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Article

Spatial Heterogeneity of Drop Size Distribution and Its Implications for the Z-R Relationship in Mexico City

by
Roberta Karinne Mocva-Kurek
1,
Adrián Pedrozo-Acuña
2,* and
Miguel Angel Rico-Ramírez
3
1
Program of Master and Doctorate in Engineering, National Autonomous University of Mexico (UNAM), Mexico City 04510, Mexico
2
Institute of Engineering, National Autonomous University of Mexico (UNAM), Mexico City 04510, Mexico
3
School of Civil, Aerospace and Design Engineering, University of Bristol, Bristol BS8 1TR, UK
*
Author to whom correspondence should be addressed.
Atmosphere 2025, 16(5), 585; https://doi.org/10.3390/atmos16050585
Submission received: 2 April 2025 / Revised: 30 April 2025 / Accepted: 9 May 2025 / Published: 13 May 2025
(This article belongs to the Section Meteorology)

Abstract

The evaluation of raindrop size distribution (DSD) is a crucial subject in radar meteorology, as it determines the relationship between radar reflectivity (Z) and rainfall rate (R). The coefficients (a and b) of the Z-R relationship vary significantly due to several factors (e.g., climate and rainfall intensity), rendering the characterization of local DSD essential for improving radar quantitative precipitation estimation. This study used a unique network of 21 disdrometers with high spatio-temporal resolution in Mexico City to investigate changes in the local drop size distribution (DSD) resulting from seasonal fluctuations, rain rates, and topographical regions (flat urban and mountainous). The results indicate that the DSD modeling utilizing the normalized gamma distribution provides an adequate fit in Mexico City, regardless of geographical location and season. Regional variation in DSD’s slope, shape, and parameters was detected in flat urban and mountainous areas, indicating that distinct precipitation mechanisms govern rainfall in each season. Severe rain intensities (R > 20 mm/h) exhibited a more uniform and flatter DSD shape, accompanied by increased dispersion of DSD parameter values among disdrometer locations, particularly for intensities exceeding R > 60 mm/h. The coefficients a and b of the Z-R relationship exhibit significant geographic variability, dependent on the city’s topographic gradient, underscoring the necessity for regionalization of both coefficients within the metropolis.
Keywords: rainfall; drop size distribution; disdrometer; spatial variability; reflectivity; rain rate rainfall; drop size distribution; disdrometer; spatial variability; reflectivity; rain rate

Share and Cite

MDPI and ACS Style

Mocva-Kurek, R.K.; Pedrozo-Acuña, A.; Rico-Ramírez, M.A. Spatial Heterogeneity of Drop Size Distribution and Its Implications for the Z-R Relationship in Mexico City. Atmosphere 2025, 16, 585. https://doi.org/10.3390/atmos16050585

AMA Style

Mocva-Kurek RK, Pedrozo-Acuña A, Rico-Ramírez MA. Spatial Heterogeneity of Drop Size Distribution and Its Implications for the Z-R Relationship in Mexico City. Atmosphere. 2025; 16(5):585. https://doi.org/10.3390/atmos16050585

Chicago/Turabian Style

Mocva-Kurek, Roberta Karinne, Adrián Pedrozo-Acuña, and Miguel Angel Rico-Ramírez. 2025. "Spatial Heterogeneity of Drop Size Distribution and Its Implications for the Z-R Relationship in Mexico City" Atmosphere 16, no. 5: 585. https://doi.org/10.3390/atmos16050585

APA Style

Mocva-Kurek, R. K., Pedrozo-Acuña, A., & Rico-Ramírez, M. A. (2025). Spatial Heterogeneity of Drop Size Distribution and Its Implications for the Z-R Relationship in Mexico City. Atmosphere, 16(5), 585. https://doi.org/10.3390/atmos16050585

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