Using the GEOS 5 Nature Run to Simulate 2053 nm Coherent Doppler Wind Lidar Observations

IF 1.9 4区 地球科学 Q2 ENGINEERING, OCEAN Journal of Atmospheric and Oceanic Technology Pub Date : 2024-05-13 DOI:10.1175/jtech-d-23-0117.1
Bryan M. Karpowicz, N. Privé
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Abstract

Wind observations are a critical part of the current global observation system used for Numerical Weather Prediction (NWP). Wind lidars have been cited as precise instruments that can provide 3-dimensional wind measurements. Several studies have conducted observing system experiments (OSEs) with existing lidar observations or observing system simulation experiments (OSSEs) with simulated lidar observations highlighting the benefits of wind lidar measurements to NWP. Previous studies using simulated lidar observations have typically tied aerosol optical properties to functions of relative humidity instead of to aerosol properties. A methodology is presented for simulating wind measurements from a novel 2053 nm lidar using aerosol properties derived using the GEOS-5 Nature Run, along with estimating winds derived from cloud information. Some assumptions regarding aerosol scattering and the distribution of clouds are explored, along with the role of observation weighting, and implications for representativeness error. Results from a preliminary OSSE are presented highlighting the importance of assumptions used to derive data from cloud returns and aerosol scattering. While a longer duration study is required, results show a general reduction in analysis error when lidar measurements are ingested.
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使用 GEOS 5 自然运行模拟 2053 nm 相干多普勒风激光雷达观测结果
风观测是目前用于数值天气预报(NWP)的全球观测系统的重要组成部分。风激光雷达被认为是可以提供三维风测量的精确仪器。一些研究利用现有的激光雷达观测数据进行了观测系统实验(OSE),或利用模拟激光雷达观测数据进行了观测系统模拟实验(OSSE),强调了风激光雷达测量对 NWP 的好处。以往利用模拟激光雷达观测数据进行的研究通常将气溶胶光学特性与相对湿度函数而非气溶胶特性联系起来。本文介绍了一种利用气溶胶特性模拟新型 2053 nm 激光雷达风力测量的方法,气溶胶特性是利用 GEOS-5 自然运行以及根据云信息估算的风力得出的。探讨了有关气溶胶散射和云分布的一些假设,以及观测加权的作用和对代表性误差的影响。介绍了初步 OSSE 的结果,强调了从云层回波和气溶胶散射中获取数据的假设的重要性。虽然还需要进行更长时间的研究,但结果表明,如果采用激光雷达测量,分析误差会普遍减少。
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来源期刊
CiteScore
4.50
自引率
9.10%
发文量
135
审稿时长
3 months
期刊介绍: The Journal of Atmospheric and Oceanic Technology (JTECH) publishes research describing instrumentation and methods used in atmospheric and oceanic research, including remote sensing instruments; measurements, validation, and data analysis techniques from satellites, aircraft, balloons, and surface-based platforms; in situ instruments, measurements, and methods for data acquisition, analysis, and interpretation and assimilation in numerical models; and information systems and algorithms.
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