Evaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- Colombia

In the past years, the landslides have been caused the natural threat as a greatest damage, victims and loss of human life in Manizales; after rains in the city for many days in a row or due to the occurrence of high intensity rains in a very short period of time. Due to the fact there are riverbed...

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Autores:
Mesa Gonzalez, Julian David
Tipo de recurso:
Fecha de publicación:
2019
Institución:
Escuela Colombiana de Ingeniería Julio Garavito
Repositorio:
Repositorio Institucional ECI
Idioma:
spa
OAI Identifier:
oai:repositorio.escuelaing.edu.co:001/1180
Acceso en línea:
https://catalogo.escuelaing.edu.co/cgi-bin/koha/opac-detail.pl?biblionumber=22372
https://repositorio.escuelaing.edu.co/handle/001/1180
Palabra clave:
Amenaza
Detonante
deslizamiento- Manizales
lluvia
Threat
trigger,
landslide, Manizales.
Rain
Rights
openAccess
License
Derechos Reservados - Escuela Colombiana de Ingeniería Julio Garavito
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dc.title.spa.fl_str_mv Evaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- Colombia
title Evaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- Colombia
spellingShingle Evaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- Colombia
Amenaza
Detonante
deslizamiento- Manizales
lluvia
Threat
trigger,
landslide, Manizales.
Rain
title_short Evaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- Colombia
title_full Evaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- Colombia
title_fullStr Evaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- Colombia
title_full_unstemmed Evaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- Colombia
title_sort Evaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- Colombia
dc.creator.fl_str_mv Mesa Gonzalez, Julian David
dc.contributor.advisor.spa.fl_str_mv Rodríguez Pineda, Carlos Eduardo (dir )
dc.contributor.author.spa.fl_str_mv Mesa Gonzalez, Julian David
dc.subject.spa.fl_str_mv Amenaza
Detonante
deslizamiento- Manizales
lluvia
topic Amenaza
Detonante
deslizamiento- Manizales
lluvia
Threat
trigger,
landslide, Manizales.
Rain
dc.subject.keywords.spa.fl_str_mv Threat
trigger,
landslide, Manizales.
Rain
description In the past years, the landslides have been caused the natural threat as a greatest damage, victims and loss of human life in Manizales; after rains in the city for many days in a row or due to the occurrence of high intensity rains in a very short period of time. Due to the fact there are riverbed fillings in the city were built in the 60s and 80s, on which neighborhoods are currently settled, twelve were located on the northern slope of the Chinchiná river; the present study was conducted with the purpose of evaluating the landslide threat condition presented by these fills, considering the factors that detonating precipitation and earthquakes. Manizales Municipality has the 2017-2031 territorial Arrangement Planning (TAP), in which a landslide threat map is exposed by the urban area of the city. But, consulting different sources, no specific studies were found evaluating the landslide threat for anthropogenic landfills in the city; this is why this study arises. It should be noted the development of this thesis began before the preparation of the current (TAP) for the city. Twelve anthropic riverbed fillings were located on the northern slope of Chinchiná River; the geometries were elaborated, based on cartography of the 60s and 2004 obtained from plates from the Geographical Institute Agustín Codazzi (IGAC). These fillings are made up of two stratums, anthropic materials and the Casabianca Formation, to which their physical, mechanical and hydraulic properties were assigned to characterize them. Based on the historical rainfall records of the El Carmen, Hospital and Agronomy rainfall stations, intensity values (mm / day) were projected and calculated for return periods (Tr) of 2.33, 10, 50, 100, 250 years. These values were used to define the infiltration rate, which would be entered into each of the landfills as a detonating for rain. The calculation of this infiltration rate (mm / day) shown in section 4.5.1. The detonating earthquake was included in the stability analysis of the 12 fills, as a peak seismic acceleration for certain return periods, Tr: 31 years, 225 years and 475 years. Later, 720 analysis scenarios were generated, 60 per fill, resulting from the different combinations of return periods Tr of the earthquake and rain detonating and mechanical properties of the fill stratum. Next, the stability analysis of each scenario was run using the slide software, to know the value of the safety factor SF of each filling. Knowing the result of the safety factor (SF) of each scenario per fill, the probability of failure was calculated and the landslide threat assessment was performed. This analysis considered the uncertainty in the parameters of soil resistance, cohesion and friction angle of the anthropic fill stratum, and the probability of occurrence of the detonating factors, rain and earthquake. The objective of this thesis was to establish the level of landslide threat for anthropic fills in Manizales-Colombia, however considering the results obtained, despite obtaining the probability of failure, it was not possible to generate threat curves, given that the results showed that the probability of failure of the 12 fillings studied was zero or too close to zero. Their probabilities of total failure were less than 0.0016.
publishDate 2019
dc.date.issued.spa.fl_str_mv 2019-12-23
dc.date.accessioned.spa.fl_str_mv 2020-06-11T22:17:13Z
dc.date.available.spa.fl_str_mv 2020-06-11T22:17:13Z
dc.date.accessioned.none.fl_str_mv 2021-10-01T15:28:17Z
dc.date.available.none.fl_str_mv 2021-10-01T15:28:17Z
dc.type.spa.fl_str_mv Trabajo de grado - Maestría
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spelling Rodríguez Pineda, Carlos Eduardo (dir )958485a3174e1c795b7d76ac3647ce7a300Mesa Gonzalez, Julian David96636c60a0abc09fe01601bd934526d06002020-06-11T22:17:13Z2021-10-01T15:28:17Z2020-06-11T22:17:13Z2021-10-01T15:28:17Z2019-12-23https://catalogo.escuelaing.edu.co/cgi-bin/koha/opac-detail.pl?biblionumber=22372https://repositorio.escuelaing.edu.co/handle/001/1180In the past years, the landslides have been caused the natural threat as a greatest damage, victims and loss of human life in Manizales; after rains in the city for many days in a row or due to the occurrence of high intensity rains in a very short period of time. Due to the fact there are riverbed fillings in the city were built in the 60s and 80s, on which neighborhoods are currently settled, twelve were located on the northern slope of the Chinchiná river; the present study was conducted with the purpose of evaluating the landslide threat condition presented by these fills, considering the factors that detonating precipitation and earthquakes. Manizales Municipality has the 2017-2031 territorial Arrangement Planning (TAP), in which a landslide threat map is exposed by the urban area of the city. But, consulting different sources, no specific studies were found evaluating the landslide threat for anthropogenic landfills in the city; this is why this study arises. It should be noted the development of this thesis began before the preparation of the current (TAP) for the city. Twelve anthropic riverbed fillings were located on the northern slope of Chinchiná River; the geometries were elaborated, based on cartography of the 60s and 2004 obtained from plates from the Geographical Institute Agustín Codazzi (IGAC). These fillings are made up of two stratums, anthropic materials and the Casabianca Formation, to which their physical, mechanical and hydraulic properties were assigned to characterize them. Based on the historical rainfall records of the El Carmen, Hospital and Agronomy rainfall stations, intensity values (mm / day) were projected and calculated for return periods (Tr) of 2.33, 10, 50, 100, 250 years. These values were used to define the infiltration rate, which would be entered into each of the landfills as a detonating for rain. The calculation of this infiltration rate (mm / day) shown in section 4.5.1. The detonating earthquake was included in the stability analysis of the 12 fills, as a peak seismic acceleration for certain return periods, Tr: 31 years, 225 years and 475 years. Later, 720 analysis scenarios were generated, 60 per fill, resulting from the different combinations of return periods Tr of the earthquake and rain detonating and mechanical properties of the fill stratum. Next, the stability analysis of each scenario was run using the slide software, to know the value of the safety factor SF of each filling. Knowing the result of the safety factor (SF) of each scenario per fill, the probability of failure was calculated and the landslide threat assessment was performed. This analysis considered the uncertainty in the parameters of soil resistance, cohesion and friction angle of the anthropic fill stratum, and the probability of occurrence of the detonating factors, rain and earthquake. The objective of this thesis was to establish the level of landslide threat for anthropic fills in Manizales-Colombia, however considering the results obtained, despite obtaining the probability of failure, it was not possible to generate threat curves, given that the results showed that the probability of failure of the 12 fillings studied was zero or too close to zero. Their probabilities of total failure were less than 0.0016.En los últimos años la amenaza natural que ha causado mayores daños, damnificados y pérdidas de vidas humanas en la ciudad de Manizales han sido los deslizamientos de tierra. Estos se han generado luego de presentarse lluvias en la ciudad durante muchos días seguidos o debido a la ocurrencia de lluvias de alta intensidad en periodo de tiempo muy corto. Debido a que en la ciudad existen rellenos de cauce que se construyeron entre los años 1960 a 1980, sobre los cuales en la actualidad están asentados barrios, de los cuales se localizaron doce en la vertiente norte del Rio Chinchiná, se realizó el presente estudio con el propósito de evaluar la condición de amenaza por deslizamiento que presentan estos rellenos, considerando los factores detonantes precipitaciones y sismos. El Municipio de Manizales cuenta con el Plan de Ordenamiento Territorial 2017-2031, en el cual se expone un mapa de amenaza por deslizamiento para el área urbana de la ciudad. Sin embargo, consultando las diferentes fuentes, no se encontraron estudios puntuales donde se evaluara la amenaza por deslizamiento para rellenos antrópicos en la ciudad; por esto surge este estudio. Cabe anotar que el desarrollo de esta tesis inició antes de la elaboración del POT vigente para Manizales. Se localizaron 12 rellenos antrópicos de cauce en la vertiente norte del Rio Chinchiná; se elaboraron los geométricos correspondientes, basados en cartografía de los años 1960 y 2004 obtenida de planchas del Instituto Geográfico Agustín Codazzi (IGAC). Dichos rellenos se componen de dos estratos, materiales antrópicos y Formación Casabianca, a los cuales se les asignaron sus propiedades físicas, mecánicas e hidráulicas con el fin de caracterizarlos. Con base en los registros históricos de precipitaciones de las estaciones pluviométricas El Carmen, Hospital y Agronomía, se proyectaron y calcularon unos valores de intensidad (mm/día) para periodos de retorno (Tr) de 2.33, 10, 50, 100, 250 años. Dichos valores se utilizaron para definir la tasa de infiltración, que se le ingresarían a cada uno de los rellenos como detonante lluvia. El detonante sismo se incluyó en el análisis de estabilidad de los 12 rellenos, como una aceleración sísmica pico para unos periodos de retorno determinados, Tr: 31 años, 225 años y 475 años. Posteriormente se generaron 720 escenarios de análisis, 60 por relleno, resultantes de las diferentes combinaciones de periodos de retorno Tr de los detonantes sismo y lluvia y propiedades mecánicas del estrato de relleno. Luego se corrió el análisis de estabilidad de cada escenario por medio del software slide, con el fin de conocer el valor del factor de seguridad FS de cada relleno. Conocido el resultado del factor de seguridad (FS) de cada escenario por relleno, se calculó la probabilidad de falla respectivamente y se realizó la evaluación de amenaza por deslizamiento. Este análisis consideró la incertidumbre en los parámetros de resistencia del suelo, cohesión y ángulo de fricción del estrato de relleno antrópico, y la probabilidad de ocurrencia de los factores detonantes, lluvia y sismo. El objetivo de esta tesis fue establecer el nivel de amenaza por deslizamiento para rellenos antrópicos en la Ciudad de Manizales-Colombia, sin embargo considerando los resultados obtenidos, a pesar de obtener las probabilidad de falla, no fue posible generar curvas de amenaza, dado que los resultados mostraron que la probabilidad de falla de los 12 rellenos estudiados dio cero o demasiado cercana a cero. Sus probabilidades de falla total fueron menores a 0.0016.MaestríaMagíster en Ingeniería Civil con Énfasis en Geotecniaapplication/pdfspaEscuela Colombiana de IngenieríaMaestría en Ingeniería Civil con Énfasis en GeotecniaDerechos Reservados - Escuela Colombiana de Ingeniería Julio Garavitohttps://creativecommons.org/licenses/by-nc/4.0/info:eu-repo/semantics/openAccessAtribución-NoComercial 4.0 Internacional (CC BY-NC 4.0)http://purl.org/coar/access_right/c_abf2AmenazaDetonantedeslizamiento- ManizaleslluviaThreattrigger,landslide, Manizales.RainEvaluación de amenaza por deslizamiento para rellenos antrópicos en la ciudad de Manizales- ColombiaTrabajo de grado - Maestríainfo:eu-repo/semantics/publishedVersionTextinfo:eu-repo/semantics/masterThesishttp://purl.org/redcol/resource_type/TMhttp://purl.org/coar/version/c_970fb48d4fbd8a85ORIGINALMesa Gonzalez, Julian 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Garavitorepositorio.eci@escuelaing.edu.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