An observational analysis of the eastern tropical Pacific Shallow Meridional Circulation using YOTC data and pilot balloons from Isla del Coco, Costa Rica

Gabriela Mora-Rojas, Eric J. Alfaro
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Abstract

The low-level circulation of the atmosphere over Isla del Coco has been studied and the presence of a northerly wind at low levels of the atmosphere in the eastern tropical Pacific, in addition to the deep Hadley circulation cell, has been confirmed. Using data from pilot balloons (May 1997 through January 1999, October 2007 through April 2008), the northern flow is between 1 and 5 km high, depending on the time of year, with a maximum speed located between 2 and 3 km above the surface. The generating mechanism of the surface return flow in the Hadley circulation cell has been formulated as a sea breeze, Ekman pumping of the boundary layer, and it could even be a response to the Rossby wave generated by warming in the Chocó region. These results agree with those obtained from the ERA5 reanalysis (January 1979 through December 2020), which show that the southern return cell varies in position and height during the course of the year, with a poorly organized circulation in March and strengthening from July to February. The incorporation of data of low, medium and high cloud cover from Year of the Tropical Convection (boreal summer 2009) evidenced the presence of high-level clouds in the ITCZ region and low-level clouds to the south of the ITCZ, latitudes where the south surface circulation cell is located.
利用 YOTC 数据和哥斯达黎加可可岛的试验气球对太平洋东部热带浅层经向环流进行观测分析
对可可岛上空的低层大气环流进行了研究,证实除了深层哈德利环流单元外,在东太平洋热带地区的低层大气中还存在北风。利用试验气球的数据(1997 年 5 月至 1999 年 1 月,2007 年 10 月至 2008 年 4 月),北风的高度在 1 至 5 千米之间,具体取决于一年中的不同时间,最大速度在距地面 2 至 3 千米之间。哈德利环流单元中地表回流的产生机制被认为是海风、边界层的埃克曼抽气,甚至可能是对乔科地区气候变暖产生的罗斯比波的响应。这些结果与ERA5 再分析(1979 年 1 月至 2020 年 12 月)得出的结果一致,后者显示南方回流单元在一年中的位置和高度各不相同,3 月份的环流组织较差,7 月至 2 月环流加强。热带对流年(2009 年北方夏季)的低、中、高云层数据表明,在 ITCZ 区域存在高空云层,而在 ITCZ 南部,即南部表面环流单元所在的纬度存在低空云层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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