PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 28, 2026Theoretical and Applied Climatology0 citationsOpen Access

Optimizing solar energy forecasting in Senegal: Sensitivity analysis of WRF-solar radiation schemes

ANAïssatou NdiayeWSWindmanagda SawadogoJBJan Bliefernicht

Key Points

  • This research aims to enhance solar irradiance forecasting accuracy using different WRF-Solar radiation schemes. It assesses the performance of these schemes at solar plants in Senegal.
  • Evaluated shortwave radiation schemes (Dudhia and RRTMG) in WRF-Solar model.
  • Conducted six simulations under varying sky conditions at Diass and Ten Merina plants.
  • Used hourly GHI measurements from 2020 for performance assessment.
  • RRTMG scheme with aerosols showed maximum correlation (R=0.85) and lowest RMSE (160 W/m²).
  • WRF-Solar has poor performance across all experiments under cloudy skies (RMSE=386 W/m², R=0.55, SS=-1.48).
  • Impact of shallow convection on GHI estimation was limited across varying atmospheric conditions.

Abstract

Solar irradiance forecasting is essential in maximizing solar energy utilization and facilitating the shift towards an eco-friendly and sustainable energy future. However, accurate solar irradiance from numerical weather prediction remains challenging. This research evaluates the performance of state-of-the-art Weather Research and Forecasting tailored to the solar energy applications (WRF-Solar) at two operational solar plants in Senegal: Diass and Ten Merina. The experiments include different shortwave radiation schemes (Dudhia and RRTMG) with RRTMG coupled with dynamic aerosols. In addition, the impact of shallow convection on the different experiments is investigated. A total of six simulations is performed and assessed under various sky conditions using hourly GHI measurements for 2020. Results indicate that the RRTMG scheme coupled with aerosols outperforms other simulations, exhibiting a maximum correlation (R) of 0.85, skill score (SS) of 0.17, and the lowest RMSE value (160 W/m2) and MAE (110 W/m2). However, WRF-Solar exhibits poor performance across all experiments (RMSE = 386 W/m², R = 0.55, SS = -1.48) under cloudy skies. The influence of the shallow convection scheme in the WRF-Solar model on GHI estimation was found to be limited under different atmospheric conditions at both sites. These findings offer valuable insights that can enhance solar energy forecasting accuracy and support reliable solar power generation and renewable energy optimization, benefiting energy providers, policymakers, and communities in Senegal.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Ndiaye et al. (2026) studied this question.

synapsesocial.com/papers/69f04e08727298f751e72026https://doi.org/10.1007/s00704-026-06272-1
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Radiative impact of mineral dust on monsoon precipitation variability over West Africa2011 · 284 citations
  2. 2Mechanisms of Low Cloud–Climate Feedback in Idealized Single-Column Simulations with the Community Atmospheric Model, Version 3 (CAM3)2008 · 67 citations
  3. 3Angstrom exponent and bimodal aerosol size distributions2006 · 935 citations
  4. 4The WASCAL Hydrometeorological Observatory in the Sudan Savanna of Burkina Faso and Ghana2018 · 36 citations
  5. 5The community Noah land surface model with multiparameterization options (Noah-MP): 1. Model description and evaluation with local-scale measurements2011 · 3,112 citations