首页> 外文期刊>Journal of hydrologic engineering >Study on ENSO Modulated Seasonal Variations in Atmospheric Humidity Using Global Positioning System Radio Occultation Data
【24h】

Study on ENSO Modulated Seasonal Variations in Atmospheric Humidity Using Global Positioning System Radio Occultation Data

机译:利用全球定位系统无线电掩星数据研究ENSO调制的大气湿度的季节性变化

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The role of cool (La Nina) and warm (El Nino) phases of El Nino Southern Oscillation (ENSO) on seasonal variations in atmospheric humidity which has impact on hydrological cycle is studied using global positioning system radio occultation (GPSRO), constellation observing system for meteorology ionosphere and climate (COSMIC) derived water vapor profiles after ensuring its accuracy with National Ocean and Atmospheric Administration (NOAA)/Earth System Research Laboratory (ESRL) radiosonde observations (r~2 = 0.91 at 850 hPa and r~2 = 0.90 at 500 hPa) and National Centers for Environmental Prediction (NCEP)/National Center for Atmospheric Research (NCAR) reanalysis data (r~2 = 0.86). Relative and absolute humidity are calculated using GPS RO data and their variation with ENSO phases is studied. Variation in humidity is linked with phase of ENSO, and NCEP/NCAR humidity shows positive deviation during months with La Nina phase. The analysis highlights the changes in the vertical profile of atmospheric humidity (both relative and atmospheric humidity) during El Nino/La Nina phases occurring between 2006 and 2012. Maximum difference in monthly deviation (>96%) in vertical profile of humidity between both phases is observed at middle troposphere (7-8 km) in the month of September followed by June (93-96%) between 6.5 and 7 km. The difference between percent deviation during both phases of ENSO is the minimum (1.32%) in August in middle troposphere indicating less effect of ENSO phases. The effect of phases of ENSO on boundary layer height (BLH) is more prominent during the nonrainy season when, owing to low humidity, higher BLH is expected. Increase and decrease of atmospheric humidity with La Nina and El Nino phase, respectively, lowers/increases the BLH prominently during nonrainy season months of October-May. It was observed that there is delay in onset of monsoon during El Nino year, and the atmospheric vertical humidity profile by GPSRO also showed the high humidity at 5-7 km altitude one day prior to onset of monsoon and lowering of humidity on the day of monsoon. The results of the study show that seasonal variations in atmospheric humidity are induced by ENSO phases even over small geographical area and are discernible with COSMIC GPS, RO data
机译:使用全球定位系统无线电掩星(GPSRO),星座观测系统研究了厄尔尼诺南方涛动(ENSO)的冷(La Nina)和暖(El Nino)相对大气湿度的季节性变化(影响水文循环)的作用美国国家海洋和大气管理局(NOAA)/地球系统研究实验室(ESRL)无线电探空仪观测结果确保其准确性后,用于气象电离层和气候(COSMIC)得出的水汽剖面图(r〜2 = 0.91在850 hPa和r〜2 = 0.90在500 hPa时)和国家环境预测中心(NCEP)/国家大气研究中心(NCAR)重新分析数据(r〜2 = 0.86)。利用GPS RO数据计算相对湿度和绝对湿度,并研究它们随ENSO相的变化。湿度的变化与ENSO的相位有关,而NCEP / NCAR的湿度在La Nina相的月份中显示正偏差。分析突出显示了在2006年至2012年之间发生的厄尔尼诺/拉尼娜阶段大气湿度垂直分布(相对湿度和大气湿度)的变化。两个阶段之间垂直湿度分布的月偏差最大差异(> 96%)在9月的对流层中层(7-8公里)观测到,随后在6.5-7公里之间的6月(93-96%)观测到。 ENSO两个阶段的偏差百分比之间的差异在8月的对流层中最小(1.32%),表明ENSO阶段的影响较小。在非雨季,ENSO的相对边界层高度(BLH)的影响更为突出,因为低湿度会导致BLH升高。在10月至5月的非雨季月份,La Nina和El Nino相的大气湿度分别增加和减少,显着降低/增加了BLH。据观察,厄尔尼诺年期间季风爆发有所延迟,GPSRO的大气垂直湿度廓线也显示出季风爆发前一天在5-7 km高度的高湿度,并在当日降低了湿度。季风。研究结果表明,即使在很小的地理区域内,ENSO阶段也会引起大气湿度的季节性变化,并且可以通过COSMIC GPS,RO数据来识别

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号