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砂井地基主、次固结度粘弹性分析 被引量:8
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作者 张迎春 刘吉福 魏金霞 《水运工程》 北大核心 2003年第8期20-24,共5页
通过土体微观结构图片分析了次固结产生的客观原因,指出次固结也是排水固结。以四单元模型为基础,通过Laplace变换推导出砂井地基主固结度和次固结度粘弹性解。提出了2种新的求取粘弹性参数、确定主固结完成时间的方法。
关键词 固结 次固结度 粘弹性参数
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Primary and secondary consolidation compression for saturated soil considering coupling effect of loading and heating 被引量:2
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作者 DENG Yue-bao MAO Wei-yun +1 位作者 KONG Gang-qiang HAN Yi-dong 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第8期2514-2526,共13页
Geotechnical engineering that relates to the energy and environmental problem is receiving more and more attention worldwide.It is of great theoretical and practical value to study the properties of soil under thermal... Geotechnical engineering that relates to the energy and environmental problem is receiving more and more attention worldwide.It is of great theoretical and practical value to study the properties of soil under thermal mechanical coupling and its mathematical description.Firstly,based on the general function,a unified primary and secondary consolidation model of saturated soil considering heating temperature is deduced.Combining the existing research achievements,a practical model is obtained which comprehensively reflects the effective stress change,creep and heating effects.After that,a series of thermo-consolidation tests are carried out using a temperature controlled consolidation instrument to study the effects of effective stress,temperature and consolidation duration on saturated soils.The corresponding functional formulas and parameters are obtained thusly.On this basis,the calculation and analysis are carried out to check the reliability and applicability of the newly proposed model.The new model is simple and practical and the parameters are easy to be obtained.And it describes the main law of consolidation compression of saturated soils under the thermal mechanical coupling effect.Therefore,it is suggested for theoretical analysis of thermal geotechnical engineering problems. 展开更多
关键词 soft soil primary consolidation secondary consolidation temperature effect consolidation compression test
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