Knowledge Resource Center for Ecological Environment in Arid Area
DOI | 10.1175/JHM-D-17-0130.1 |
Global Assessment of the SMAP Level-4 Surface and Root-Zone Soil Moisture Product Using Assimilation Diagnostics | |
Reichle, Rolf H.1; De Lannoy, Gabrielle J. M.2; Liu, Qing1,3; Koster, Randal D.1; Kimball, John S.4; Crow, Wade T.5; Ardizzone, Joseph V.1,3; Chakraborty, Purnendu1,3; Collins, Douglas W.1,3; Conaty, Austin L.1,3; Girotto, Manuela1,6; Jones, Lucas A.4; Kolassa, Jana1,6; Lievens, Hans1,7; Lucchesi, Robert A.1,3; Smith, Edmond B.1,3 | |
通讯作者 | Reichle, Rolf H. |
来源期刊 | JOURNAL OF HYDROMETEOROLOGY
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ISSN | 1525-755X |
EISSN | 1525-7541 |
出版年 | 2017 |
卷号 | 18期号:12页码:3217-3237 |
英文摘要 | The Soil Moisture Active Passive (SMAP) mission Level-4 Soil Moisture (L4_SM) product provides 3-hourly, 9-km resolution, global estimates of surface (0-5 cm) and root-zone (0-100 cm) soil moisture and related land surface variables from 31 March 2015 to present with similar to 2.5-day latency. The ensemble-based L4_SM algorithm assimilates SMAP brightness temperature (Tb) observations into the Catchment land surface model. This study describes the spatially distributed L4_SM analysis and assesses the observation-minus-forecast (O - F) Tb residuals and the soil moisture and temperature analysis increments. Owing to the climatological rescaling of the Tb observations prior to assimilation, the analysis is essentially unbiased, with global mean values of similar to 0.37 K for the O - F Tb residuals and practically zero for the soil moisture and temperature increments. There are, however, modest regional (absolute) biases in the O - F residuals (under similar to 3 K), the soil moisture increments (under similar to 0.01 m(3) m(-3)), and the surface soil temperature increments (under similar to 1 K). Typical instantaneous values are similar to 6 K for O - F residuals, similar to 0.01 (similar to 0.003) m(3) m(-3) for surface (root zone) soil moisture increments, and similar to 0.6 K for surface soil temperature increments. The O - F diagnostics indicate that the actual errors in the system are overestimated in deserts and densely vegetated regions and underestimated in agricultural regions and transition zones between dry and wet climates. The O - F autocorrelations suggest that the SMAP observations are used efficiently in western North America, the Sahel, and Australia, but not in many forested regions and the high northern latitudes. A case study in Australia demonstrates that assimilating SMAP observations successfully corrects short-term errors in the L4_SM rainfall forcing. |
类型 | Article |
语种 | 英语 |
国家 | USA ; Belgium |
收录类别 | SCI-E |
WOS记录号 | WOS:000430285100006 |
WOS关键词 | RADIATIVE-TRANSFER MODEL ; CATCHMENT-BASED APPROACH ; LAND ; PERFORMANCE ; FRAMEWORK ; IMPACT |
WOS类目 | Meteorology & Atmospheric Sciences |
WOS研究方向 | Meteorology & Atmospheric Sciences |
资源类型 | 期刊论文 |
条目标识符 | http://119.78.100.177/qdio/handle/2XILL650/200608 |
作者单位 | 1.NASA, Global Modeling & Assimilat Off, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA; 2.Katholieke Univ Leuven, Dept Earth & Environm Sci, Heverlee, Belgium; 3.Sci Syst & Applicat Inc, Lanham, MD USA; 4.Univ Montana, Missoula, MT 59812 USA; 5.ARS, Hydrol & Remote Sensing Lab, USDA, Beltsville, MD USA; 6.Univ Space Res Assoc, Goddard Earth Sci Technol & Res, Columbia, MD USA; 7.Univ Ghent, Lab Hydrol & Water Management, Ghent, Belgium |
推荐引用方式 GB/T 7714 | Reichle, Rolf H.,De Lannoy, Gabrielle J. M.,Liu, Qing,et al. Global Assessment of the SMAP Level-4 Surface and Root-Zone Soil Moisture Product Using Assimilation Diagnostics[J],2017,18(12):3217-3237. |
APA | Reichle, Rolf H..,De Lannoy, Gabrielle J. M..,Liu, Qing.,Koster, Randal D..,Kimball, John S..,...&Smith, Edmond B..(2017).Global Assessment of the SMAP Level-4 Surface and Root-Zone Soil Moisture Product Using Assimilation Diagnostics.JOURNAL OF HYDROMETEOROLOGY,18(12),3217-3237. |
MLA | Reichle, Rolf H.,et al."Global Assessment of the SMAP Level-4 Surface and Root-Zone Soil Moisture Product Using Assimilation Diagnostics".JOURNAL OF HYDROMETEOROLOGY 18.12(2017):3217-3237. |
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