JOURNAL ARTICLE

A Simplified Diagnostic Model of Orographic Rainfall for Enhancing Satellite-Based Rainfall Estimates in Data-Poor Regions

Chris FunkJoel Michaelsen

Year: 2004 Journal:   Journal of Applied Meteorology Vol: 43 (10)Pages: 1366-1378   Publisher: American Meteorological Society

Abstract

Abstract An extension of Sinclair's diagnostic model of orographic precipitation (“VDEL”) is developed for use in data-poor regions to enhance rainfall estimates. This extension (VDELB) combines a 2D linearized internal gravity wave calculation with the dot product of the terrain gradient and surface wind to approximate terrain-induced vertical velocity profiles. Slope, wind speed, and stability determine the velocity profile, with either sinusoidal or vertically decaying (evanescent) solutions possible. These velocity profiles replace the parameterized functions in the original VDEL, creating VDELB, a diagnostic accounting for buoyancy effects. A further extension (VDELB*) uses an on/off constraint derived from reanalysis precipitation fields. A validation study over 365 days in the Pacific Northwest suggests that VDELB* can best capture seasonal and geographic variations. A new statistical data-fusion technique is presented and is used to combine VDELB*, reanalysis, and satellite rainfall estimates in southern Africa. The technique, matched filter regression (MFR), sets the variance of the predictors equal to their squared correlation with observed gauge data and predicts rainfall based on the first principal component of the combined data. In the test presented here, mean absolute errors from the MFR technique were 35% lower than the satellite estimates alone. VDELB assumes a linear solution to the wave equations and a Boussinesq atmosphere, and it may give unrealistic responses under extreme conditions. Nonetheless, the results presented here suggest that diagnostic models, driven by reanalysis data, can be used to improve satellite rainfall estimates in data-sparse regions.

Keywords:
Orography Terrain Meteorology Precipitation Satellite Orographic lift Environmental science Wind speed Climatology Mathematics Geology Geography

Metrics

30
Cited By
1.23
FWCI (Field Weighted Citation Impact)
77
Refs
0.80
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Precipitation Measurement and Analysis
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science
Meteorological Phenomena and Simulations
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science
Climate variability and models
Physical Sciences →  Environmental Science →  Global and Planetary Change

Related Documents

JOURNAL ARTICLE

Fine-tuning satellite-based rainfall estimates

Hastuadi HarsaAgus BuonoRahmat HidayatJaumil AchyarSri NoviatiRoni KurniawanAlfan Sukmana Praja

Journal:   IOP Conference Series Earth and Environmental Science Year: 2018 Vol: 149 Pages: 012047-012047
JOURNAL ARTICLE

A DYNAMICAL MODEL OF OROGRAPHIC RAINFALL

R. P. SARKER

Journal:   Monthly Weather Review Year: 1966 Vol: 94 (9)Pages: 555-572
BOOK-CHAPTER

Drought Risk Management Using Satellite-Based Rainfall Estimates

Elena TarnavskyRogério Bonifácio

Advances in global change research Year: 2020 Pages: 1029-1053
© 2026 ScienceGate Book Chapters — All rights reserved.