IEC 61400-12-1-2017 风力发电系统.第12部分:风轮发电的动力性能测试

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标准号:IEC 61400-12-1-2017
中文标准名称:风力发电系统.第12部分:风轮发电的动力性能测试
英文标准名称:Wind energy generation systems - Part 12-1: Power performance measurements of electricity producing wind turbines
标准类型:F11
发布日期:1999/12/31 12:00:00
实施日期:1999/12/31 12:00:00
中国标准分类号:F11
国际标准分类号:27.180
引用标准:IEC 60688-2012;IEC 61400-12-2-2013;IEC 61869-1-2007;IEC 61869-2-2012;IEC 61869-3-2011;ISO/IEC GUIDE 98-3-2008;ISO 2533-1975;ISO 3966-2008;ISO/IEC 17025-2005;ISO/IEC 17043-2010
适用范围:This part of IEC 61400 specifies a procedure for measuring the power performance characteristics of a single wind turbine and applies to the testing of wind turbines of all types and sizes connected to the electrical power network. In addition, this standard describes a procedure to be used to determine the power performance characteristics of small wind turbines (as defined in IEC 61400-2) when connected to either the electric power network or a battery bank. The procedure can be used for performance evaluation of specific wind turbines at specific locations, but equally the methodology can be used to make generic comparisons between different wind turbine models or different wind turbine settings when site-specific conditions and data filtering influences are taken into account. The wind turbine power performance characteristics are determined by the measured power curve and the estimated annual energy production (AEP). The measured power curve, defined as the relationship between the wind speed and the wind turbine power output, is determined by collecting simultaneous measurements of meteorological variables (including wind speed), as well as wind turbine signals (including power output) at the test site for a period that is long enough to establish a statistically significant database over a range of wind speeds and under varying wind and atmospheric conditions. The AEP is calculated by applying the measured power curve to reference wind speed frequency distributions, assuming 100 % availability. This document describes a measurement methodology that requires the measured power curve and derived energy production figures to be supplemented by an assessment of uncertainty sources and their combined effects.

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