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Analytical and Numerical Investigation of Effectiveness of Ground Modification around Piled-Raft Foundation for Tall Wind Turbine in Weak Soil

机译:高层土壤中风轮机桩筏基础周围地基改良效果的分析和数值研究

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A site with favorable wind condition may not have suitable subsurface condition for building tall wind turbines. In such situation, it may be economical to improve the subsurface properties to gain net economic advantage. In this study, the effectiveness of ground improvement to support an 80 m tall wind turbine on a piled-raft foundation was investigated using analytical and 3D finite element methods. First, analytical designs were conducted to determine the length of the piles for the assumed raft and pile size and number of piles to meet the safety and serviceability requirements. Three different depths of improvements were considered in the design. Then, 3D FE models of the piled-raft foundations and supporting soils were created and analyzed using ABAQUS. In the FE modeling, the lateral distance was varied in addition to the depth of ground improvement. Both methods show that significant economic advantage can be achieved by improving the ground.
机译:具有良好风力条件的网站可能没有适当的建筑物的地下条件来构建高风力涡轮机。在这种情况下,改善地下特性可能是经济的,以获得净经济优势。在这项研究中,使用分析和3D有限元方法研究了地面改善以支撑堆积筏基础80米高风力涡轮机的有效性。首先,进行分析设计以确定假定的筏子和桩尺寸和桩数的桩的长度,以满足安全性和可用性的要求。在设计中考虑了三种不同的改进深度。然后,使用ABAQU来创建和分析堆积筏基础和支撑土壤的3D Fe模型。在Fe造型中,除了地面改善深度之外,横向距离还变化。这两种方法都表明,通过改善地面可以实现显着的经济优势。

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