Virtual Rain v1.0: a unified toolkit for high-resolution rainfall simulation and disaggregation

Stochastic simulation models are essential for investigating hydrological processes and supporting water resource management. In this study, we introduce Virtual Rain, a software toolkit that first generates synthetic daily rainfall time series and then disaggregates them to a user-defined temporal resolution. The toolkit implements and integrates the approaches recently proposed by some of the authors, ensuring a realistic representation of rainfall dynamics while preserving key statistical properties. The framework is implemented through a set of Python and R routines designed to facilitate practical application. In addition to providing observed rainfall time series and the scaling exponent n (Intensity–Duration–Frequency slope), users can configure key modelling components, including the marginal distribution, autocorrelation structure, number of lags, and target temporal resolution. The routines generate both graphical and quantitative outputs, enabling direct comparison between observed and simulated series. Rather than introducing new stochastic rainfall methodologies, Virtual Rain provides the first publicly available implementation of an integrated workflow combining the CoSMoS-2s daily rainfall generator and the MRC rainfall disaggregation model within a unified software environment. Virtual Rain is demonstrated through a real-world case study, illustrating the functionality and usability of the implemented workflow. The toolkit is also available through an interactive web-based platform, facilitating its use by a broad range of users.

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Publication Details

Journal
Geoscientific model development
Published
2026-10-07
DOI
https://doi.org/10.5194/gmd-19-9489-2026
Primary Topic
Hydrology and Watershed Management Studies
Type
article
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article

Virtual Rain v1.0: a unified toolkit for high-resolution rainfall simulation and disaggregation

Salvatore Grimaldi, Francesco Cappelli, Andrea Petroselli‬, Emanuele Santinami
Geoscientific model development
Hydrology and Watershed Management Studies
article

Virtual Rain v1.0: a unified toolkit for high-resolution rainfall simulation and disaggregation

Salvatore Grimaldi, Francesco Cappelli, Andrea Petroselli‬, Emanuele Santinami
article en

Abstract

Stochastic simulation models are essential for investigating hydrological processes and supporting water resource management. In this study, we introduce Virtual Rain, a software toolkit that first generates synthetic daily rainfall time series and then disaggregates them to a user-defined temporal resolution. The toolkit implements and integrates the approaches recently proposed by some of the authors, ensuring a realistic representation of rainfall dynamics while preserving key statistical properties. The framework is implemented through a set of Python and R routines designed to facilitate practical application. In addition to providing observed rainfall time series and the scaling exponent n (Intensity–Duration–Frequency slope), users can configure key modelling components, including the marginal distribution, autocorrelation structure, number of lags, and target temporal resolution. The routines generate both graphical and quantitative outputs, enabling direct comparison between observed and simulated series. Rather than introducing new stochastic rainfall methodologies, Virtual Rain provides the first publicly available implementation of an integrated workflow combining the CoSMoS-2s daily rainfall generator and the MRC rainfall disaggregation model within a unified software environment. Virtual Rain is demonstrated through a real-world case study, illustrating the functionality and usability of the implemented workflow. The toolkit is also available through an interactive web-based platform, facilitating its use by a broad range of users.

Geoscientific model developmentVol. 19(19)
Università degli Studi della Tuscia (IT)
Openalex Percentile: Top 24%
Hydrology and Watershed Management Studies
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