2025-04-302025-04-302025-03-27SANTOS, João Guilherme Silva Ribeiro dos; LEAL, Sávio Cardoso de Souza. Desenvolvimento de ferramentas automatizadas em Python para otimização de processos no QGIS com interface ao aplicativo Sea-geoamazonia. Orientador: Marcelo Augusto Machado Vasconcelos. 2025. 76 f. Trabalho de Curso (Tecnólogo em Geoprocessamento) – Faculdade de Tecnologia em Geoprocessamento, Campus Universitário de Ananindeua, Universidade Federal do Pará, Ananindeua, 2025. Disponível em: https://bdm.ufpa.br/handle/prefix/8054. Acesso em:.https://bdm.ufpa.br/handle/prefix/8054This Final Paper presents the creation and implementation of an automated methodology in QGIS software, designed for regressive and geospatial analyses, focusing on the conversion of geometries to the SIRGAS 2000/UTM coordinate system and the development of standardized layouts for thematic mapping. The study proposes practical solutions to automate spatial analysis processes, such as calculating areas and perimeters, accurately converting to UTM zones, and adapting thematic symbologies in geographic layers. A script-based approach using Python integrated into QGIS was adopted, emphasizing the optimization of cartographic layout customization and the generation of detailed reports based on layer attributes. The methodology was applied to a real dataset, allowing for an evaluation of the generated results and the validation of the developed tools. The system was implemented with an interface in SEA-GEOAMAZONIA, enabling the integration and spatial analysis of large-scale geographic data. This integration improved the efficiency of territorial data processing and the standardization of cartographic layouts. As a result, a system was developed that facilitates the creation of highly accurate maps and efficient spatial data analysis, adhering to cartographic standards and users' customization needs. The conclusions indicate that the development of automated tools in GIS environments can reduce the execution time of complex tasks, increase result accuracy, and provide clearer support for decision-making in geospatial projects.Acesso AbertoAutomaçãoGeoprocessamentoAnálise espacialSea-geoamazoniaAutomationGeoprocessingSpatial analysisCNPQ::CIENCIAS EXATAS E DA TERRA::CIENCIA DA COMPUTACAO::METODOLOGIA E TECNICAS DA COMPUTACAODesenvolvimento de ferramentas automatizadas em Python para otimização de processos no QGIS com interface ao aplicativo Sea-geoamazoniaTrabalho de Curso - Graduação - Monografia