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基于标贯试验的覆盖层深埋砂土相对密度确定方法

Determining the relative density of deep sand in overburden layer based on standard penetration test
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摘要 覆盖层砂土取样易受扰动,难以确定其原位相对密度,因此需要开发一种操作简便、适于推广的原位砂土相对密度确定方法。基于标准贯入锤击数、上覆有效应力与土体相对密度间存在的相关关系,提出一种基于现场标贯试验成果确定覆盖层深埋砂土相对密度的思路。结果表明,应用该方法计算覆盖层深埋砂土相对密度的结果稳定且符合对于类似砂层密度特性的基本认识,在难以直接获取砂土原位相对密度时是可行的代替方法。 The relative density of sand characterizes its compactness in the soil layer and is an important indicator of its physical property.It has a significant impact on its mechanical properties and is a basic control condition for conducting mechanical property tests.Due to the unstable particle structure of the deep sand layer,the interference of conventional sampling methods may cause significant changes in macroscopic properties (including relative density) of sand.Meanwhile,special sampling methods,such as frozen sampling,are complex to operate and costly.For general engineering projects,the undisturbed sampling of deep-buried sand is difficult in practice.Therefore,a simple,efficient,and reasonable method for determining the relative density of deep-buried sand is a necessity.Internationally,the standard penetration test is a commonly used field test,and its test results can directly or indirectly represent various mechanical properties of the soil.It has been demonstrated that there is a correlation between the standard penetration blow count and the relative density of sand under certain overburden stress conditions.Based on relevant research results internationally,standard penetration test results of 5 typical sand were summarized by Skempton,and the correlation among standard penetration test blow count,relative density and effective overburden stress was formulated as N/D_(t)^(2)=a+bσ^(v)′/100kPa.Based on the recommended standard penetration test energy transfer rate (60%) proposed by Seed et al.,the standard penetration test blow count N was standardized as standard penetration test blow count with the same energy transfer rate N60 by Skempton.Therefore,the above formula was standardized as N_(60)/D_(t)^(2)=a+bσ^(v)′/100kPa.Based on these relationships,a relative density estimate formula D_(t)√N_(60)/D_(t)^(2)=a+bσ^(v)′/100kPa and the corresponding method for deep-buried sand in the overburden layer based on the results of standard penetration tests were established.Based on the moisture content and gradation of 5 typical sand summarized by Skempton,a sand relationship selection method was proposed for selecting the characteristic parameters of the empirical relationship between relative density,standard penetration blow count,and effective overburden stress.The effectiveness and stability of the established method for estimating the relative density of sand were demonstrated by the analysis of various engineering examples.A method was suggested to replace uncertain overburden sand density with estimated sand density,and the influence of this method on the results was analyzed through an example calculation.The analysis results indicate that replacing uncertain overburden sand density with this method has little impact on calculation results.It is recommended that an iterative calculation method may be used when high accuracy is required.Additionally,indoor tests should be conducted simulating field calibrations on the analyzed sand for projects with strict safety and accuracy requirements.
作者 王绍崑 杨正权 刘小生 温彦锋 朱凯斌 赵艺颖 赵剑明 WANG Shaokun;YANG Zhengquan;LIU Xiaosheng;WEN Yanfeng;ZHU Kaibin;ZHAO Yiying;ZHAO Jianming(State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin,Beijing 100871,China;China Institute of Water Resources and Hydropower Research,Beijing 100871,China)
出处 《南水北调与水利科技(中英文)》 北大核心 2025年第1期195-200,共6页 South-to-North Water Transfers and Water Science & Technology
基金 国家重点研发计划项目(2024YFF1700504,2024YFF1700505) 中国水科院基本科研业务费专项项目(GE0145B052021) 中国水科院科技成果转化基金专项项目(GE121003A0032022,GE121003A0032024) 流域水循环模拟与调控国家重点实验室自主研究课题(SKL2022ZD05)。
关键词 覆盖层深埋砂土 相对密度 标准贯入试验 上覆应力 经验关系 deep-buried sand in the cover layer relative density standard penetration test overburden stress empirical relationship
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