Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral

Detalhes bibliográficos
Autor(a) principal: Goés, Naila Cristina Kepp de
Data de Publicação: 2021
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações do UNIOESTE
Texto Completo: http://tede.unioeste.br/handle/tede/5628
Resumo: The consistency of an irrigation system's operation is closely related to its performance. Drip irrigation is the most appropriate system for saving water and energy, as well as the possibility of automation and fertigation, so the system must be evaluated on a regular basis. To achieve the best performance, some evaluation parameters, such as Christiansen's Uniformity Coefficient (CUC) and the Distribution Uniformity Coefficient (CUD), which express the variability of irrigation depth application, must be considered. Several factors influence the uniformity of water and fertilizer application, including the topography of the land, variations in fertilizer concentration, pH, and electrical conductivity of the solution to be applied. The use of statistical process control (SPQ) tools such as Shewhart Control Charts and Process Capability Index (PCI) allows for a more in-depth evaluation of these parameters. Thus, the aim of this work was to evaluate an irrigation system in a protected environment, in which the application of clean water (control treatment) and water with nitrogen solution (urea) in three concentrations (2 g L-1; 4 g) was evaluated L-1; 6 g L-1) at different slopes level (0%), acclivity (2%) and declivity (-2%), with a total of 25 trials for each treatment. Flow, pH, and electrical conductivity were the variables measured in the test. Christiansen Uniformity Coefficients (CUC) and Distribution Uniformity Coefficients (CUD) were calculated and compared using the collected samples, with the CUD being more sensitive to identifying the drop in uniformity with the increase in fertilizer concentration, demonstrating greater severity in the data analysis when verifying that the increase of the urea concentration in 6 g L-¹ affected the uniform distribution of the level system, with values for CUD<70%, observed in the Shewhart Control Chart. The increase in urea concentration in 6 g L-¹ influenced the increase in pH by presenting 7.75 above the predicted limits for irrigation, so the system could apply concentrations up to 2 g L-¹ in level when presenting Cpl = 2.86 for the Process Capability Index analysis.
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spelling Vilas Boas, Marcio Antoniohttp://lattes.cnpq.br/8467243260512730Vilas Boas, Marcio Antoniohttp://lattes.cnpq.br/8467243260512730Szekut, Flavio Danielhttp://lattes.cnpq.br/3208159470168824Andrade, Mauricio Guyhttp://lattes.cnpq.br/4821884579392567Lopes, Allan Remorhttp://lattes.cnpq.br/9045830146839730http://lattes.cnpq.br/0220183849679834Goés, Naila Cristina Kepp de2021-11-04T18:42:10Z2021-08-03GOÉS, Naila Cristina Kepp de. Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral. 2021. 42 f. Dissertação (Mestrado em Engenharia Agrícola) - Universidade Estadual do Oeste do Paraná, Cascavel - PR.http://tede.unioeste.br/handle/tede/5628The consistency of an irrigation system's operation is closely related to its performance. Drip irrigation is the most appropriate system for saving water and energy, as well as the possibility of automation and fertigation, so the system must be evaluated on a regular basis. To achieve the best performance, some evaluation parameters, such as Christiansen's Uniformity Coefficient (CUC) and the Distribution Uniformity Coefficient (CUD), which express the variability of irrigation depth application, must be considered. Several factors influence the uniformity of water and fertilizer application, including the topography of the land, variations in fertilizer concentration, pH, and electrical conductivity of the solution to be applied. The use of statistical process control (SPQ) tools such as Shewhart Control Charts and Process Capability Index (PCI) allows for a more in-depth evaluation of these parameters. Thus, the aim of this work was to evaluate an irrigation system in a protected environment, in which the application of clean water (control treatment) and water with nitrogen solution (urea) in three concentrations (2 g L-1; 4 g) was evaluated L-1; 6 g L-1) at different slopes level (0%), acclivity (2%) and declivity (-2%), with a total of 25 trials for each treatment. Flow, pH, and electrical conductivity were the variables measured in the test. Christiansen Uniformity Coefficients (CUC) and Distribution Uniformity Coefficients (CUD) were calculated and compared using the collected samples, with the CUD being more sensitive to identifying the drop in uniformity with the increase in fertilizer concentration, demonstrating greater severity in the data analysis when verifying that the increase of the urea concentration in 6 g L-¹ affected the uniform distribution of the level system, with values for CUD<70%, observed in the Shewhart Control Chart. The increase in urea concentration in 6 g L-¹ influenced the increase in pH by presenting 7.75 above the predicted limits for irrigation, so the system could apply concentrations up to 2 g L-¹ in level when presenting Cpl = 2.86 for the Process Capability Index analysis.O desempenho de um sistema de irrigação está diretamente ligado à uniformidade de operação. A irrigação por gotejamento é o sistema mais apropriado à economia de água e energia, possibilidade de automação e fertirrigação, portanto, é necessário que o sistema seja avaliado periodicamente. Alguns parâmetros de avaliação precisam ser considerados para a obtenção do melhor desempenho, como o Coeficiente de Uniformidade de Christiansen (CUC) e o Coeficiente de Uniformidade de Distribuição (CUD), que expressam a variabilidade de aplicação das lâminas de irrigação. Diversos fatores afetam a uniformidade de aplicação de água e fertilizante, dentre eles, a topografia do terreno, variação da concentração de fertilizante, pH e condutividade elétrica da solução a ser aplicada. A aplicação de ferramentas de controle estatístico de qualidade (CEP), como Gráficos de controle de Shewhart e Índice de Capacidade do Processo (CEP), permitem a avaliação detalhada desses parâmetros. Sendo assim, o trabalho teve por obtivo avaliar um sistema de irrigação em ambiente protegido, no qual foi avaliada a aplicação de água limpa (tratamento controle) e água com solução nitrogenada (ureia), em três concentrações (2 g L-1; 4 g L-1; 6 g L-1), em diferentes declividades nível (0%), aclive (2%) e declive (-2%), com total de 25 ensaios para cada tratamento. As variáveis obtidas no ensaio foram vazão, pH e condutividade elétrica. Com as amostras coletadas, foram calculados os Coeficientes de Uniformidade de Christiansen (CUC) e Coeficientes de uniformidade de Distribuição (CUD), os quais foram comparados, sendo o CUD mais sensível ao identificar a queda na uniformidade com o acréscimo da concentração de fertilizante, demonstrando maior severidade na análise dos dados, ao verificar que o aumento da concentração de ureia em 6 g L-¹ afetou a uniformidade de distribuição do sistema em nível, com valores para CUD<70%, observados no Gráfico de controle de Shewhart. O aumento da concentração de ureia em 6 g L-¹ influenciou o acréscimo do pH ao apresentar 7,75 acima dos limites previstos para irrigação, portanto, o sistema mostrou-se capaz de aplicar concentrações até 2 g L-¹ em nível ao apresentar Cpl = 2,86 pela análise do Índice de Capacidade do Processo.Submitted by Neusa Fagundes (neusa.fagundes@unioeste.br) on 2021-11-04T18:42:10Z No. of bitstreams: 2 Naila_Goés2021.pdf: 1180654 bytes, checksum: fd47eaec034ba811823f7034c16f55cd (MD5) license_rdf: 0 bytes, checksum: d41d8cd98f00b204e9800998ecf8427e (MD5)Made available in DSpace on 2021-11-04T18:42:10Z (GMT). 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dc.title.por.fl_str_mv Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral
dc.title.alternative.eng.fl_str_mv Statistical control of drip fertirrigation on the side line slope
title Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral
spellingShingle Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral
Goés, Naila Cristina Kepp de
Controle estatístico
Índice de capacidade do processo
CUD
CUC
Statistical control
Process capability index
CUD
CUC
Recursos Hídricos e Saneamento Ambiental
title_short Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral
title_full Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral
title_fullStr Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral
title_full_unstemmed Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral
title_sort Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral
author Goés, Naila Cristina Kepp de
author_facet Goés, Naila Cristina Kepp de
author_role author
dc.contributor.advisor1.fl_str_mv Vilas Boas, Marcio Antonio
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/8467243260512730
dc.contributor.referee1.fl_str_mv Vilas Boas, Marcio Antonio
dc.contributor.referee1Lattes.fl_str_mv http://lattes.cnpq.br/8467243260512730
dc.contributor.referee2.fl_str_mv Szekut, Flavio Daniel
dc.contributor.referee2Lattes.fl_str_mv http://lattes.cnpq.br/3208159470168824
dc.contributor.referee3.fl_str_mv Andrade, Mauricio Guy
dc.contributor.referee3Lattes.fl_str_mv http://lattes.cnpq.br/4821884579392567
dc.contributor.referee4.fl_str_mv Lopes, Allan Remor
dc.contributor.referee4Lattes.fl_str_mv http://lattes.cnpq.br/9045830146839730
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/0220183849679834
dc.contributor.author.fl_str_mv Goés, Naila Cristina Kepp de
contributor_str_mv Vilas Boas, Marcio Antonio
Vilas Boas, Marcio Antonio
Szekut, Flavio Daniel
Andrade, Mauricio Guy
Lopes, Allan Remor
dc.subject.por.fl_str_mv Controle estatístico
Índice de capacidade do processo
CUD
CUC
topic Controle estatístico
Índice de capacidade do processo
CUD
CUC
Statistical control
Process capability index
CUD
CUC
Recursos Hídricos e Saneamento Ambiental
dc.subject.eng.fl_str_mv Statistical control
Process capability index
CUD
CUC
dc.subject.cnpq.fl_str_mv Recursos Hídricos e Saneamento Ambiental
description The consistency of an irrigation system's operation is closely related to its performance. Drip irrigation is the most appropriate system for saving water and energy, as well as the possibility of automation and fertigation, so the system must be evaluated on a regular basis. To achieve the best performance, some evaluation parameters, such as Christiansen's Uniformity Coefficient (CUC) and the Distribution Uniformity Coefficient (CUD), which express the variability of irrigation depth application, must be considered. Several factors influence the uniformity of water and fertilizer application, including the topography of the land, variations in fertilizer concentration, pH, and electrical conductivity of the solution to be applied. The use of statistical process control (SPQ) tools such as Shewhart Control Charts and Process Capability Index (PCI) allows for a more in-depth evaluation of these parameters. Thus, the aim of this work was to evaluate an irrigation system in a protected environment, in which the application of clean water (control treatment) and water with nitrogen solution (urea) in three concentrations (2 g L-1; 4 g) was evaluated L-1; 6 g L-1) at different slopes level (0%), acclivity (2%) and declivity (-2%), with a total of 25 trials for each treatment. Flow, pH, and electrical conductivity were the variables measured in the test. Christiansen Uniformity Coefficients (CUC) and Distribution Uniformity Coefficients (CUD) were calculated and compared using the collected samples, with the CUD being more sensitive to identifying the drop in uniformity with the increase in fertilizer concentration, demonstrating greater severity in the data analysis when verifying that the increase of the urea concentration in 6 g L-¹ affected the uniform distribution of the level system, with values for CUD<70%, observed in the Shewhart Control Chart. The increase in urea concentration in 6 g L-¹ influenced the increase in pH by presenting 7.75 above the predicted limits for irrigation, so the system could apply concentrations up to 2 g L-¹ in level when presenting Cpl = 2.86 for the Process Capability Index analysis.
publishDate 2021
dc.date.accessioned.fl_str_mv 2021-11-04T18:42:10Z
dc.date.issued.fl_str_mv 2021-08-03
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
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dc.identifier.citation.fl_str_mv GOÉS, Naila Cristina Kepp de. Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral. 2021. 42 f. Dissertação (Mestrado em Engenharia Agrícola) - Universidade Estadual do Oeste do Paraná, Cascavel - PR.
dc.identifier.uri.fl_str_mv http://tede.unioeste.br/handle/tede/5628
identifier_str_mv GOÉS, Naila Cristina Kepp de. Controle estatístico da fertirrigação por gotejamento na declividade da linha lateral. 2021. 42 f. Dissertação (Mestrado em Engenharia Agrícola) - Universidade Estadual do Oeste do Paraná, Cascavel - PR.
url http://tede.unioeste.br/handle/tede/5628
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