首页> 外文会议>International Conference on Computational Methods and Experimental Measurements >MODIFIED SOIL TESTS FOR SCOUR ANALYSIS ON OFFSHORE WINDFARM FOUNDATIONS
【24h】

MODIFIED SOIL TESTS FOR SCOUR ANALYSIS ON OFFSHORE WINDFARM FOUNDATIONS

机译:海上风野基础修饰土壤试验

获取原文

摘要

The analysis of the scour processes following the pile driving procedures in offshore wind platforms is one of the major problems associated with this new form of clean energy generation. At present there are no scaled studies carried out analyzing the mechanical and deformational behavior of both the material of which the pile supporting the engine and the wind shovels is made (large steel hollow piles with a diameter of 8 m and a thickness of 15-20 cm) as well as the soil where the pile is driven. Usually these elements are installed on a very low granulometry sand displaced from the limits of dry beach-wet beach towards the offshore limits and where, due to this, it cannot return back to its natural state in its previous location. In addition, the few scaled studies carried out on dry soil similar to the existing one in the area of installation of the turbines has not considered a fundamental aspect such as the presence of seawater. This paper presents results obtained from tests to analyze the behavior of the base material on which the turbines are installed (degraded sands). These tests are the direct shear testing and a modification of the California bearing ratio (CBR) test to be carried out on completely submerged samples. The objective is to compare the results with those obtained in standard tests and analyze their suitability for field studies in offshore windfarms.
机译:海上风平台桩驾驶程序后的冲刷过程的分析是与这种新形式的清洁能源相关的主要问题之一。目前,没有进行缩放的研究,分析了两种材料的机械和变形行为,其两种材料的支撑发动机和风铲的桩(直径为8米的大型钢中空堆,厚度为15-20 CM)以及桩被驱动的土壤。通常这些元素安装在非常低的颗粒状砂上,从干燥的海滩湿海滩的极限朝向海上限制,因此,由于此,它不能在其先前的位置返回其自然状态。此外,在涡轮机安装领域的干旱地区进行的少数缩放研究并未被认为是诸如海水存在的基本方面。本文介绍了从测试中获得的结果,以分析涡轮机安装的基材的行为(降级的砂岩)。这些测试是直接剪切测试和加州轴承比(CBR)测试的修饰,以在完全浸没样的样品上进行。目的是将结果与标准测试中获得的结果进行比较,并分析其在海上风群的实地研究的适用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号