在减轻桥梁冲刷方面具有巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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