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The inception of OMA in the development of modal testing technology for wind turbines

机译:OMA在风力涡轮机模态测试技术开发中的成立

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Wind turbines are immense, flexible structures with aerodynamic forces acting on the rotating blades at harmonics of the turbine rotational frequency. These harmonics are comparable to the modal frequencies of the structure. Predicting and experimentally measuring the modal frequencies of wind turbines have been important to their successful design and operation. Performing modal tests on wind turbine structures over 100 m tall is a substantial challenge, which has inspired innovative developments in modal test technology. For wind turbines, a further complication is that the modal frequencies are dependent on the turbine rotation speed. The history and development of a new technique for acquiring the modal parameters using output-only response data, called the Natural Excitation Technique (NExT), will be reviewed, showing historical tests and techniques. The initial attempts at output-only modal testing began in the late 1980s with the development of NExT in the 1990s. NExT was a predecessor to Operational Modal Analysis (OMA), developed to overcome these challenges of testing immense structures excited with natural environmental inputs. We will trace the difficulties and successes of wind turbine modal testing from 1982 to the present.
机译:风力涡轮机是巨大的柔性结构,其气动力以涡轮机旋转频率的谐波作用在旋转叶片上。这些谐波与结构的模态频率相当。预测和实验测量风力涡轮机的模态频率对于其成功的设计和运行非常重要。在高度超过100 m的风力涡轮机结构上执行模态测试是一项重大挑战,这激发了模态测试技术的创新发展。对于风力涡轮机,进一步的复杂之处在于模态频率取决于涡轮机转速。将回顾一种称为自然激发技术(NExT)的仅使用输出响应数据来获取模态参数的新技术的历史和发展,并展示其历史测试和技术。在1980年代后期,随着1990年代NExT的发展,开始了仅输出模态测试的最初尝试。 NExT是操作模态分析(OMA)的前身,旨在克服测试因自然环境输入而激发的巨大结构的挑战。我们将追溯1982年至今风力涡轮机模态测试的困难和成功。

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