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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Predicting long term performance of offshore wind turbines using cyclic simple shear apparatus
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Predicting long term performance of offshore wind turbines using cyclic simple shear apparatus

机译:使用循环简单剪切仪预测海上风力发电机的长期性能

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摘要

Offshore wind turbine (OWT) foundations are subjected to a combination of cyclic and dynamic loading arising from wind, wave, 1P (rotor frequency) and 2P/3P (blade passing frequency) loads. Under cyclic/dynamic loading, most soils change their characteristics. Cyclic behaviour (in terms of change of shear modulus change and accumulation of strain) of a typical silica sand (RedHill 110) was investigated by a series of cyclic simple shear tests. The effects of application of 50000 cycles of shear loading having different shear strain amplitude, cyclic stress ratio (ratio of shear to vertical stress), and vertical stress were investigated. Test results were reported in terms of change in shear modulus against the number of loading cycles. The results correlated quite well with the observations from scaled model tests of different types of offshore wind turbine foundations and limited field observations. Specifically, the test results showed that; (a) Vertical and permanent strain (accumulated strain) is proportional to shear strain amplitude but inversely proportional to the vertical stress and relative density; (b) Shear modulus increases rapidly in the initial cycles of loading and then the rate of increase diminishes and the shear modulus remains below an asymptote. Discussion is carried out on the use of these results for long term performance prediction of OWT foundations.
机译:海上风力涡轮机(OWT)基础承受的是风,波浪,1P(转子频率)和2P / 3P(叶片通过频率)载荷引起的循环和动态载荷的组合。在循环/动态载荷下,大多数土壤都会改变其特性。通过一系列循环简单剪切试验,研究了典型硅砂(RedHill 110)的循环行为(根据剪切模量变化和应变累积变化)。研究了施加不同剪切应变幅度,循环应力比(剪切应力与垂直应力之比)和垂直应力的50000个剪切载荷循环的影响。根据剪切模量相对于加载循环次数的变化报告了测试结果。结果与来自不同类型的海上风力发电机基础的比例模型测试的观察结果和有限的现场观察结果非常相关。具体而言,测试结果表明: (a)垂直和永久应变(累积应变)与剪切应变幅度成正比,但与垂直应力和相对密度成反比; (b)剪切模量在载荷的初始循环中迅速增加,然后增加速率减小,并且剪切模量保持在渐近线以下。讨论了如何将这些结果用于OWT基础的长期性能预测。

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