New Water and Biotic Quality Assessment Indices for a tropical reservoir based on fuzzy logic

  • Andres Paladines Andrade Departamento de Energia Elétrica. Centro Técnico Científico. Pontifícia Universidade Católica do Rio de Janeiro (PUC-Rio), Rua Marquês de São Vicente, n° 225, CEP: 22451-900, Gávea, RJ, Brazil.
  • Marley Vellasco Departamento de Energia Elétrica. Centro Técnico Científico. Pontifícia Universidade Católica do Rio de Janeiro (PUC-Rio), Rua Marquês de São Vicente, n° 225, CEP: 22451-900, Gávea, RJ, Brazil.
  • Karla Figueiredo Departamento de Ciência da Computação. Instituto de Matemática e Estatística. Universidade do Estado do Rio de Janeiro (UERJ), Rua São Francisco Xavier, n° 524, CEP: 20550-900, Maracanã, RJ, Brazil.
  • Francisco Gerson Araújo Departamento de Biologia Animal. Laboratório de Ecologia de Peixes. Universidade Federal Rural do Rio de Janeiro (UFRRJ), BR 465, km 7, CEP: 23897-030, Seropédica, RJ, Brazil.
  • Christina Wyss Castelo Branco Departamento de Zoologia. Instituto de Biociências. Universidade Federal do Estado do Rio de Janeiro (UNIRIO), Avenida Pasteur, n° 458, CEP: 22290-240, Rio de Janeiro, RJ, Brazil.
Keywords: environmental index, fuzzy inference system, FUZZY-WBQAI model, hydropower reservoir, tropical reservoir, water quality index.

Abstract

The complexity of evaluating the quality of an aquatic environment with its numerous variables has resulted in several quality indexes to synthesize all information in a single value. However, most of these indexes are based on few environmental variables, losing information from other relevant variables. This article presents a new model capable of representing the quality level of a tropical oligo-mesotrophic reservoir on a numerical scale, considering the subjectivity implicit in the concept of quality, and involving several physical, chemical and biological variables. The proposed model, called "Fuzzy Indices for Water Quality Assessment and Biotics" (FUZZY-WBQAI), is based on fuzzy inference systems, providing a way to deal with the uncertainty between the quality categories. A computational tool was developed, which automatically assesses the quality of water, considering different methodologies that depend on the stratification conditions and the longitudinal zone of the reservoir. The model calculates two indices: one for water quality and one biotic that uses metrics from the fish assembly. The model was effective in revealing the decrease in water quality in summer months with higher temperature and precipitation. The effect of the mixture of the stratified reservoir in winter in decreasing the water quality in an area of fish cultivation was highlighted. The biotic index was sensitive to spatial changes in the environmental quality of the reservoir. The results were considered satisfactory, in agreement with the specialized knowledge, and can provide a rapid diagnosis of water conditions in oligo-mesotrophic reservoirs in the tropics.


Published
14/09/2020
Section
Papers