荷载类型对粘土中桩筏基础行为影响的数值研究

IF 1.7 4区 工程技术 Q3 ENGINEERING, CIVIL
Rajib Modak, Baleshwar Singh
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引用次数: 0

摘要

我们研究了荷载类型对刚性粘土中带有中间柔性筏板的大型桩筏地基(PRF)行为的影响。为此,我们对不同桩基结构的桩式筏基进行了三维数值分析,使其承受均匀分布荷载 (UDL) 或等效点荷载 (PL)。对平均沉降和差异沉降、筏板弯矩和桩轴向荷载分布进行了评估和详细讨论。结果表明,对于覆盖筏面最大面积的桩,等效点荷载情况下的平均沉降总是略高于等效点荷载情况下的平均沉降,而差异沉降则要大得多。PL 情况下的筏板弯矩总是明显高于 UDL 情况下的筏板弯矩。对于 UDL,桩轴向荷载分布主要受桩位的影响,而对于 PL,除桩位外,主要受柱点荷载位置的影响。基于加载强度和使用限制的考虑,确定了柱点荷载下 PRF 的最佳桩配置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Numerical Study on the Influence of Load Type on the Behavior of Piled Raft Foundation in Clay Soil

Numerical Study on the Influence of Load Type on the Behavior of Piled Raft Foundation in Clay Soil

The effect of the load type on the behavior of a large piled raft foundation (PRF) with an intermediate flexible raft in stiff clay soil has been investigated. For this purpose, three-dimensional numerical analyses have been carried out for the piled raft with varying pile configurations subjected to either uniformly distributed load (UDL) or equivalent point loads (PL). The average and differential settlements, raft bending moment, and pile axial load distribution are evaluated and discussed in detail. Results show that for piles covering the maximum area of the raft, the average settlement for the PL case is always marginally higher compared to the UDL case, whereas the differential settlement is substantially greater. The raft bending moments for PL are always significantly higher than for UDL. For UDL, the pile axial load distribution is predominantly affected by the pile positions, and for the PL, it is mainly affected by the column point load locations in addition to pile positions. Based on the loading intensity and serviceability limit considerations, the optimum pile configuration has been determined for the PRF under column point loads.

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来源期刊
CiteScore
3.30
自引率
11.80%
发文量
203
期刊介绍: The aim of the Iranian Journal of Science and Technology is to foster the growth of scientific research among Iranian engineers and scientists and to provide a medium by means of which the fruits of these researches may be brought to the attention of the world’s civil Engineering communities. This transaction focuses on all aspects of Civil Engineering and will accept the original research contributions (previously unpublished) from all areas of established engineering disciplines. The papers may be theoretical, experimental or both. The journal publishes original papers within the broad field of civil engineering which include, but are not limited to, the following: -Structural engineering- Earthquake engineering- Concrete engineering- Construction management- Steel structures- Engineering mechanics- Water resources engineering- Hydraulic engineering- Hydraulic structures- Environmental engineering- Soil mechanics- Foundation engineering- Geotechnical engineering- Transportation engineering- Surveying and geomatics.
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