Creating a dynamometer for experimental validation of power take-off forces on a wave energy converter

A. Simmons, T. Brekken, P. Lomónaco, C. Michelen
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Abstract

Simulation tools are designed to represent subsets of the real world. To be effective, these tools must be experimentally validated with real world measurements. Sandia National Laboratories (SNL) and the National Renewable Energy Laboratory (NREL) have been tasked by the U.S. Department of Energy (USDOE) with the creation of a time-domain equation-of-motion simulator for the evaluation of wave energy converters, called WEC-Sim. A project for the experimental validation of WEC-Sim features has resulted in the development of custom instrumentation designed to characterize the forces affecting the power take-off (PTO) of the model wave energy converter (WEC). This paper describes the development of this instrument, a dynamometer, including the original project requirements, model specification, component choice, and capabilities. The inclusion of the dynamometer in the experimental model has a disruptive influence on the hydrodynamic operation. Prior to the laboratory experiments, the instrument is simulated using WEC-Sim output as a driving force to verify the dynamometer design in a virtual environment. The results of these simulations are reported here, demonstrating the process used to validate the design prior to physical implementation.
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为波浪能转换器的功率输出力的实验验证创建了一个测功机
仿真工具被设计用来表示现实世界的子集。为了有效,这些工具必须经过实际测量的实验验证。美国能源部(USDOE)委托桑迪亚国家实验室(SNL)和国家可再生能源实验室(NREL)创建一个时域运动方程模拟器,用于评估波浪能转换器,称为weco - sim。WEC- sim特性的实验验证项目导致了定制仪器的开发,旨在表征影响模型波能转换器(WEC)的功率输出(PTO)的力。本文介绍了这种测功机的研制过程,包括最初的项目要求、型号规格、部件选择和性能。在实验模型中加入测功机会对水动力运行产生破坏性影响。在实验室实验之前,使用WEC-Sim输出作为驱动力对仪器进行仿真,以在虚拟环境中验证测功机的设计。这里报告了这些模拟的结果,演示了在物理实现之前用于验证设计的过程。
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