Validation of Global Wind Atlas for India

B. Ramdas, J. Bastin, B. Krishnan, T. S. Kumar, J. C. Solomon, K. Balaraman
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引用次数: 1

Abstract

Identification of wind potential sites is the preliminary work in the wind farm development process. This has been initially achieved with the support of wind atlases. The validation of wind atlas based on ground measurements is an essential work to enhance confidence on their usage. The latest version of Global Wind Atlas (GWA) has been introduced in November 2019 which indicates the wind potential across the globe at a node spacing of 250m. In this paper, Annual Average Wind Speed and Wind Power Density validation of GWA in offshore, onshore and Islands sites have been carried out for India based on the ground based measurements. This paper very first informs the quality check carried out on the atlas and secondly the validation of it based on the field measurement data. Based on the analysis, the GWA annual average wind speed predictions in offshore and onshore homogeneous sites are found to be within the defined uncertainty band of measured wind speeds. The GWA wind speed correlation in offshore sites is found to be better than other sites. However, in Complex and North Eastern states, the GWA wind speed in more than 50% of sites is falling out of the uncertainty band of measured wind speed. In Islands, the GWA underestimates the annual average wind speed in Lakshadweep and overestimates in Andaman & Nicobar.
印度全球风地图集的验证
确定潜在风场是风电场开发过程中的初步工作。这是在风力地图集的支持下初步实现的。基于地面测量的风地图集的验证是提高对其使用信心的必要工作。最新版本的全球风力图谱(GWA)于2019年11月推出,该图谱显示了全球范围内节点间距为250米的风力潜力。本文基于地面测量数据,对印度海上、陆上和岛屿站点GWA的年平均风速和风力密度进行了验证。本文首先介绍了对地图集进行的质量检查,然后根据现场测量数据对地图集进行了验证。在此基础上,发现GWA在海上和陆上均匀站点的年平均风速预测在测量风速的定义不确定性范围内。海上站点的GWA风速相关性优于其他站点。然而,在复杂和东北部各州,超过50%的站点的GWA风速落在测量风速的不确定范围之外。在岛屿上,GWA低估了拉克沙群岛的年平均风速,高估了安达曼和尼科巴群岛的年平均风速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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