首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Experimental and Numerical Study of Bearing Capacity and Effect of Specimen Size on Uniform Sand with Medium Density, Reinforced with Nonwoven Geotextile
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Experimental and Numerical Study of Bearing Capacity and Effect of Specimen Size on Uniform Sand with Medium Density, Reinforced with Nonwoven Geotextile

机译:具有中密度均匀砂对均匀砂轴承能力的实验和数值研究,用非织造土工织物加固

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摘要

Reinforced soil is a composite material in which elements of high tensile resistance are implemented to increase the tensile resistance of the soil. Geotextiles are one of the major groups of geosynthetic products that are used for soil reinforcement. This paper deals with the effects of using nonwoven geotextile to improve the ultimate bearing capacity of footings resting on sand with medium density. The plate load tests were performed using 27cm × 27cm and 35cm×35cm square plates, and the effects of the depth of the first layer of geotextile, vertical spacing as well as the number of geotextile layers on the ultimate bearing capacity of the footings were studied. Moreover, the impact of plate size and sample size was examined numerically by perform- ing 3-D finite element analyses with different sizes of the square plate. The experimental results showed that the max- imum bearing capacity is achieved for the system with four geotextilelayers,verticalspacingof0.3Bbetweengeotextile layers and geotextile widthof 4B,whereBisthewidth ofthe plate. The numerical analyses indicated that with increasing the size of the plate up to 65cm, the values of the bearing capacityratio(BCR)graduallydecrease;however,additional increase in the size of the plate has a little impact on BCR values.
机译:增强土是一种复合材料,其中实施了高拉伸性的元素以增加土壤的拉伸抗性。土工织物是用于土壤加固的主要产物组之一。本文涉及使用非织造土工织物来提高含有中密度搁置砂岩终极承载力的影响。使用27cm×27cm和35cm×35cm方形板进行板载测试,并研究了第一层土工织物,垂直间距以及土工织物层数上的基地轴承容量的深度的影响。此外,通过用方形板的不同尺寸进行三维有限元分析来数量地检查板尺寸和样品尺寸的影响。实验结果表明,具有四个土工折磨器的系统,垂直件0.3bbetweengege涂层层和土工织物宽度的系统实现了最大承载力。数值分析表明,随着板的尺寸增加至65厘米,轴承率(BCR)的值逐渐易碎;然而,板的尺寸的额外增加对BCR值有点影响。

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