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经微生物诱导碳酸钙沉淀(EICP)和椰壳纤维加固的钙质砂的一维压缩特性

One-dimensional compression behavior of calcareous sand cemented with EICP and coir fiber.

作者信息

Jiang Xueliang, Wang Haodong, Yang Hui, Yin Jun, Shen Bo

机构信息

School of Intelligent Transportation and Engineering, Guangzhou Maritime University, Guangzhou, 510725, China.

School of Civilvil Engineering, Central South University of Forestry and Technology, Changsha, 410004, China.

出版信息

Sci Rep. 2025 Apr 8;15(1):11954. doi: 10.1038/s41598-025-96321-y.

Abstract

Calcarenite sand, as a key geotechnical material in the construction of South China Sea islands and reefs, is limited in its engineering applications due to its significant high compressibility characteristics. This study proposes a treatment method combining Enzyme-Induced Calcium Carbonate Precipitation (EICP) with coir fiber. Through a series of one-dimensional compression tests, the effects of different grouting times (0, 3, 6, 9), coir fiber contents (0%, 0.2%, 0.4%, 0.6%, 0.8%), and relative densities (30%, 60%, 90%) on the compressive characteristics of calcarenite sand were systematically investigated. The research findings indicate that as the number of EICP grouting cycles increases, the reduction in the void ratio of the samples gradually diminishes. Under the same conditions, the addition of coir fiber initially leads to a decrease in the reduction of the void ratio, followed by an increasing trend. The experimental data under various conditions were successfully fitted using the Harris function, elucidating the relationships between the model parameters b and c and the factors of calcium carbonate content, coir fiber content, and initial void ratio. Additionally, the Lasso regularization method was employed, and a polynomial model equation was established using Matlab software based on the method of defining training and testing datasets (with the parameter b as a 4th-order polynomial and the c as a 3rd-order polynomial). Validation demonstrated that the constructed model equations possess high predictive accuracy and generalization capability. This study not only deepens the understanding of the one-dimensional compressive deformation of calcarenite sand under the synergistic effect of coir fiber and EICP technology, but also provides a theoretical basis for the rapid assessment and optimization of the compressive characteristics of calcarenite sand foundations in the construction of South China Sea islands and reefs.

摘要

钙质砂作为中国南海岛礁建设中的关键岩土材料,因其显著的高压缩性特征,在工程应用中受到限制。本研究提出了一种酶促碳酸钙沉淀(EICP)与椰壳纤维相结合的处理方法。通过一系列一维压缩试验,系统研究了不同注浆次数(0、3、6、9)、椰壳纤维含量(0%、0.2%、0.4%、0.6%、0.8%)和相对密实度(30%、60%、90%)对钙质砂压缩特性的影响。研究结果表明,随着EICP注浆循环次数的增加,样品孔隙比的减小逐渐减弱。在相同条件下,添加椰壳纤维最初会导致孔隙比减小量的下降,随后呈上升趋势。利用哈里斯函数成功拟合了各种条件下的试验数据,阐明了模型参数b和c与碳酸钙含量、椰壳纤维含量和初始孔隙比等因素之间的关系。此外,采用了套索正则化方法,并基于定义训练和测试数据集的方法(参数b为4次多项式,c为3次多项式),使用Matlab软件建立了多项式模型方程。验证表明,构建的模型方程具有较高的预测精度和泛化能力。本研究不仅加深了对椰壳纤维与EICP技术协同作用下钙质砂一维压缩变形的理解,也为中国南海岛礁建设中钙质砂地基压缩特性的快速评估和优化提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ac9/11978786/40e056617800/41598_2025_96321_Fig1_HTML.jpg

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