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相邻基坑土条土压力计算方法探讨 被引量:25
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作者 金亚兵 刘吉波 《岩土力学》 EI CAS CSCD 北大核心 2009年第12期3759-3764,共6页
基坑工程实践中,经常遇到相邻基坑土条土压力如何计算的问题,现行基坑规范尚没有计算方法。通过理论探索和工程实践,对前、后期的基坑支护型式进行了归类和组合,提出了相临基坑宽度的确定原则;提出了建立在库仑土压力理论基础之上的简... 基坑工程实践中,经常遇到相邻基坑土条土压力如何计算的问题,现行基坑规范尚没有计算方法。通过理论探索和工程实践,对前、后期的基坑支护型式进行了归类和组合,提出了相临基坑宽度的确定原则;提出了建立在库仑土压力理论基础之上的简化计算方法——叠加法,推导并给出了非黏性土和黏性土在不同坡率和地面分布有荷载条件下主动土压力系数和土压力的计算公式,并提出了临界宽度的概念和土条土压力折减系数的计算公式。利用所提出的叠加法、临界宽度的概念和土条土压力折减系数的计算公式,可以简捷地计算不同土层、不同坡率和地面荷载条件下的土条土压力合力及土压力强度。工程实践表明,该方法概念清晰、理论依据充分、计算公式简便,以此设计的基坑支护结构安全合理,可供类似基坑支护工程设计参考。 展开更多
关键词 相邻基坑 土条土压力 叠加法 临界宽度 折减系数
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Effective stress in soils under different saturation conditions 被引量:1
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作者 徐浩峰 谢康和 《Journal of Central South University》 SCIE EI CAS 2011年第6期2137-2142,共6页
BISHOP’s effective stress or two state stress variables are unsatisfactory for unsaturated soils where one of fluid phases is discontinuous, so new expressions of effective stress should be founded. The approach for ... BISHOP’s effective stress or two state stress variables are unsatisfactory for unsaturated soils where one of fluid phases is discontinuous, so new expressions of effective stress should be founded. The approach for derivation was according to the principle of equilibrium of forces (i.e., the stress-sharing principle), and it was firstly validated by demonstrating TERZAGHI’s principle of effective stress. And then, the derivations were subdivided into four parts according to different pore air states: 1) air bubbles were spherical and suspended in pore water; 2) air bubbles were bound on soil skeleton; 3) air bubbles held almost the single section of pore; 4) air phase was continuous. The different formulae of effective stress were presented. Conclusions are drawn as follows: 1) For nearly-saturated soils, the "real" effective stress would be a little smaller than TERZAGHI’s effective stress; 2) For soils in which air phase is discontinuous in the form of bubbles, a new concept of pore air elastic pressure is put forward, and the total stress can be constituted by effective stress, pore water pressure and pore air elastic pressure; 3) For soils in which air phase is continuous, effective stress is equal to the value of the total stress plus suction; 4) Suction can be divided into two parts: one is the effect caused by additional pressure, and the other is the contract action by the "skin". 展开更多
关键词 unsaturated soils effective stress SUCTION surface tension occluded gas SATURATION
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