Spatio-temporal validation of satellite-based rainfall estimates in the Philippines

Satellite-based rainfall is an alternative source of information especially for developing countries such as the Philippines where there are many areas that do not have ground observation stations. To maximize the use and potential of the derived precipitation products, it is important to validate t...

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Main Authors: Jamandre, C A, Narisma, Gemma T
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Published: Archīum Ateneo 2012
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Online Access:https://archium.ateneo.edu/physics-faculty-pubs/21
https://www.sciencedirect.com/science/article/pii/S0169809512002220#!
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spelling ph-ateneo-arc.physics-faculty-pubs-10202020-03-31T07:00:02Z Spatio-temporal validation of satellite-based rainfall estimates in the Philippines Jamandre, C A Narisma, Gemma T Satellite-based rainfall is an alternative source of information especially for developing countries such as the Philippines where there are many areas that do not have ground observation stations. To maximize the use and potential of the derived precipitation products, it is important to validate these with observation datasets. In this study, two satellite-based rainfall products, CMORPH and TRMM, are compared with observation from eight ground stations in the Philippines and the gridded rainfall dataset, APHRODITE, for 2003 to 2005. Results show that TRMM data give slightly better estimates than CMORPH but both, in general, do not correlate well with observations for all stations. Rainfall during the months of August to December are estimated better by both satellite-based data sets. TRMM and CMORPH also appear to capture well extreme precipitation in the range of 50–200 mm/day. TRMM data, in particular, is able to illustrate the areas consistently affected by frequent occurrences of high rainfall amounts. Spatial correlations show that TRMM and CMORPH perform better in the northeast regions of the Philippines but fail to estimate rainfall in the southern areas. The results indicate that the performance of satellite-derived rainfall products can be dependent on geographical location and the amount of rainfall that is estimated. 2012-07-09T07:00:00Z text https://archium.ateneo.edu/physics-faculty-pubs/21 https://www.sciencedirect.com/science/article/pii/S0169809512002220#! Physics Faculty Publications Archīum Ateneo Satellite-based precipitation Ground-based correlations Spatial distribution Frequency distribution Rainfall extremes Atmospheric Sciences
institution Ateneo De Manila University
building Ateneo De Manila University Library
country Philippines
collection archium.Ateneo Institutional Repository
topic Satellite-based precipitation
Ground-based correlations
Spatial distribution
Frequency distribution
Rainfall extremes
Atmospheric Sciences
spellingShingle Satellite-based precipitation
Ground-based correlations
Spatial distribution
Frequency distribution
Rainfall extremes
Atmospheric Sciences
Jamandre, C A
Narisma, Gemma T
Spatio-temporal validation of satellite-based rainfall estimates in the Philippines
description Satellite-based rainfall is an alternative source of information especially for developing countries such as the Philippines where there are many areas that do not have ground observation stations. To maximize the use and potential of the derived precipitation products, it is important to validate these with observation datasets. In this study, two satellite-based rainfall products, CMORPH and TRMM, are compared with observation from eight ground stations in the Philippines and the gridded rainfall dataset, APHRODITE, for 2003 to 2005. Results show that TRMM data give slightly better estimates than CMORPH but both, in general, do not correlate well with observations for all stations. Rainfall during the months of August to December are estimated better by both satellite-based data sets. TRMM and CMORPH also appear to capture well extreme precipitation in the range of 50–200 mm/day. TRMM data, in particular, is able to illustrate the areas consistently affected by frequent occurrences of high rainfall amounts. Spatial correlations show that TRMM and CMORPH perform better in the northeast regions of the Philippines but fail to estimate rainfall in the southern areas. The results indicate that the performance of satellite-derived rainfall products can be dependent on geographical location and the amount of rainfall that is estimated.
format text
author Jamandre, C A
Narisma, Gemma T
author_facet Jamandre, C A
Narisma, Gemma T
author_sort Jamandre, C A
title Spatio-temporal validation of satellite-based rainfall estimates in the Philippines
title_short Spatio-temporal validation of satellite-based rainfall estimates in the Philippines
title_full Spatio-temporal validation of satellite-based rainfall estimates in the Philippines
title_fullStr Spatio-temporal validation of satellite-based rainfall estimates in the Philippines
title_full_unstemmed Spatio-temporal validation of satellite-based rainfall estimates in the Philippines
title_sort spatio-temporal validation of satellite-based rainfall estimates in the philippines
publisher Archīum Ateneo
publishDate 2012
url https://archium.ateneo.edu/physics-faculty-pubs/21
https://www.sciencedirect.com/science/article/pii/S0169809512002220#!
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