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Sensor movement correction for direct turbulence measurements in the marine atmospheric boundary layer

机译:传感器运动校正,用于海洋大气边界层中的直接湍流测量

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摘要

Understanding of the turbulent exchange processes between the ocean and the overlying atmosphere is essential for wind shear and turbulence structure of the Marine Atmospheric Boundary Layer (MABL). This is highly relevant for the development of offshore wind projects with respect to the expected power output and acceptable structural loads and fatigue of turbines. This paper presents preliminary results from a recent field experiment off the coast of Martha's Vineyard, Massachusetts. Turbulent fluxes have been measured from both a discus buoy and the Air Sea Interaction Tower (ASIT). Using the correction algorithm of Edson et al. (1998) the buoy data are corrected and compared with the ASIT measurements. The comparison shows that the corrected fluxes measured from the mooring are in good agreement with measured fluxes from the tower and that the direct covariance flux method is applicable for offshore turbulent flux measurements.
机译:对于海洋大气边界层(MABL)的风切变和湍流结构,了解海洋与上层大气之间的湍流交换过程至关重要。就预期的功率输出,可接受的结构载荷和涡轮机的疲劳度而言,这与海上风电项目的开发高度相关。本文介绍了马萨诸塞州玛莎葡萄园岛沿岸最近一次野外试验的初步结果。已从铁饼浮标和“海上空气相互作用塔”(ASIT)测量了湍流。使用Edson等人的校正算法。 (1998)对浮标数据进行了校正,并与ASIT测量结果进行了比较。比较表明,从系泊处测得的校正通量与从塔架测得的通量非常吻合,并且直接协方差通量法适用于海上湍流通量的测量。

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