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Coherent Doppler Lidar for Boundary Layer Studies and Wind Energy.

机译:相干多普勒激光雷达,用于边界层研究和风能。

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摘要

This thesis outlines the development of a vector retrieval technique, based on data assimilation, for a coherent Doppler LIDAR (Light Detection and Ranging). A detailed analysis of the Optimal Interpolation (OI) technique for vector retrieval is presented. Through several modifications to the OI technique, it is shown that the modified technique results in significant improvement in velocity retrieval accuracy. These modifications include changes to innovation covariance portioning, covariance binning, and analysis increment calculation. It is observed that the modified technique is able to make retrievals with better accuracy, preserves local information better, and compares well with tower measurements.;In order to study the error of representativeness and vector retrieval error, a lidar simulator was constructed. Using the lidar simulator a thorough sensitivity analysis of the lidar measurement process and vector retrieval is carried out. The error of representativeness as a function of scales of motion and sensitivity of vector retrieval to look angle is quantified.;Using the modified OI technique, study of nocturnal flow in Owens' Valley, CA was carried out to identify and understand uncharacteristic events on the night of March 27th 2006. Observations from 1030 UTC to 1230 UTC (0230 hr local time to 0430 hr local time) on March 27 2006 are presented. Lidar observations show complex and uncharacteristic flows such as sudden bursts of westerly cross-valley wind mixing with the dominant up-valley wind. Model results from Coupled Ocean/Atmosphere Mesoscale Prediction System (COAMPS ®) and other in-situ instrumentations are used to corroborate and complement these observations.;The modified OI technique is used to identify uncharacteristic and extreme flow events at a wind development site. Estimates of turbulence and shear from this technique are compared to tower measurements. A formulation for equivalent wind speed in the presence of variations in wind speed and direction, combined with shear is developed and used to determine wind energy content in presence of turbulence.
机译:本文概述了基于数据同化的相干多普勒激光雷达矢量检测技术的发展。提出了用于矢量检索的最佳插值(OI)技术的详细分析。通过对OI技术的几次修改,可以看出修改后的技术可以显着提高速度检索的准确性。这些修改包括对创新协方差分配,协方差合并和分析增量计算的更改。可以看出,改进后的技术能够使检索精度更高,能够更好地保存局部信息,并且与塔的测量结果具有很好的对比。;为了研究代表性误差和矢量检索误差,构造了激光雷达模拟器。使用激光雷达模拟器对激光雷达测量过程和矢量检索进行了彻底的灵敏度分析。量化了代表度随运动尺度和矢量检索对视角的敏感性的函数。;使用改进的OI技术,研究了位于加利福尼亚欧文斯山谷的夜间流量,以识别和了解该区域的非典型事件。 2006年3月27日晚上。介绍了2006年3月27日从1030 UTC到1230 UTC(当地时间0230 hr到本地时间0430 hr)的观测结果。激光雷达的观测结果显示出复杂而无特征的流动,例如西风横谷风的突然爆发与占优势的上谷风混合。来自海洋/大气中尺度耦合预报系统(COAMPS®)和其他现场仪器的模型结果用于证实和补充这些观测结果。改进的OI技术用于识别风场中的异常和极端流动事件。将来自该技术的湍流和剪切估计与塔测量进行比较。在风速和风向变化的情况下,结合剪切力,得出了等效风速的公式,并用于确定湍流条件下的风能含量。

著录项

  • 作者

    Choukulkar, Aditya.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Alternative Energy.;Meteorology.;Atmospheric Sciences.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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