Estudo das distribuições diametricas da floresta do planalto Tapajos-Para

Detalhes bibliográficos
Autor(a) principal: Barros, Paulo Luiz Contente de, 1952-
Data de Publicação: 2013
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Repositório Institucional da UFPR
Texto Completo: http://hdl.handle.net/1884/25616
Resumo: Abstract: The objectives of this research were to test several mathematical models which express the diameter distribution, as well as to verify the influence of the diameter class interval in the fitness of the tested models. The models we re applied individually for: all species in the area, for the most frequent and the commercial species. The data for this research carne from the National Forest of Tapajós, located in the county of Santarem, state of Para, Brazil. A total number of li.i73 trees with diameter breast height above 15 centimeters, and totalling 167 species were measured. The following mathematical models were tested to describe the diameter distribution of the area: MODEL 1: Exponential, type I yi = A . e -BXi MODEL 2: Exponential, type II yi = A . e -BX²i MODEL 3: Power function, MERVART yi = A . e Xi-B MODEL 4: Hyperbola, PIERLOT yi = [(xi - x0) / (10A+BXi - 1)] + y0 MODELO 5: Polynomial, Goff & West log y = b0 + b1Xi + b2Xi2 + … + bnXin MODELO 6: Weibull function F (X) = 1 - exp {-(X/b)C} MODELO 7: Beta function F (X) = c (X-a)a . (b-X)? The sum of squares of residuals was used as a criterium to select the equations by group of species, and by class intervals. The probability associated with the number of runs of residuals, which gives the probability that the observed number of signs changes in the plot of residuals occurred randomly, was also used. Following these criteria, among the seven tested models, to represent the relationship of the number of trees by 1OO ha on diameter classes, the Beta function, the polynomial and the exponential models presented the best results in fitting such relationship. The Weibull function also seems to estimate very well the percentages of the number of trees smaller or equal to a specified diameter of the stand. In comparing class intervals the models in general presented the best results for the class interval of 1O cm, the precisson of the equations decreased with the decreased sing of the class intervals.
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spelling Barros, Paulo Luiz Contente de, 1952-Universidade Federal do Paraná. Setor de Ciencias Agrárias. Programa de Pós-Graduaçao em Engenharia Florestal2013-05-27T17:26:16Z2013-05-27T17:26:16Z2013-05-27http://hdl.handle.net/1884/25616Abstract: The objectives of this research were to test several mathematical models which express the diameter distribution, as well as to verify the influence of the diameter class interval in the fitness of the tested models. The models we re applied individually for: all species in the area, for the most frequent and the commercial species. The data for this research carne from the National Forest of Tapajós, located in the county of Santarem, state of Para, Brazil. A total number of li.i73 trees with diameter breast height above 15 centimeters, and totalling 167 species were measured. The following mathematical models were tested to describe the diameter distribution of the area: MODEL 1: Exponential, type I yi = A . e -BXi MODEL 2: Exponential, type II yi = A . e -BX²i MODEL 3: Power function, MERVART yi = A . e Xi-B MODEL 4: Hyperbola, PIERLOT yi = [(xi - x0) / (10A+BXi - 1)] + y0 MODELO 5: Polynomial, Goff & West log y = b0 + b1Xi + b2Xi2 + … + bnXin MODELO 6: Weibull function F (X) = 1 - exp {-(X/b)C} MODELO 7: Beta function F (X) = c (X-a)a . (b-X)? The sum of squares of residuals was used as a criterium to select the equations by group of species, and by class intervals. The probability associated with the number of runs of residuals, which gives the probability that the observed number of signs changes in the plot of residuals occurred randomly, was also used. Following these criteria, among the seven tested models, to represent the relationship of the number of trees by 1OO ha on diameter classes, the Beta function, the polynomial and the exponential models presented the best results in fitting such relationship. The Weibull function also seems to estimate very well the percentages of the number of trees smaller or equal to a specified diameter of the stand. In comparing class intervals the models in general presented the best results for the class interval of 1O cm, the precisson of the equations decreased with the decreased sing of the class intervals.application/pdf[s.n.]Florestas - Amazônia (BR)Levantamentos florestaisFlorestas - Medição - Amazônia (BR)Mapeamento florestalSilvicultura - Amazônia (BR)TesesEstudo das distribuições diametricas da floresta do planalto Tapajos-Parainfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesisporreponame:Repositório Institucional da UFPRinstname:Universidade Federal do Paraná (UFPR)instacron:UFPRinfo:eu-repo/semantics/openAccessORIGINALD - BARROS, PAULO LUIZ CONTENTE DE.pdfapplication/pdf3325586https://acervodigital.ufpr.br/bitstream/1884/25616/1/D%20-%20BARROS%2c%20PAULO%20LUIZ%20CONTENTE%20DE.pdf785b82cc6fc6948e30043dca03b142b7MD51open accessTEXTD - BARROS, PAULO LUIZ CONTENTE DE.pdf.txtD - BARROS, PAULO LUIZ CONTENTE DE.pdf.txtExtracted Texttext/plain153237https://acervodigital.ufpr.br/bitstream/1884/25616/2/D%20-%20BARROS%2c%20PAULO%20LUIZ%20CONTENTE%20DE.pdf.txt20520486f4c667563d506311293226beMD52open accessTHUMBNAILD - BARROS, PAULO LUIZ CONTENTE DE.pdf.jpgD - BARROS, PAULO LUIZ CONTENTE DE.pdf.jpgGenerated Thumbnailimage/jpeg1178https://acervodigital.ufpr.br/bitstream/1884/25616/3/D%20-%20BARROS%2c%20PAULO%20LUIZ%20CONTENTE%20DE.pdf.jpgedffec3d44cf5a453bc40e03321eececMD53open access1884/256162016-04-08 03:15:12.969open accessoai:acervodigital.ufpr.br:1884/25616Repositório de PublicaçõesPUBhttp://acervodigital.ufpr.br/oai/requestopendoar:3082016-04-08T06:15:12Repositório Institucional da UFPR - Universidade Federal do Paraná (UFPR)false
dc.title.pt_BR.fl_str_mv Estudo das distribuições diametricas da floresta do planalto Tapajos-Para
title Estudo das distribuições diametricas da floresta do planalto Tapajos-Para
spellingShingle Estudo das distribuições diametricas da floresta do planalto Tapajos-Para
Barros, Paulo Luiz Contente de, 1952-
Florestas - Amazônia (BR)
Levantamentos florestais
Florestas - Medição - Amazônia (BR)
Mapeamento florestal
Silvicultura - Amazônia (BR)
Teses
title_short Estudo das distribuições diametricas da floresta do planalto Tapajos-Para
title_full Estudo das distribuições diametricas da floresta do planalto Tapajos-Para
title_fullStr Estudo das distribuições diametricas da floresta do planalto Tapajos-Para
title_full_unstemmed Estudo das distribuições diametricas da floresta do planalto Tapajos-Para
title_sort Estudo das distribuições diametricas da floresta do planalto Tapajos-Para
author Barros, Paulo Luiz Contente de, 1952-
author_facet Barros, Paulo Luiz Contente de, 1952-
author_role author
dc.contributor.other.pt_BR.fl_str_mv Universidade Federal do Paraná. Setor de Ciencias Agrárias. Programa de Pós-Graduaçao em Engenharia Florestal
dc.contributor.author.fl_str_mv Barros, Paulo Luiz Contente de, 1952-
dc.subject.por.fl_str_mv Florestas - Amazônia (BR)
Levantamentos florestais
Florestas - Medição - Amazônia (BR)
Mapeamento florestal
Silvicultura - Amazônia (BR)
Teses
topic Florestas - Amazônia (BR)
Levantamentos florestais
Florestas - Medição - Amazônia (BR)
Mapeamento florestal
Silvicultura - Amazônia (BR)
Teses
description Abstract: The objectives of this research were to test several mathematical models which express the diameter distribution, as well as to verify the influence of the diameter class interval in the fitness of the tested models. The models we re applied individually for: all species in the area, for the most frequent and the commercial species. The data for this research carne from the National Forest of Tapajós, located in the county of Santarem, state of Para, Brazil. A total number of li.i73 trees with diameter breast height above 15 centimeters, and totalling 167 species were measured. The following mathematical models were tested to describe the diameter distribution of the area: MODEL 1: Exponential, type I yi = A . e -BXi MODEL 2: Exponential, type II yi = A . e -BX²i MODEL 3: Power function, MERVART yi = A . e Xi-B MODEL 4: Hyperbola, PIERLOT yi = [(xi - x0) / (10A+BXi - 1)] + y0 MODELO 5: Polynomial, Goff & West log y = b0 + b1Xi + b2Xi2 + … + bnXin MODELO 6: Weibull function F (X) = 1 - exp {-(X/b)C} MODELO 7: Beta function F (X) = c (X-a)a . (b-X)? The sum of squares of residuals was used as a criterium to select the equations by group of species, and by class intervals. The probability associated with the number of runs of residuals, which gives the probability that the observed number of signs changes in the plot of residuals occurred randomly, was also used. Following these criteria, among the seven tested models, to represent the relationship of the number of trees by 1OO ha on diameter classes, the Beta function, the polynomial and the exponential models presented the best results in fitting such relationship. The Weibull function also seems to estimate very well the percentages of the number of trees smaller or equal to a specified diameter of the stand. In comparing class intervals the models in general presented the best results for the class interval of 1O cm, the precisson of the equations decreased with the decreased sing of the class intervals.
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dc.date.accessioned.fl_str_mv 2013-05-27T17:26:16Z
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