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DESIGN OF PIER FOUNDATIONS ON EXPANSIVE SOILS

机译:膨胀土码头基础设计

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For sites with high expansion potential the most reliable foundation system is the pier and grade beam foundation. The design of the piers requires careful characterization of the soil profile and appropriate computation of the required pier length. This, in turn, requires prediction of the free-field heave of the foundation soil and/or bedrock. Current design procedure generally considers the maximum ultimate predicted heave that will occur at a site. This is appropriate for sites with low to moderate expansion potential. However, for sites with high to very high expansion potential, it may be impractical to design for the ultimate heave. Therefore, design of foundations for buildings on expansive soils must consider the migration of the wetting front and the associated heave that will occur during the design life of the structure. This paper presents the procedure for predicting free-field heave and heave of straight shaft, belled, and helical piers within the design life of the structure. The effect of overexcavating and replacing the upper few meters of expansive soil in combination with installing piers is discussed. The results of the calculations indicate that the required pier length can be reduced significantly if the rate of heave within the design life of the structure is considered.
机译:对于具有高膨胀势的地点,最可靠的基础系统是码头和级梁基础。码头的设计需要仔细表征土壤轮廓和适当计算所需的码头长度。反过来,这需要预测基础土壤和/或基岩的自由场升降。当前的设计过程通常考虑将在站点发生的最大终极预测升降升降升降。这适用于低于中等扩展潜力的网站。然而,对于具有高于膨胀潜力的网站,对于最终的升降,设计可能是不切实际的。因此,膨胀土的建筑基础的设计必须考虑润湿前部的迁移和在结构的设计寿命期间发生的相关升降。本文介绍了在结构的设计寿命中预测自由场的升降和升降轴的升降轴的过程。讨论了过度扫描和更换膨胀土占膨胀土的效果与安装码头的结合。计算结果表明,如果考虑了结构的设计寿命的升降速率,则可以显着降低所需的码码长度。

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