Validation of TRMM and Other Rainfall Estimates with a High-Density Gauge Dataset for West Africa. Part II: Validation of TRMM Rainfall ProductsSource: Journal of Applied Meteorology:;2003:;volume( 042 ):;issue: 010::page 1355Author:Nicholson, S. E.
,
Some, B.
,
McCollum, J.
,
Nelkin, E.
,
Klotter, D.
,
Berte, Y.
,
Diallo, B. M.
,
Gaye, I.
,
Kpabeba, G.
,
Ndiaye, O.
,
Noukpozounkou, J. N.
,
Tanu, M. M.
,
Thiam, A.
,
Toure, A. A.
,
Traore, A. K.
DOI: 10.1175/1520-0450(2003)042<1355:VOTAOR>2.0.CO;2Publisher: American Meteorological Society
Abstract: Gauge data from a West African network of 920 stations are used to assess Tropical Rainfall Measuring Mission (TRMM) satellite and blended rainfall products for 1998. In this study, mean fields, scattergrams, and latitudinal transects for the months of May?September and for the 5-month season are presented. Error statistics are also calculated. This study demonstrates that both the TRMM-adjusted Geostationary Observational Environmental Satellite precipitation index (AGPI) and TRMM-merged rainfall products show excellent agreement with gauge data over West Africa on monthly-to-seasonal timescales and 2.5° ? 2.5° latitude/longitude space scales. The root-mean-square error of both is on the order of 0.6 mm day?1 at seasonal resolution and 1 mm day?1 at monthly resolution. The bias of the AGPI is only 0.2 mm day?1, whereas the TRMM-merged product shows no bias over West Africa. Performance at 1.0° ? 1.0° latitude/longitude resolution is also excellent at the seasonal scale and good for the monthly scale. A comparison with standard rainfall products that predate TRMM shows that AGPI and the TRMM-merged product perform as well as, or better than, those products. The AGPI shows marked improvement when compared with the GPI, in reducing the bias and in the scatter of the estimates. The TRMM satellite-only products from the precipitation radar and the TRMM Microwave Imager do not perform well over West Africa. Both tend to overestimate gauge measurements.
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contributor author | Nicholson, S. E. | |
contributor author | Some, B. | |
contributor author | McCollum, J. | |
contributor author | Nelkin, E. | |
contributor author | Klotter, D. | |
contributor author | Berte, Y. | |
contributor author | Diallo, B. M. | |
contributor author | Gaye, I. | |
contributor author | Kpabeba, G. | |
contributor author | Ndiaye, O. | |
contributor author | Noukpozounkou, J. N. | |
contributor author | Tanu, M. M. | |
contributor author | Thiam, A. | |
contributor author | Toure, A. A. | |
contributor author | Traore, A. K. | |
date accessioned | 2017-06-09T14:08:54Z | |
date available | 2017-06-09T14:08:54Z | |
date copyright | 2003/10/01 | |
date issued | 2003 | |
identifier issn | 0894-8763 | |
identifier other | ams-13290.pdf | |
identifier uri | http://onlinelibrary.yabesh.ir/handle/yetl/4148724 | |
description abstract | Gauge data from a West African network of 920 stations are used to assess Tropical Rainfall Measuring Mission (TRMM) satellite and blended rainfall products for 1998. In this study, mean fields, scattergrams, and latitudinal transects for the months of May?September and for the 5-month season are presented. Error statistics are also calculated. This study demonstrates that both the TRMM-adjusted Geostationary Observational Environmental Satellite precipitation index (AGPI) and TRMM-merged rainfall products show excellent agreement with gauge data over West Africa on monthly-to-seasonal timescales and 2.5° ? 2.5° latitude/longitude space scales. The root-mean-square error of both is on the order of 0.6 mm day?1 at seasonal resolution and 1 mm day?1 at monthly resolution. The bias of the AGPI is only 0.2 mm day?1, whereas the TRMM-merged product shows no bias over West Africa. Performance at 1.0° ? 1.0° latitude/longitude resolution is also excellent at the seasonal scale and good for the monthly scale. A comparison with standard rainfall products that predate TRMM shows that AGPI and the TRMM-merged product perform as well as, or better than, those products. The AGPI shows marked improvement when compared with the GPI, in reducing the bias and in the scatter of the estimates. The TRMM satellite-only products from the precipitation radar and the TRMM Microwave Imager do not perform well over West Africa. Both tend to overestimate gauge measurements. | |
publisher | American Meteorological Society | |
title | Validation of TRMM and Other Rainfall Estimates with a High-Density Gauge Dataset for West Africa. Part II: Validation of TRMM Rainfall Products | |
type | Journal Paper | |
journal volume | 42 | |
journal issue | 10 | |
journal title | Journal of Applied Meteorology | |
identifier doi | 10.1175/1520-0450(2003)042<1355:VOTAOR>2.0.CO;2 | |
journal fristpage | 1355 | |
journal lastpage | 1368 | |
tree | Journal of Applied Meteorology:;2003:;volume( 042 ):;issue: 010 | |
contenttype | Fulltext |