CORRELATION BETWEEN SPT AND PMT RESULTS FOR SANDY AND CLAYEY SOILS

Özgür Yıldız
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引用次数: 2

Abstract

Determination of soil deformation and strength properties is of great importance in geotechnical design. The disturbance that occurred during the sampling from the field affects the results obtained by the laboratory tests. Therefore, the lack of representation of the field conditions and in-situ soil features with laboratory tests leads the designers to carry out field tests. Standard penetration test (SPT) and the Menard pressuremeter test (PMT) are the most widely used geotechnical field tests in which the results are utilized to investigate soil properties and lateral deformation characteristics at a specified depth. In this study, a total of 102 data of sandy and clayey soils belonging to the geotechnical investigations carried out in Istanbul were compiled. The regression analysis between the corrected SPT blow count N 60 , pressuremeter modulus E PMT , limit pressure P L and E PMT /P L ratio is performed. Empirical equations were separately developed for sandy and clayey soils between the considered parameters. The developed equations showed that there are acceptable relationships between the parameters examined in the particular dataset. Moreover, a neural network (NN) based prediction model was developed to predict E PMT and P L using the available soil data. The highly accurate prediction performance of the proposed model demonstrated the availability of modern methods for the estimation of soil parameters.
砂质和粘性土SPT与PMT结果的相关性研究
土的变形和强度特性的测定在岩土工程设计中具有重要意义。在野外取样过程中发生的扰动影响了实验室测试的结果。因此,室内试验缺乏对现场条件和现场土壤特征的表征,导致设计人员进行现场试验。标准贯入试验(SPT)和梅纳德压力计试验(PMT)是应用最广泛的岩土工程现场试验,其结果用于研究特定深度下的土壤性质和侧向变形特征。在本研究中,共编制了102份属于伊斯坦布尔岩土工程调查的砂质和粘性土的数据。对修正后的SPT吹气计数n60、压力表模量epmt、极限压力pl和epmt / pl比值进行回归分析。在考虑的参数之间分别建立了砂质土和粘性土的经验方程。开发的方程表明,在特定数据集中检查的参数之间存在可接受的关系。此外,建立了基于神经网络的预测模型,利用现有土壤数据预测土壤的土壤净土壤质量和土壤土壤养分。该模型具有较高的预测精度,证明了现代土壤参数估计方法的有效性。
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