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Features of Calculation Schemes and Methods for Design of Wind Turbine Foundations for Arctic Conditions

机译:北极地区风力发电机基础设计计算方案和方法的特点

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摘要

Currently, the issue of energy saving of isolated power consumers, supplied by the systems, based on renewable energy sources and hybrid systems, is relevant. A significant part of this consumer category is located in the Arctic regions, with permafrost grounds. The problem of wind power plant construction in such conditions is connected with the foundation design on the permafrost soils. There is a significant native experience in civil and industrial design and construction, which is reflected in the corresponding regulations. However, a wind power plant with a permafrost foundation differs from permafrost-based civil and industrial buildings in terms of mechanical loading and composition efforts. The construction of the wind power plant with a permafrost foundation has a number of peculiarities, associated with the specific loads, transferred from the installation on the basis of: presence of a complex dynamic and fluctuating loads on the rotation of the wind turbine and the nacelle and wind gusts; rotation coordinates efforts related to the orientation of the nacelle to the wind; availability of temporary loads of wind turbine icing on the construction. This paper is dedicated to the accounting of this specificity for the design of the foundation loads for the wind power plant on permafrost, as well as the justification of the selected solution.
机译:当前,由系统提供的基于可再生能源和混合动力系统的孤立电力消费者的节能问题是相关的。这类消费者的很大一部分位于北极地区,其永久冻土层。在这种情况下,风力发电厂的建设问题与多年冻土的基础设计有关。在土木和工业设计和施工方面有丰富的本地经验,这反映在相应的法规中。但是,具有永久冻土基础的风力发电厂与基于永久冻土的民用和工业建筑在机械负载和组合工作方面有所不同。具有永久冻土基础的风力发电厂的构造具有许多与特定负载相关的特性,这些特性是根据以下条件从安装中转移的:风力涡轮机和机舱的旋转存在复杂的动态和波动负载和阵风;旋转协调与机舱朝向风的方向有关的作用;风力涡轮机在结构上的暂时性载荷是否可用。本文致力于考虑永冻土上风力发电厂的基础荷载设计的这种特殊性,以及所选解决方案的合理性。

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