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Investigation of Biopolymer Treatment Feasibility to Mitigate Surface Erosion Using a Hydraulic Flume Apparatus

机译:使用液压水槽设备研究生物聚合物处理减轻表面侵蚀的可行性

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Microbial biopolymers have recently been widely studied as a new class of environmentally friendly materials that can be used to enhance the strength of geotechnical engineering structures but also to reduce the use of cement. This study aims to investigate the feasibility of using microbial biopolymers to reduce water-induced erosion of cohesionless soils. Water erosion was simulated by inducing overtopping hydraulic flow on small-scale levee models under different surface treatment conditions using a laboratory hydraulic flume apparatus. The results show that a microbial biopolymer has significant potential to improve surface erosion resistance of sand due to their interparticle bonding and infiltration control characteristics. Thus, a microbial biopolymer can be beneficial in reducing surface erosion of waterfront earthen structures such as dams, levees, and dikes.
机译:微生物生物聚合物作为一种新型的环保材料,最近得到了广泛的研究,可用于增强岩土工程结构的强度,同时也可减少水泥的使用。这项研究旨在探讨使用微生物生物聚合物减少水诱导的无粘性土壤侵蚀的可行性。通过使用实验室液压水槽设备,在不同的表面处理条件下,在小规模堤坝模型上诱导水流过高来模拟水蚀。结果表明,微生物生物聚合物由于其颗粒间键合和渗透控制特性,具有显着提高砂子表面抗侵蚀性的潜力。因此,微生物生物聚合物可以减少水土结构,例如大坝,堤坝和堤防的表面侵蚀。

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