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Ship- and island-based atmospheric soundings from the 2020 EURECsup4/supA field campaign

机译:2020欧元的船舶和岛屿的大气探测 4 一个野外活动

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摘要

To advance the understanding of the interplay among clouds, convection, and circulation, and its role in climate change, the Elucidating the role of clouds–circulation coupling in climate campaign (EUREC4A) and Atlantic Tradewind Ocean–Atmosphere Mesoscale Interaction Campaign (ATOMIC) collected measurements in the western tropical Atlantic during January and February 2020.Upper-air radiosondes were launched regularly (usually 4-hourly) from a network consisting of the Barbados Cloud Observatory (BCO) and four ships within 6–16∘ N, 51–60∘ W.From 8 January to 19 February, a total of 811 radiosondes measured wind, temperature, and relative humidity. In addition to the ascent, the descent was recorded for 82 % of the soundings.The soundings sampled changes in atmospheric pressure, winds, lifting condensation level, boundary layer depth, and vertical distribution of moisture associated with different ocean surface conditions, synoptic variability, and mesoscale convective organization.Raw (Level 0), quality-controlled 1 s (Level 1), and vertically gridded (Level 2) data in NetCDF format (Stephan et al., 2020) are available to the public at AERIS (https://doi.org/10.25326/137).The methods of data collection and post-processing for the radiosonde data set are described here.
机译:要推进云,对流和流通的相互作用,以及其在气候变化中的作用,阐明了云 - 循环耦合在气候活动中的作用(EUREC4A)和大西洋贸易风海洋气氛Messcale互动运动(原子)收集1月和2月20日的热带大西洋中的测量。距离巴巴多斯云天文台(BCO)的网络定期(通常为4小时)和51-60内的四艘船(通常为4小时) ∘W。从2月8日至19日到19日,共有811个无透射仪测量风,温度和相对湿度。除了上升之外,记录探测的82%。探测对大气压,风,提升冷凝水平,边界层深度,边界层深度和水分垂直分布的探测,与不同的海洋表面条件,概况变异性,和MESCLE(0),质量控制的1 s(级别1)和NETCDF格式(Stephan等,2020)中的垂直网格(级别2)数据(HTTPS: //Doi.org/10.25326/137)。此处描述了无线电探空器数据集的数据收集和后处理方法。

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