Open-Source Design of Infiltration Trenches for Sustainable Soil and Water Conservation in Rural Areas of Central Chile

Author:

Pizarro Roberto123,Vidal-Silva Cristian4ORCID,Jaque Dayana1,Ibáñez Córdova Alfredo12,Sangüesa Claudia12ORCID,Toledo Cristóbal1,Garcia-Chevesich Pablo A.56ORCID

Affiliation:

1. UNESCO Chair Surface Hydrology, University of Talca, Talca 3467769, Chile

2. Centro Nacional de Excelencia para la Industria de la Madera (CENAMAD), Pontificia Universidad Católica de Chile, Santiago 7810128, Chile

3. Facultad de Ciencias Forestales y de la Conservación de la Naturaleza, Universidad de Chile, Santiago 8820808, Chile

4. School of Videogame Development and Virtual Reality Engineering, Faculty of Engineering, University of Talca, Campus Talca, Talca 3480260, Chile

5. Department of Civil and Environmental Engineering, Colorado School of Mines, Golden, CO 80401, USA

6. Intergovernmental Hydrological Program, United Nations Educational, Scientific and Cultural Organization, Montevideo 11200, Uruguay

Abstract

Specific algorithms are developed to solve the equations that define the physical dimensions under various conditions. In this sense, the storm index method was incorporated for the variable precipitation intensity, expanding the number of rainfall stations with the intensity duration frequency (IDF) curves from 9 to 31 within the considered territory (the Biobio Region of Central Chile). Likewise, the infiltration values and runoff coefficients necessary for calculating the dimensions of the trenches were obtained using the Python programming language. The results show that an open-source Python solution allows high reliability and efficiency based on the tests developed. For this reason, this prototype is expected to add new mathematical expressions that may arise to better account for an efficient design of soil and water conservation works or infiltration trenches. In this way, it is concluded that it is possible to develop simulation models for the efficient design of trenches based on well-defined and limited theoretical modeling, adding to computer language tools. This allows for a virtuous synergy that can help address efficient public policies to conserve soil and water in Chile and elsewhere.

Publisher

MDPI AG

Reference65 articles.

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2. Soil Resource, a Pending Regulatory Debt in Chile;Aguirre;Soil Secur.,2023

3. Evaluación de La Erosión Hídrica Superficial En Zonas Áridas y Semiáridas de Chile Central;Pizarro;Aqua-LAC,2010

4. Oficina de Estudios y Políticas Agrarias (ODEPA) Programa de suelos: SIRSD-S (2020). ODEPA|Oficina de Estudios y Políticas Agrarias, Oficina de Estudios y Políticas Agrarias.

5. Ministerio de Agricultura-Corporación Nacional Forestal, and Ministerio del Medio Ambiente (2021). Plan Nacional de Restauración de Paisajes 2021–2030, Ministerio del Medio Ambiente.

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