6 minute read

REFERENCIAS BIBLIOGRÁFICAS

Al Haddid, H., & Al-Obaidi, K. M. (2022). Examining the impact of urban canyons morphology on outdoor environmental conditions in city centres with a temperate climate. Energy Nexus, 8(100159), 100159. https://doi.org/10.1016/j.nexus.2022.100159

Álvarez de la Torre, G. B. (2017). Morfología y estructura urbana en las ciudades medias mexicanas. región y sociedad, 29(68), 153–191. https://doi.org/10.22198/rys.2017.68.a872 https://repositorio.uchile.cl/handle/2250/186649

Advertisement

Araya, T., & Inés, C. (2021). Análisis de la relación de la isla de calor urbana superficial y el crecimiento poblacional a escala local en Chile entre el año 2008 y 2018.

Arias-Gómez, J., Villasís-Keever, M., Ángel, M., Novales, M., & Completo, N. (s. f.). Revista Alergia México. Redalyc.org. Recuperado 29 de marzo de 2023, de https://www.redalyc.org/pdf/4867/486755023011.pdf

Bambó Naya, R., de la Cal Nicolás, P., Díez Medina, C., Ezquerra, I., García-Pérez, S., & Monclús, J. (2023). Quality of public space and sustainable development goals: analysis of nine urban projects in Spanish cities. Frontiers of Architectural Research. https://doi.org/10.1016/j.foar.2023.01.002

Buzási, A., Pálvölgyi, T., & Csete, M. S. (2021). Assessment of climate change performance of urban development projects – Case of Budapest, Hungary. Cities (London, England), 114(103215), 103215. https://doi.org/10.1016/j.cities.2021.103215

Cebrián, F., & Cruz, M. (2018). Transformation of intermediate size cities in the U. s. and Spain: The cases of Green Bay (USA) and Albacete (Spain)1. Uclm.es. Recuperado el 15 de marzo de 2023, de https://ruidera.uclm.es/xmlui/bitstream/handle/10578/21555/T ransformation%20in%20medium%20size%20cities%20in%20Spai n%20and%20USA.pdf.pdf?sequence=1&isAllowed=y

Del escritor, P. (2015, noviembre 14). Cómo afectará el cambio climático a las ciudades. OVACEN. https://ovacen.com/como-afectara-elcambio-climatico-a-las-ciudades/

Del escritor, P. (2016, enero 10). Perfil urbano y diseño del espacio ante el consumo energético. OVACEN. https://ovacen.com/perfilurbano-y-diseno-espacio-urbano/

Díaz-Narváez V.P., V. P., & Calzadilla-Núñez A., A. (2016). Artículos científicos, tipos de investigación y productividad científica en las Ciencias de la Salud Revista ciencias de la salud, 14(1), 115121. https://doi.org/10.12804/revsalud14.01.2016.10

El Pronóstico Para Julio – Setiembre, S. (s/f). Escenario de riesgo por bajas temperaturas. Gob.pe. Recuperado el 7 de marzo de 2023, de https://cdn.www.gob.pe/uploads/document/file/3270478/1441 5_escenario-de-riesgo-por-bajas-temperaturas-segun-elpronostico-para-julio-setiembre-2022.pdf.pdf

Espinoza Guzmán, D. (2017). Transformaciones urbanas recientes en ciudades intermedias: hacia un gran Temuco y los impactos desde la morfología urbana en torno a la Avenida Alemania. https://repositorio.uchile.cl/handle/2250/151965 https://doi.org/10.1016/j.cstp.2022.100939

Ezcurra, C., & Gavini, S. S. (2019). Alpine plant diversity in temperate mountains of south America. En M. I. Goldstein & D. A. DellaSala (Eds.), Reference Module in Earth Systems and Environmental Sciences (pp. 323–334).

Finck Carrales, J. C. (2023). Mobility regulations and urban projects in Mexico City: An accessibility focus on territorial inequalities. Case Studies on Transport Policy, 11(100939), 100939.

Gonzalo Salazary Felipe Irarrázaval y Martín Fonck. (2018). Vista de Transformaciones urbanas y sentidos de lugar en las ciudades intermedias de la Región de la Araucanía 2023, marzo 15, de Uach.cl. Sitio web: http://revistas.uach.cl/index.php/aus/article/view/1779 https://doi.org/10.3390/rs13030538 https://doi.org/10.1016/j.trip.2020.100257 https://doi.org/10.1016/j.envint.2023.107805 https://doi.org/10.1016/j.envint.2023.107805 http://www.scielo.org.bo/scielo.php?script=sci_arttext&pid=S18 15-02762004000100012 https://doi.org/10.1017/9781009157896 https://doi.org/10.1016/j.uclim.2022.101386 https://doi.org/10.1016/j.landurbplan.2023.104708 https://doi.org/10.1016/j.uclim.2020.100647 https://doi.org/10.1016/j.scitotenv.2022.153664 https://doi.org/10.1016/j.scitotenv.2020.142334 https://doi.org/10.1016/j.landurbplan.2023.104712 https://doi.org/10.4067/s0717-95022017000100037 https://repositorio.ufscar.br/handle/ufscar/11129 https://doi.org/10.1016/j.landusepol.2021.105314

Guerri, G., Crisci, A., Messeri, A., Congedo, L., Munafò, M., & Morabito, M. (2021). Thermal summer diurnal Hot-Spot analysis: The role of local urban features layers. Remote Sensing, 13(3), 538.

Helminen, V., Tiitu, M., Kosonen, L., & Ristimäki, M. (2020). Identifying the areas of walking, transit and automobile urban fabrics in Finnish intermediate cities. Transportation Research Interdisciplinary Perspectives, 8(100257), 100257.

Khreis, H., Sanchez, K. A., Foster, M., Burns, J., Nieuwenhuijsen, M. J., Jaikumar, R., Ramani, T., & Zietsman, J. (2023). Urban policy interventions to reduce traffic-related emissions and air pollution: A systematic evidence map. Environment International, 172(107805), 107805.

Khreis, H., Sanchez, K. A., Foster, M., Burns, J., Nieuwenhuijsen, M. J., Jaikumar, R., Ramani, T., & Zietsman, J. (2023). Urban policy interventions to reduce traffic-related emissions and air pollution: A systematic evidence map. Environment International, 172(107805), 107805.

López, P. L. (2004). Población muestra y muestreo. Punto cero, 09(08), 69-74.

Masson-Delmotte, V., Zhai, P., Pirani, A., Connors, S. L., Péan, C., Chen, Y., Goldfarb, L., Gomis, M. I., Matthews, J. B. R., Berger, S., Huang, M., Yelekçi, O., Yu, R., Zhou, B., Lonnoy, E., Maycock, T. K., Waterfield, T., Leitzell, K., Communication Manager, N. C., … Yu, B. (s/f). Climate change 2021 the physical science basis working group I contribution to the sixth assessment report of the intergovernmental panel on climate change edited by.

Michau, Y., Lemonsu, A., Lucas-Picher, P., & Caillaud, C. (2023). Evaluation of the Urban Heat Island of 12 cities of France in a high-resolution regional climate model simulation. Urban Climate, 47(101386), 101386.

Mishra, H. S., Bell, S., Roberts, B. R., & White, M. P. (2023). Theory-based design for promoting positive behaviours in an urban blue space: Pre-and-post observations of a community co-created intervention in Plymouth, United Kingdom. Landscape and Urban Planning, 233(104708), 104708.

Mohan, M., Sati, A. P., & Bhati, S. (2020). Urban sprawl during five decadal period over National Capital Region of India: Impact on urban heat island and thermal comfort. Urban Climate, 33(100647), 100647.

Mondal, S. K., Wang, Y., Zhai, J., Su, B., Jiang, S., Huang, J., Jing, C., Lin, Q., Zhou, J., Gao, M., & Jiang, T. (2022). Projected urban exposure to extreme precipitation over South Asia. The Science of the Total Environment, 822(153664), 153664.

Morabito, M., Crisci, A., Guerri, G., Messeri, A., Congedo, L., & Munafò, M. (2021). Surface urban heat islands in Italian metropolitan cities: Tree cover and impervious surface influences. The Science of the Total Environment, 751(142334), 142334.

Niu, H., Rehling, F., Chen, Z., Yue, X., Zhao, H., Wang, X., Zhang, H., Schabo, D. G., & Farwig, N. (2023). Regeneration of urban forests as influenced by fragmentation, seed dispersal mode and the legacy effect of reforestation interventions. Landscape and Urban Planning, 233(104712), 104712.

Otzen, T., & Manterola, C. (2017). Técnicas de Muestreo sobre una Población a Estudio. Revista Internacional de Morfologia [International Journal of Morphology], 35(1), 227-232.

Palme, M., & Carrasco, C. (2022). Urban heat island in Latin American cities. En A. Khan, H. Akbari, F. Fiorito, S. Mithun, & D. Niyogi (Eds.), Global Urban Heat Island Mitigation (pp. 251–267). Elsevier.

Ramírez-Aguilar, E. A. (2019). Forma urbana, densidade da população e zonas climáticas locais: influências e avaliação da ilha de calor urbana em Bogotá, Colômbia.

Rao, Y., Dai, J., Dai, D., & He, Q. (2021). Effect of urban growth pattern on land surface temperature in China: A multi-scale landscape analysis of 338 cities. Land Use Policy, 103(105314), 105314.

Sánchez Flores, F. A. (2019). Fundamentos Epistémicos de la Investigación Cualitativa y Cuantitativa: Consensos y Disensos Revista Digital de Investigación en Docencia Universitaria, 13(1), 101-122. https://doi.org/10.19083/ridu.2019.644 https://www3.paho.org/hq/index.php?option=com_content&vie w=article&id=10484:educacion-inocuidad-alimentosclasificacion-de-investigacion&Itemid=0&lang=es

Sanchez, J. D. (2015, marzo 2). Pan American Health Organization / World Health Organization.

Schroeder, S., & Abanto Sánchez, E. (s/f). XXVIII International Seminar on Urban Form ISUF2021: Urban form and the sustainable and prosperous cities 29 th June -3 rd July 2021, Glasgow

Incremental production of the informal urban landscape: A typology in intermediate cities of the Peruvian coastal area. Strath.ac.uk. Recuperado el 15 de marzo de 2023, de https://strathprints.strath.ac.uk/80360/1/Schroeder_Sanchez_I SUF_2021_Incremental_production_of_the_informal_urban.pdf https://doi.org/10.1016/j.cacint.2022.100091 https://doi.org/10.1016/j.envc.2022.100644 https://paisajetransversal.org/2018/02/orientacion-ymorfologia-urbana-el-reto/

Schwaab, J. (2022). Sprawl or compactness? How urban form influences urban surface temperatures in Europe. City and Environment Interactions, 16(100091), 100091.

Tanjina Hasnat, G. N. (2022). Assessment of spatiotemporal distribution pattern of land surface temperature with incessant urban sprawl over Khulna and Rajshahi City Corporations. Environmental Challenges, 9(100644), 100644.

Transversal, P. (2018, febrero 6). Orientación y morfología urbana: el reto de #LeerMadrid. Paisaje Transversal.

Turcios, S., & Alberto, R. (2015). t-Student: Usos y abusos. Revista mexicana de cardiología, 26(1), 59-61 https://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0 188-21982015000100009

UNI-T UTi89 Pro Cámara térmica Imager 80x60 IR Resolución de infrarrojos de mano Cámara térmica de imagen de 4800 píxeles

9Hz Frecuencia de actualización IP65 recargable 16GB MicroSD http://zaloamati.azc.uam.mx//handle/11191/6211 https://doi.org/10.19044/esj.2014.v10n15p%p https://doi.org/10.1016/j.envsci.2022.03.002

2 Meter Durabilidad de caída. (s. f.).

Vallejo Choez, P. C., & Mena Mora, F. R. (2019). Análisis morfológico del área urbana de la ciudad de Pujilí. Expansión urbana y retos para la gestión municipal. 39–55.

Vega-Malagón, G., Ávila-Morales, J., Vega-Malagón, A. J., CamachoCalderón, N., Becerril-Santos, A., & Leo-Amador, G. E. (2014). Paradigmas en la investigación. Enfoque cuantitativo y cualitativo. European Scientific Journal, 10(15).

Vidal, D. G., Dias, R. C., Teixeira, C. P., Fernandes, C. O., Filho, W. L., Barros, N., & Maia, R. L. (2022). Clustering public urban green spaces through ecosystem services potential: A typology proposal for place-based interventions. Environmental Science & Policy, 132, 262–272.

Viegas, C. V., Saldanha, D. L., Bond, A., Ribeiro, J. L. D., & Selig, P. M. (2013). Urban land planning: The role of a Master Plan in influencing local temperatures. Cities (London, England), 35, 1–13. https://doi.org/10.1016/j.cities.2013.05.006 https://es.wikipedia.org/w/index.php?title=Tel%C3%A9metro_l% C3%A1ser&oldid=145674941 https://doi.org/10.1016/j.scitotenv.2022.156720

Wikipedia contributors. (s. f.). Telémetro láser. Wikipedia, The Free Encyclopedia.

Yan, H., Wu, F., Nan, X., Han, Q., Shao, F., & Bao, Z. (2022). Influence of view factors on intra-urban air temperature and thermal comfort variability in a temperate city. The Science of the Total Environment, 841(156720), 156720.

Zhang, J., Li, Z., & Hu, D. (2022). Effects of urban morphology on thermal comfort at the micro-scale. Sustainable Cities and Society, 86(104150), 104150. https://doi.org/10.1016/j.scs.2022.104150 https://doi.org/10.1016/j.envpol.2017.02.010

Zhao, Q., Zhang, Y., Zhang, W., Li, S., Chen, G., Wu, Y., Qiu, C., Ying, K., Tang, H., Huang, J.-A., Williams, G., Huxley, R., & Guo, Y. (2017). Ambient temperature and emergency department visits: Timeseries analysis in 12 Chinese cities. Environmental Pollution (Barking, Essex: 1987), 224, 310–316.

Zhu, R., Wong, M. S., You, L., Santi, P., Nichol, J., Ho, H. C., Lu, L., & Ratti, C. (2020). The effect of urban morphology on the solar capacity of three-dimensional cities. Renewable Energy, 153, 1111–1126. https://doi.org/10.1016/j.renene.2020.02.050

This article is from: