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考虑预压压力的理化复合法处理流泥的强度发展模型OA

Strength development model for slurry-like mud treated by physicochemical combined method considering preloading stress

中文摘要英文摘要

采用融合了絮凝-固化-真空预压的理化复合法处理流泥能够实现流泥的高效资源化利用,但既有研究对该方法处理流泥的强度发展模型的认知尚不充分.本研究开展了系统的无侧限抗压强度试验,旨在剖析养护龄期、预压压力、等效初始含水率、固化剂掺量对理化复合法改性流泥早中期强度特性的影响机制.试验结果表明:改性流泥强度随养护龄期呈现前期快速增长、后期增速逐渐趋缓的增长规律;随预压压力的增大,改性流泥强度近似呈线性增长;固化剂掺量增加能显著提高改性流泥强度;等效初始含水率的增加则会降低改性流泥强度.通过对试验数据的挖掘与拟合分析,本研究创新性地构建了一种双曲线形式的强度发展模型,该模型全面涵盖了养护龄期、预压压力、等效初始含水率、固化剂掺量等关键参数,可为工程实践提供理论基础.

The integrated physicochemical approach,which combines flocculation,solidification,and vacuum preloading,presents an efficient strategy for the resource utilization of slurry-like mud.To address the limited understanding of the development of unconfined compressive strength(UCS)in treated slurry-like mud,this study systematically conducted unconfmed compressive strength tests.The investigation primarily focused on examining the influence of curing age,preloading stress,equivalent initial water content,and binder dosage on the strength characteristics during the early to medium stages.The test results unveiled distinct relationships:UCS exhibits rapid growth during the initial curing stages,followed by a gradual deceleration in the growth rate.Elevated preloading stress induces a nearly linear increase in strength,whereas an increased binder dosage significantly enhances UCS.Conversely,a higher equivalent initial water content diminishes the strength.Based on a rigorous analysis and fitting of the experimental data,this research developed a novel hyperbolic strength development model.This model uniquely incorporates the effects of curing age,preloading stress,equivalent initial water content,and binder dosage as key governing parameters.The comprehensive model offers a valuable theoretical framework for predicting the strength behavior of modified fluid mud treated by this physicochemical composite method in practical engineering applications.

白欣悦;郑俊杰;章荣军;刘斯杰

武汉大学土木建筑工程学院,湖北武汉 430072武汉大学土木建筑工程学院,湖北武汉 430072武汉大学土木建筑工程学院,湖北武汉 430072||武汉大学水资源工程与调度全国重点实验室,湖北武汉 430072||武汉大学水工岩石力学教育部重点实验室,湖北武汉 430072武汉大学土木建筑工程学院,湖北武汉 430072

建筑与水利

流泥理化复合法絮凝固化预压压力强度发展模型

slurry-like mudphysicochemical combined methodflocculationsolidificationpreloading stressstrength development model

《岩土力学》 2026 (6)

1952-1960,1972,10

国家自然科学基金(No.52338007,No.52208367)湖北省重点研发计划项目(No.2022BAA068).This work was supported by the National Natural Science Foundation of China(52338007,52208367)and the Key Research and Development Program in Hubei Province of China(2022BAA068).

10.16285/j.rsm.2025.0567

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