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Wind turbine wake characterization in complex terrain via integrated Doppler lidar data from the Perdig?o experiment

机译:通过Perdig?o实验获得的集成多普勒激光雷达数据在复杂地形中表征风力涡轮机的尾波

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During the intensive period (May-June 2017) of the Perdig?o experiment, three sets of Doppler lidar were operated to scan the wake of the wind turbine (WT) on the southwest ridge. CU operated a Doppler scanning lidar in the valley bottom approximately 1 km northeast of the WT and conducted multiple arc scans and two RHI scans every 10-minutes centred on the WT. DTU used a dual Doppler lidar system scanning almost horizontally from the northeast ridge. Two of the three DLR lidars were in-plane with the WT for the main wind direction, one in the valley and one on the distant mountain ridge. The third DLR lidar was on the southwest ridge. All three systems (CU, DTU and DLR) were operated such that in data processing vertical and/or horizontal profiles of the wake can be derived at different distances from the WT. The paper describes the strategies used to scan the wake by the three groups and compares wake characteristics derived from the different systems.
机译:在Perdig?o实验的密集期(2017年5月至6月)中,操作了三套多普勒激光雷达,以扫描西南山脊上风力涡轮机(WT)的尾迹。 CU在WT东北约1公里处的谷底操作了多普勒扫描激光雷达,并以WT为中心每10分钟进行了多次电弧扫描和两次RHI扫描。 DTU使用双多普勒激光雷达系统从东北山脊几乎水平扫描。在三个DLR激光雷达中,有两个与WT处于同一平面内,作为主风向,一个在山谷中,一个在远处的山脊上。第三枚DLR激光雷达在西南山脊上。对所有三个系统(CU,DTU和DLR)进行了操作,以便在数据处理中可以在距WT不同距离处得出尾流的垂直和/或水平剖面。本文介绍了用于按三组扫描唤醒的策略,并比较了从不同系统得出的唤醒特性。

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