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Wind turbine testing methods and application of hybrid testing: A review

机译:杂交检测的风力涡轮机试验方法和应用:综述

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This paper presents an overview of wind turbine research techniques including the recent application of hybrid testing. Wind turbines are complex structures as they are large, slender, and dynamic with many different operational states, which limits applicable research techniques. Traditionally, numerical simulation is widely used to study turbines while experimental tests are rarer and often face cost and equipment restrictions. Hybrid testing is a relatively new simulation method that combines numerical and experimental techniques to accurately capture unknown or complex behaviour by modelling portions of the structure experimentally while numerically simulating the remainder. This can allow for increased detail, scope, and feasibility in wind turbine tests. Hybrid testing appears to be an effective tool for future wind turbine research, and the few studies that have applied it have shown promising results. This paper presents a literature review of experimental and numerical wind turbine testing, hybrid testing in structural engineering, and hybrid testing of wind turbines. Finally, several applications of hybrid testing for future wind turbine studies are proposed including multi-hazard loading, damped turbines, and turbine failure.
机译:本文概述了风力涡轮机研究技术,包括最近应用混合测测试。风力涡轮机是复杂的结构,因为它们具有很大的,细长和动态,具有许多不同的运营状态,这限制了适用的研究技术。传统上,数值模拟广泛用于研究涡轮机,而实验测试是稀有的,并且通常面临成本和设备限制。混合测测试是一种相对较新的仿真方法,可以通过在数值模拟其余部分的同时通过实验建模结构来精确地捕获未知或复杂行为的数值和实验技术。这可以允许在风力涡轮机测试中提高细节,范围和可行性。混合测测试似乎是未来风力涡轮机研究的有效工具,而且少数应用的研究表明了有希望的结果。本文介绍了实验和数值风力涡轮机试验,结构工程混合检测的文献综述,风力涡轮机的混合测测试。最后,提出了几种混合动力测试对未来风力涡轮机研究的应用,包括多危险加载,阻尼涡轮机和涡轮机失败。

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