Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Effect of Bias Correction of Satellite-Rainfall Estimates on Runoff Simulations at the Source of the Upper Blue Nile

View through CrossRef
Results of numerous evaluation studies indicated that satellite-rainfall products are contaminated with significant systematic and random errors. Therefore, such products may require refinement and correction before being used for hydrologic applications. In the present study, we explore a rainfall-runoff modeling application using the Climate Prediction Center-MORPHing (CMORPH) satellite rainfall product. The study area is the Gilgel Abbay catchment situated at the source basin of the Upper Blue Nile basin in Ethiopia, Eastern Africa. Rain gauge networks in such area are typically sparse. We examine different bias correction schemes applied locally to the CMORPH product. These schemes vary in the degree to which spatial and temporal variability in the CMORPH bias fields are accounted for. Three schemes are tested: space and time-invariant, time-variant and spatially invariant, and space and time variant. Bias-corrected CMORPH products were used to calibrate and drive the Hydrologiska Byråns Vattenbalansavdelning (HBV) rainfall-runoff model. Applying the space and time-fixed bias correction scheme resulted in slight improvement of the CMORPH-driven runoff simulations, but in some instances caused deterioration. Accounting for temporal variation in the bias reduced the rainfall bias by up to 50%. Additional improvements were observed when both the spatial and temporal variability in the bias was accounted for. The rainfall bias was found to have a pronounced effect on model calibration. The calibrated model parameters changed significantly when using rainfall input from gauges alone, uncorrected, and bias-corrected CMORPH estimates. Changes of up to 81% were obtained for model parameters controlling the stream flow volume.
Title: Effect of Bias Correction of Satellite-Rainfall Estimates on Runoff Simulations at the Source of the Upper Blue Nile
Description:
Results of numerous evaluation studies indicated that satellite-rainfall products are contaminated with significant systematic and random errors.
Therefore, such products may require refinement and correction before being used for hydrologic applications.
In the present study, we explore a rainfall-runoff modeling application using the Climate Prediction Center-MORPHing (CMORPH) satellite rainfall product.
The study area is the Gilgel Abbay catchment situated at the source basin of the Upper Blue Nile basin in Ethiopia, Eastern Africa.
Rain gauge networks in such area are typically sparse.
We examine different bias correction schemes applied locally to the CMORPH product.
These schemes vary in the degree to which spatial and temporal variability in the CMORPH bias fields are accounted for.
Three schemes are tested: space and time-invariant, time-variant and spatially invariant, and space and time variant.
Bias-corrected CMORPH products were used to calibrate and drive the Hydrologiska Byråns Vattenbalansavdelning (HBV) rainfall-runoff model.
Applying the space and time-fixed bias correction scheme resulted in slight improvement of the CMORPH-driven runoff simulations, but in some instances caused deterioration.
Accounting for temporal variation in the bias reduced the rainfall bias by up to 50%.
Additional improvements were observed when both the spatial and temporal variability in the bias was accounted for.
The rainfall bias was found to have a pronounced effect on model calibration.
The calibrated model parameters changed significantly when using rainfall input from gauges alone, uncorrected, and bias-corrected CMORPH estimates.
Changes of up to 81% were obtained for model parameters controlling the stream flow volume.

Related Results

The Blue Beret
The Blue Beret
When we think of United Nations (UN) peacekeepers, the first image that is conjured in our mind is of an individual sporting a blue helmet or a blue beret (fig. 1). While simple an...
Rainfall-runoff estimation of an ungauged Nanjannad watershed in Nilgiris district of Tamil Nadu using WEPP model
Rainfall-runoff estimation of an ungauged Nanjannad watershed in Nilgiris district of Tamil Nadu using WEPP model
The rainfall and runoff relationship is a key factor in assessing the water availability in the watershed. The amount of water available is estimated for watershed interventions an...
A Study of Rainfall-Runoff Process considering two uncertainties in Basin with multiple dams
A Study of Rainfall-Runoff Process considering two uncertainties in Basin with multiple dams
Forecasting of natural phenomena is generally based on observation data, but it is impossible to measure everything perfectly, and there are uncertainties in the limits of observat...
Evaluation and Bias Correction of CHIRP Rainfall Estimate for Rainfall-Runoff Simulation over Lake Ziway Watershed, Ethiopia
Evaluation and Bias Correction of CHIRP Rainfall Estimate for Rainfall-Runoff Simulation over Lake Ziway Watershed, Ethiopia
In Lake Ziway watershed in Ethiopia, the contribution of river inflow to the water level has not been quantified due to scarce data for rainfall-runoff modeling. However, satellite...
Spatial, inter and intra‐annual variability of the Upper Blue Nile Basin rainfall
Spatial, inter and intra‐annual variability of the Upper Blue Nile Basin rainfall
AbstractIn this study, monthly and annual Upper Blue Nile Basin rainfall data were analyzed to learn the rainfall statistics and its temporal and spatial distribution. Frequency an...
A three-part bias correction of simulated European river runoff to force ocean models
A three-part bias correction of simulated European river runoff to force ocean models
Abstract. In ocean or Earth system model applications, the riverine freshwater inflow is an important flux affecting salinity and marine stratification in coastal areas. However, i...
Classification of Rainfall-Runoff Events for Flood Analysis and Forecasting in Lower Saxony, Germany
Classification of Rainfall-Runoff Events for Flood Analysis and Forecasting in Lower Saxony, Germany
Local rainfall events, especially those with high precipitation levels in a short period of time, can cause extreme runoff in their associated catchment areas. The high variability...

Back to Top