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Sensitivity Analysis of Wind Plant Performance to Key Turbine Design Parameters: A Systems Engineering Approach

机译:风电厂性能对关键涡轮设计参数的敏感性分析:一种系统工程方法

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This paper introduces the development of a new software framework for research, design, and development of wind energy systems which is meant to 1) represent a full wind plant including all physical and nonphysical assets and associated costs up to the point of grid interconnection, 2) allow use of interchangeable models of varying fidelity for different aspects of the system, and 3) support system level multidisciplinary analyses and optimizations. This paper describes the design of the overall software capability and applies it to a global sensitivity analysis of wind turbine and plant performance and cost. The analysis was performed using three different model configurations involving different levels of fidelity, which illustrate how increasing fidelity can preserve important system interactions that build up to overall system performance and cost. Analyses were performed for a reference wind plant based on the National Renewable Energy Laboratory's 5-MW reference turbine at a mid-Atlantic offshore location within the United States. Three software configurations were used: 1) a previously published wind plant cost model using simplified parametric scaling relationships, 2) an integrated set of wind turbine and plant engineering and cost models that use a "bottom-up" approach to determine overall wind plant performance and cost metrics, and 3) the second set of models plus the addition of a plant layout and flow model for calculation of energy production. Global sensitivity analysis was performed on each analysis set with respect to key wind turbine configuration parameters including rotor diameter, rated power, hub height, and maximum tip speed. The analyses show how the latter approaches capture important coupling throughout the wind plant in a way that has not previously been achieved. In addition, while deficiencies even in the newer model set are readily identifiable, the flexibility of the new framework shows how extension and gradual buildup of model fidelity for various parts of the system provide a powerful tool that enables analysis for an ever-expanding set of wind energy research and design problems.
机译:本文介绍了用于风能系统研究,设计和开发的新软件框架的开发,该软件框架旨在:1)代表包括所有物理和非有形资产以及直至电网互连点的相关成本的完整风电厂; 2 )允许针对系统的不同方面使用不同保真度的可互换模型,并且3)支持系统级的多学科分析和优化。本文介绍了整体软件功能的设计,并将其应用于风力涡轮机的全球敏感性分析以及电厂的性能和成本。使用涉及不同保真度级别的三种不同模型配置进行了分析,这些模型说明了保真度的提高如何保持重要的系统交互,从而增强了总体系统性能和成本。在美国中大西洋近海位置,根据国家可再生能源实验室的5兆瓦参考涡轮对参考风力发电厂进行了分析。使用了三种软件配置:1)使用简化的参数比例关系的先前发布的风电厂成本模型,2)使用“自下而上”方法确定整体风电厂性能的风力发电机组和电厂工程和成本模型的集成集合和成本指标,以及3)第二组模型,再加上用于计算能源生产的工厂布局和流量模型。针对每个分析集,针对关键风力涡轮机配置参数(包括转子直径,额定功率,轮毂高度和最大叶尖速度)进行了全局灵敏度分析。分析表明,后一种方法是如何以前所未有的方式捕获整个风力发电厂的重要耦合的。此外,尽管即使是较新的模型集中的缺陷也可以很容易地发现,但新框架的灵活性显示了系统各个部分的模型保真度的扩展和逐步建立如何提供了强大的工具,可以对不断扩展的模型集进行分析。风能研究和设计问题。

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