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Enhanced estimation of boundary layer advective properties to improve space-to-time conversion processes for wind energy applications

机译:增强边界层对流特性的估计,以改善风能应用中的时空转换过程

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Remote sensing instruments that scan have the ability to provide high-resolution spatial measurements of atmospheric boundary layer winds across a region. However, the ability to use these spatially distributed measurements to extract temporal variations in the flow at time scales less than the measurement revisit period is historically limited. As part of this work, the framework for an enhanced space-to-time conversion technique is established, allowing for time histories of atmospheric boundary layer wind characteristics to be reliably extracted for locations within the measurement domain. This space-to-time conversion technique is made possible by quantifying momentum advection within the measurement domain, rather than simply assuming a uniform advection based on a singular mean wind speed and direction. The use of this technique enables the extraction of long lead-time (ie, upwards of 60 seconds) forecasts of wind speed and direction at individual locations within the measurement domain, thereby expanding the application and potential benefits of scanning instruments. For example, these long lead-time forecasts can be used to enhance proactive wind turbine control and more accurately define wind turbine wake statistics.
机译:扫描的遥感仪器具有对整个地区的大气边界层风进行高分辨率空间测量的能力。但是,历史上限制了使用这些空间分布的测量值以小于测量重新访问时间的时间尺度提取流量的时间变化的能力。作为这项工作的一部分,建立了用于增强时空转换技术的框架,从而可以针对测量域内的位置可靠地提取大气边界层风特征的时间历史记录。通过量化测量域内的动量对流,而不是简单地基于奇异的平均风速和风向假设均匀对流,可以实现这种时空转换技术。使用此技术可以在测量域内的各个位置提取长的提前期(即,超过60秒)风速和风向预测,从而扩展了扫描仪器的应用范围和潜在优势。例如,这些长的提前期预测可用于增强主动式风机控制并更准确地定义风机唤醒统计信息。

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