Improving a Rainfall Simulator considering the uniformity coefficient as a key parameter

Autores/as

  • Eli Daniel Beltran Ccanto Universidad Nacional De Ingeniería - (Pe), Perú
  • Ada Liz Arancibia Samaniego Universidad Nacional De Ingeniería - (Pe), Perú
  • Miguel Angel Zubiaur Alejos Universidad Nacional De Ingeniería - (Pe), Perú

DOI:

https://doi.org/10.18687/LACCEI2025.1.1.1516

Palabras clave:

Rainfall simulator, uniformity coefficient, Design, Elevation indicator, Spatial indicator

Resumen

Rainfall simulators are fundamental tools in storm analysis under the concept of physical modeling in a defined controlled space. This article addresses the improvement of a rainfall simulator according to the uniformity coefficient criterion. Based on this, improvements were proposed for the rain simulator at the National Hydraulics Laboratory (Peru) used for storm studies. Two testing phases were evaluated. First, the flow distribution by sprinkling from a nozzle over a 17.71 m² surface was assessed, considering three different heights above this area (2.5 m, 2 m, and 1.5 m). Then, the uniformity coefficient was analyzed for each test to estimate the nozzle spacing, which was determined to be 1.2 m. The second phase involved assembling a Fulljet 1/4HH-14WSQ nozzle grid with the calculated spacing and evaluating the uniformity of the spray flow generated for the three heights tested in the first phase. The results show an 8% increase in the uniformity coefficient compared to the rain simulator with 1.5 m spacing in the laboratory. The height range that produces a uniformity coefficient greater than 75% is between 2 m and 2.5 m above the study surface.

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Publicado

2025-07-27

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Articles

Cómo citar

Beltran Ccanto, E. D., Arancibia Samaniego, A. L., & Zubiaur Alejos, M. A. (2025). Improving a Rainfall Simulator considering the uniformity coefficient as a key parameter. LACCEI, 1(12). https://doi.org/10.18687/LACCEI2025.1.1.1516