Análisis de residuos de construcción y demolición pétreos como aditivo para el mejoramiento de vías terciarias en Piedecuesta, Santander
dc.contributor.advisor | Moreno Yañez, Paalo Andrea | |
dc.contributor.author | Castellanos Domínguez, Cesmar Steven | |
dc.coverage.campus | CRAI-USTA Bucaramanga | spa |
dc.date.accessioned | 2021-09-20T20:35:48Z | |
dc.date.available | 2021-09-20T20:35:48Z | |
dc.date.issued | 2021-09-20 | |
dc.description | El aumento en la producción de RCD sin la adecuada gestión y el mal estado de vías terciarias sin pavimentación fueron las razones para desarrollar el análisis de Residuos de Construcción y Demolición pétreos como aditivo para mejoramiento de subrasante en vías terciarias del municipio de Piedecuesta. Para esto se identifico la producción de RCD pétreos en el AMB, con 131.660 Ton/año, los principales RCD usados (ladrillo y el hormigón) en investigaciones previas sobre RCD pétreo para mejoramiento del suelo. Por medio de esto se generaron recomendaciones de tipo espesor de capa, porcentaje de RCD y tamaño de partícula para el uso los RCD pétreos en el suelo predominante de arena limosa encontrado para el municipio de Piedecuesta. | spa |
dc.description.abstract | The increase in the production of CDW without proper management and the poor condition of unpaved tertiary roads were the reasons for developing the analysis of Construction and Demolition Waste petrous as an additive for subgrade improvement in tertiary roads in the municipality of Piedecuesta. For this, the production of CDW petrous was identified in the AMB, with 131,660 Ton / year, the main RCD used (brick and concrete) in previous investigations on CDW petrous for soil improvement. Through this, recommendations of type layer thickness, percentage of CDW and particle size were generated for the use of CDW petrous in the predominantly silty sand soil found for the municipality of Piedecuesta. | spa |
dc.description.degreelevel | Pregrado | spa |
dc.description.degreename | Ingeniero Civil | |
dc.description.domain | https://www.ustabuca.edu.co/ | spa |
dc.format.mimetype | application/pdf | spa |
dc.identifier.citation | Castellanos, C. S. (2021). Análisis de residuos de construcción y demolición pétreos como aditivo para el mejoramiento de vías terciarias en Piedecuesta, Santander. [Tesis de Pregrado]. Universidad Santo Tomás. Bucaramanga, Colombia. | spa |
dc.identifier.repourl | repourl:https://repository.usta.edu.co | spa |
dc.identifier.uri | http://hdl.handle.net/11634/35622 | |
dc.publisher.program | Pregrado Ingeniería Civil | spa |
dc.relation.references | J. Tejedor. et al., “Clasificación de la fracción fina de materiales provenientes de canteras aledañas a Bogotá, a partir de su valor de azul de metileno y su relación con la clasificación por el sistema unificado y el Sistema Aashto”, 2015. | spa |
dc.relation.references | Webdesing Masters., “Geotecnia – Estudio de Suelos. Inge ciencias S.A.A, 2015. | spa |
dc.relation.references | INVIAS. “Manual de diseño de pavimentos de concreto para vías con bajos, medios y altos volúmenes de tránsito”, pp. 68-83, 2019. | spa |
dc.relation.references | MinTransporte “Mejoramiento de vías terciarias, contexto de tercer orden”, 2018. | spa |
dc.relation.references | DNP. “Informe mejoramiento de vías terciarias - vías de tercer orden”. Versión 01, 2018. | spa |
dc.relation.references | MinAmbiente. Res. “Por la cual se reglamenta la gestión integral de los residuos generados en las actividades de Construcción y Demolición (RCD) y se dictan otras disposiciones”, Resolución 0472, 2017. | spa |
dc.relation.references | CCB. “Gestión de construcción registro” Cifras febrero, 2019. | spa |
dc.relation.references | Universidad Distrital. “Gestión de residuos de construcción y demolición (RCD) en Bogotá perspectivas y limitantes”. Revista índex, 2013. | spa |
dc.relation.references | J. Villegas y N. Chaves. “Economía circular y enfoque de ciclo de vida en la gestión de residuos de construcción y demolición (RCD)” CCB, 2019. | spa |
dc.relation.references | Bio Service, “Service Contract on Ma-nagement of Construction and demoli-tion Waste”, European Commission (DG ENV), Paris, 2011. | spa |
dc.relation.references | CCB. “Hacia un modelo de gestión de RCD en el área metropolitana de Bucaramanga (AMB)”, 2019. | spa |
dc.relation.references | USDA. “Engineering Classification of Earth Materials”. National Engineering Handbook, January, 35, 2012. | spa |
dc.relation.references | Arab, M. G., Alzara, M., Zeiada, W., Omar, M., & Azam, A. (2020). Combined effect of compaction level and matric suction conditions on flexible pavement performance using construction and demolition waste. Construction and Building Materials, 261, 119792. https://doi.org/10.1016/j.conbuildmat.2020.119792 | spa |
dc.relation.references | Iqbal, M. R., Kawamoto, K., Uchimura, T., Dung, N. T., Ton, T. K., Tuan, N. Van, & Giang, N. H. (2020). Compaction Characteristics and Cbr of Sludge Blended With Recycled Clay Bricks for Road Subgrade Application. International Journal of GEOMATE, 19(75), 133–143. https://doi.org/10.21660/2020.75.39591 | spa |
dc.relation.references | Sharma, A., & Sharma, R. K. (2019). Effect of addition of construction–demolition waste on strength characteristics of high plastic clays. Innovative Infrastructure Solutions, 4(1), 1–11. https://doi.org/10.1007/s41062-019-0216-1 | spa |
dc.relation.references | Sharma, R. K., & Hymavathi, J. (2016). Effect of fly ash, construction demolition waste and lime on geotechnical characteristics of a clayey soil: a comparative study. Environmental Earth Sciences, 75(5), 1–11. https://doi.org/10.1007/s12665-015-4796-6 | spa |
dc.relation.references | Tavakol, M., Kulesza, S., Jones, C., & Hossain, M. (2020). Effect of Low-Quality Recycled Concrete Aggregate on Stabilized Clay Properties. Journal of Materials in Civil Engineering, 32(8), 04020196. https://doi.org/10.1061/(asce)mt.1943-5533.0003263 | spa |
dc.relation.references | Thameel, S. S., Mustafa, A. S., & Mohsin, A. A. (2020). Evaluation of Recycled Demolition Waste Aggregates for base and sub-base use in Roads. IOP Conference Series: Materials Science and Engineering, 870(1). https://doi.org/10.1088/1757-899X/870/1/012089 | spa |
dc.relation.references | Del Rey, I., Ayuso, J., Galvín, A. P., Jiménez, J. R., & Barbudo, A. (2016). Feasibility of using unbound mixed recycled aggregates from CDW over expansive clay subgrade in unpaved rural roads. Materials, 9(11). https://doi.org/10.3390/ma9110931 | spa |
dc.relation.references | Aguiar-Moya, J. P., Vargas-Nordcbeck, A., Leiva-Villacorta, F., & Loría-Salazar, L. G. (2016). The roles of accelerated pavement testing in pavement sustainability: Engineering, environment, and economics. The Roles of Accelerated Pavement Testing in Pavement Sustainability: Engineering, Environment, and Economics, 1–905. https://doi.org/10.1007/978-3-319-42797-3 | spa |
dc.relation.references | Arulrajah, A., Piratheepan, J., Disfani, M. M., & Bo, M. W. (2013). Geotechnical and Geoenvironmental Properties of Recycled Construction and Demolition Materials in Pavement Subbase Applications. Journal of Materials in Civil Engineering, 25(8), 1077–1088. https://doi.org/10.1061/(asce)mt.1943-5533.0000652 | spa |
dc.relation.references | Li, Y., Zhou, H., Su, L., Hou, H., & Dang, L. (2017). Investigation into the Application of Construction and Demolition Waste in Urban Roads. Advances in Materials Science and Engineering, 2017. https://doi.org/10.1155/2017/9510212 | spa |
dc.relation.references | Leite, F. D. C., Motta, R. D. S., Vasconcelos, K. L., & Bernucci, L. (2011). Laboratory evaluation of recycled construction and demolition waste for pavements. Construction and Building Materials, 25(6), 2972–2979. https://doi.org/10.1016/j.conbuildmat.2010.11.105 | spa |
dc.relation.references | Li, Z., Yan, S., Liu, L., Dai, B., & Dong, W. (2019). Long-Term Deformation Analysis of Recycled Construction Waste Subgrade Filler. Advances in Civil Engineering, 2019. https://doi.org/10.1155/2019/5891759 | spa |
dc.relation.references | Zedda, V., Trois, C., & Everitt, P. (2014). Management of construction and demolition waste and its use for road construction in a South African municipality. Journal of Solid Waste Technology and Management, 40(4), 375–388. https://doi.org/10.5276/JSWTM.2014.375 | spa |
dc.relation.references | Zhang, J., Ding, L., Li, F., & Peng, J. (2020). Recycled aggregates from construction and demolition wastes as alternative filling materials for highway subgrades in China. Journal of Cleaner Production, 255, 120223. https://doi.org/10.1016/j.jclepro.2020.120223 | spa |
dc.relation.references | Tavira, J., Jiménez, J. R., Ayuso, J., López-Uceda, A., & Ledesma, E. F. (2018). Recycling screening waste and recycled mixed aggregates from construction and demolition waste in paved bike lanes. Journal of Cleaner Production, 190, 211–220. https://doi.org/10.1016/j.jclepro.2018.04.128 | spa |
dc.relation.references | Arulrajah, A., Piratheepan, J., Disfani, M. M., & Bo, M. W. (2013). Resilient Moduli Response of Recycled Construction and Demolition Materials in Pavement Subbase Applications. Journal of Materials in Civil Engineering, 25(12), 1920–1928. https://doi.org/10.1061/(asce)mt.1943-5533.0000766 | spa |
dc.relation.references | Varaprasad, B. J. S., Reddy, J. J., Rajesh, T., Kumar, Y. Y., & Reddy, K. R. M. (2019). Soil improvement by fine fraction residue from recycling construction and demolition waste. International Journal of Scientific and Technology Research, 8(10), 3389–3393. | spa |
dc.relation.references | Henzinger, C., & Heyer, D. (2015). Use of demolition waste in soil improvement Utilisation de déchets minéraux pour amendement du sol. 2547–2552. | spa |
dc.relation.references | Pourkhorshidi, S., Sangiorgi, C., Torreggiani, D., & Tassinari, P. (2020). Using recycled aggregates from construction and demolition waste in unbound layers of pavements. Sustainability (Switzerland), 12(22), 1–20. https://doi.org/10.3390/su12229386 | spa |
dc.relation.references | Cabalar, A. F., Zardikawi, O. A. A., & Abdulnafaa, M. D. (2019). Utilisation of construction and demolition materials with clay for road pavement subgrade. Road Materials and Pavement Design, 20(3), 702–714. https://doi.org/10.1080/14680629.2017.1407817 | spa |
dc.relation.references | Kianimehr, M., Shourijeh, P. T., Binesh, S. M., Mohammadinia, A., & Arulrajah, A. (2019). Utilization of recycled concrete aggregates for light-stabilization of clay soils. Construction and Boulding Materials, 227. https://doi.org/10.1016/j.conbuildmat.2019.116792 | spa |
dc.rights | Atribución 2.5 Colombia | * |
dc.rights | Atribución 2.5 Colombia | * |
dc.rights.accessrights | info:eu-repo/semantics/openAccess | |
dc.rights.coar | http://purl.org/coar/access_right/c_abf2 | |
dc.rights.local | Abierto (Texto Completo) | spa |
dc.rights.uri | http://creativecommons.org/licenses/by/2.5/co/ | * |
dc.subject.keyword | Subgrade | spa |
dc.subject.keyword | CDW | spa |
dc.subject.keyword | Sustainability | spa |
dc.subject.keyword | Pavements | spa |
dc.subject.keyword | Roads | spa |
dc.subject.lemb | Industria de la construcción-minimización de residuos | spa |
dc.subject.lemb | Reducción en la fuente | spa |
dc.subject.lemb | Contaminación-prevención | spa |
dc.subject.lemb | Conservación de los recursos naturales | spa |
dc.subject.lemb | Materiales de construcción | spa |
dc.subject.lemb | Escombros | spa |
dc.subject.lemb | Materiales bituminosos | spa |
dc.subject.lemb | Pavimentos de asfalto | spa |
dc.subject.proposal | Subrasante | spa |
dc.subject.proposal | RCD | spa |
dc.subject.proposal | Sostenibilidad | spa |
dc.subject.proposal | Pavimentos | spa |
dc.subject.proposal | Vías | spa |
dc.title | Análisis de residuos de construcción y demolición pétreos como aditivo para el mejoramiento de vías terciarias en Piedecuesta, Santander | spa |
dc.type | bachelor thesis | |
dc.type.category | Formación de Recurso Humano para la Ctel: Trabajo de grado de Pregrado | spa |
dc.type.coar | http://purl.org/coar/resource_type/c_7a1f | |
dc.type.coarversion | http://purl.org/coar/version/c_ab4af688f83e57aa | |
dc.type.drive | info:eu-repo/semantics/bachelorThesis | |
dc.type.local | Tesis de pregrado | spa |
dc.type.version | info:eu-repo/semantics/acceptedVersion |
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