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Steeven B. Affognon

Publications and source records attributed to Steeven B. Affognon.

2 recordsLinked to original sources

Stochastic inflows and seasonal water value at Manantali

Seasonal hydropower operation requires release decisions that account for uncertain future inflows and the opportunity cost of stored water. We assess the Modelling and Optimisation of Stochastic Seasonal Hydropower Storage (MOSSHOOS) framework for the Manantali reservoir using 660 monthly energy-inflow observations from 1961--2015. The framework combines multiscale inflow representation, blocked resampling and scenario reduction with stochastic dual dynamic programming, and uses a seasonal square-root diffusion and Hamilton--Jacobi--Bellman formulation as a continuous-time interpretation of marginal water value. Scenario reduction improves the energy score by 47.6\% relative to independent monthly sampling, but the marginal distribution is rejected by a Kolmogorov--Smirnov test and the lower-tail p10 error remains 103.9\%, indicating inadequate dry-tail calibration. Consistent with that limitation, 50 paired Monte Carlo evaluations show no detectable cost or deficit advantage of the stochastic policy over its deterministic-equivalent counterpart at the archived operating configuration. As an independent benchmark, the repaired open-source \texttt{plan4res} seasonal storage valuation chain yields a dominant marginal value of 81.66~USD/MWh, within 3\% of the MOSSHOOS mean of 79.25~USD/MWh. These results support a coherent stochastic inflow-to-water-value methodology while showing that hydrological tail representation, rather than economic scaling, is the principal limitation to address before operational application.

math.OC↗

From Daily Fluctuations to Annual Hydrological Cycles: A Wavelet-Based Analysis of Nonstationary Seasonality in Senegal River Hydropower Inflows

This study presents a reproducible framework combining Fourier and wavelet analysis to examine the seasonality of daily inflows at three sites on the Senegal River (Bafing Makana, Felou, Gouina), based on 65,631 daily observations spanning nearly 60 years (1961-2020). Using harmonic regression, Welch spectral analysis, stationary wavelet decomposition, Morlet continuous wavelet transforms, trend and change-point tests, and cross-wavelet coherence, the authors show that the annual cycle corresponds mainly to the D8 detail level (roughly 256-512 days), rather than a level-4 approximation. The Haar wavelet was selected as the best fit among four families tested. The D8 component accounts for 18.85-19.89% of total energy, while Fourier harmonic models explain 73.3-78.7% of daily inflow variability. The average seasonal peak occurs in September (around days 252-254), and annual coherence across the three sites is exceptionally high (0.988-0.999), indicating a highly synchronized regional hydrological cycle. No robust monotonic trend was found in seasonality strength, amplitude, or peak timing. However, Pettitt tests detected a statistically significant shift in amplitude or mean inflow around 1971-1976, consistent with a regional regime transition, though confirming this would require independent rainfall and dam-operation data. The framework offers a transparent basis for generating inflow scenarios within MOSSHOOS-Plan4RES and is transferable to other data-scarce hydropower systems.

stat.AP↗