...
首页> 外文期刊>Journal of hydrometeorology >Evaluation of Reanalyzed Precipitation Variability and Trends Using the Gridded Gauge-Based Analysis over the CONUS
【24h】

Evaluation of Reanalyzed Precipitation Variability and Trends Using the Gridded Gauge-Based Analysis over the CONUS

机译:利用基于网格仪的分析对康明斯的重新分析降水变异性和趋势的评价

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Atmospheric reanalyses have been used in many studies to investigate the variabilities and trends of precipitation because of their global coverage and long record; however, their results must be properly analyzed and their uncertainties must be understood. In this study, precipitation estimates from five global reanalyses [ERA-Interim; MERRA, version 2 (MERRA2); JRA-55; CFSR; and 20CR, version 2c (20CRv2c)] and one regional reanalysis (NARR) are compared against the CPC Unified Gauge-Based Analysis (CPCUGA) and GPCP over the contiguous United States (CONUS) during the period 1980-2013. Reanalyses capture the variability of the precipitation distribution over the CONUS as observed in CPCUGA and GPCP, but large regional and seasonal differences exist. Compared with CPCUGA, global reanalyses generally overestimate the precipitation over the western part of the country throughout the year and over the northeastern CONUS during the fall and winter seasons. These issues may be associated with the difficulties models have in accurately simulating precipitation over complex terrain and during snowfall events. Furthermore, systematic errors found in five global reanalyses suggest that their physical processes in modeling precipitation need to be improved. Even though negative biases exist in NARR, its spatial variability is similar to both CPCUGA and GPCP; this is anticipated because it assimilates observed precipitation, unlike the global reanalyses. Based on CPCUGA, there is an average decreasing trend of -1.38mm yr(-1) over the CONUS, which varies depending on the region with only the north-central to northeastern parts of the country having positive trends. Although all reanalyses exhibit similar interannual variation as observed in CPCUGA, their estimated precipitation trends, both linear and spatial trends, are distinct from CPCUGA.
机译:许多研究中已被用于大气的Reanalyses,以调查因全球覆盖率和长记录而调查降水的可变性和趋势;但是,必须正确分析它们的结果,并且必须了解它们的不确定性。在这项研究中,来自五个全球Reanalyses的降水估计[ERA-INSIM; Merra,版本2(Merra2); JRA-55; CFSR;在1980 - 2013年期间,将2C版本2C(20Crv2C)]和一个区域再分析(NAR)与基于CPC统一规范的分析(CPCUGA)和GPCP进行比较。 Reanalyses捕获CPCuga和GPCP中观察到的锥形降水分布的可变性,但存在大的区域和季节性差异。与CPCUGA相比,全球性Reanalyses通常超过全年西部的沉淀,在秋季和冬季季节在东北康地中。这些问题可能与困难模型有关的困难模型在复杂的地形和降雪期间的降水中具有准确模拟。此外,在五个全球Reanalyses中发现的系统错误表明它们在建模降水中的物理过程需要得到改善。尽管NAR中存在负偏差,但其空间可变性也类似于CPCuga和GPCP;与全球性Reanalyses不同,这是预期的,因为它同化了观察到的降水。基于CPCUGA,康明斯的平均降低-1.38毫米YR(-1)趋势,这取决于该地区,仅限于北方地区的东北部门具有积极趋势。尽管所有Reanalyses表现出类似的持续依赖于CPCuga中所观察到的续际变化,但它们的估计降水趋势,线性和空间趋势都与CPCUGA不同。

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